Proteantecs Ltd.

Israel

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2026 September (MTD) 3
2026 July 1
2026 (YTD) 4
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IPC Class
G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer 25
G01R 31/317 - Testing of digital circuits 12
G01R 31/30 - Marginal testing, e.g. by varying supply voltage 8
G01R 31/3173 - Marginal testing 5
H03K 19/003 - Modifications for increasing the reliability 5
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1.

DIE-TO-DIE CONNECTIVITY MONITORING

      
Application Number 19693478
Status Pending
Filing Date 2026-05-31
First Publication Date 2026-09-24
Owner ProteanTecs Ltd. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn
  • Cohen, Ishai Zeev
  • Rahamim, Shaked
  • Khazin, Alex

Abstract

An input/output (I/O) sensor for a multi-IC module. The I/O sensor includes: delay circuitry, configured to receive a data signal from an interconnected part of an IC of the multi-IC module and to generate a delayed data signal, the delay circuitry including an adjustable delay-line configured to delay an input signal by a set time duration; a comparison circuit, configured to generate a comparison signal by comparing the data signal with the delayed data signal; and processing logic, configured to set the time duration of the adjustable delay-line and, based on the comparison signal, identify a margin measurement of the data signal for determining an interconnect quality parameter.

IPC Classes  ?

2.

TELEMETRIX

      
Serial Number 50121037
Status Pending
Filing Date 2026-09-21
Owner proteanTecs Ltd. (Israel)
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Electronic monitoring of advanced electronics’ health and performance using computers and sensors

3.

INTEGRATED CIRCUIT MARGIN MEASUREMENT FOR STRUCTURAL TESTING

      
Application Number 19067947
Status Pending
Filing Date 2025-03-02
First Publication Date 2026-09-03
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Fayneh, Eyal
  • Cohen, Shai
  • Khazin, Alex

Abstract

Structural testing of a semiconductor integrated circuit (IC), including scanning test patterns or test conditions into internal circuits of the semiconductor IC, for example from a tester device. A timing margin may be measured during the structural test. The margin is measured based on a characteristic of a comparison between a test signal path of the semiconductor IC and a delayed signal path, the delayed signal path being a signal of the test signal path delayed by a variable delay time. An output of the margin measurement sensor may be scanned out, for instance to the tester device.

IPC Classes  ?

4.

SLEW RATE, CLOCK INTEGRITY AND DUTY CYCLE DETECTION IN AN INTEGRATED CIRCUIT

      
Application Number IL2026050024
Publication Number 2026/150406
Status In Force
Filing Date 2026-01-11
Publication Date 2026-07-16
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Mor, Gabriel
  • Baruch, Zeev Eitan

Abstract

In a semiconductor Integrated Circuit (IC), a slew rate and/or a clock integrity of a signal may be determined by measuring, using a circuit, a duty cycle of the signal. The circuit may be further configured with an adjustable logic threshold of the signal, for the duty cycle measurement of the signal. The circuit may further include: an input sampling block, including a skewed control input buffer to receive the signal, the input sampling block being configured to provide a sampling output comprising pulses each having a width according to the signal being at or above the adjustable logic threshold; and a duty cycle measurement circuit, configured to output a measurement of a duty cycle of the sampling output, thereby measuring the duty cycle of the signal.

IPC Classes  ?

  • G01R 29/02 - Measuring characteristics of individual pulses, e.g. deviation from pulse flatness, rise time or duration
  • G06F 1/10 - Distribution of clock signals
  • G01R 31/317 - Testing of digital circuits
  • H03K 5/08 - Shaping pulses by limiting, by thresholding, by slicing, i.e. combined limiting and thresholding

5.

INTEGRATED CIRCUIT MARGIN MEASUREMENT FOR THE DETECTION OF RARE EVENTS

      
Application Number 18644834
Status Pending
Filing Date 2024-04-24
First Publication Date 2025-10-30
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Shmueli, Edi
  • Landman, Evelyn

Abstract

A specific logic circuitry of a semiconductor Integrated Circuit (IC) is measured by a sensor. The sensor includes: a signal splitter that splits a signal from the specific logic circuitry into two test paths; a delay element that receives and applies a delay to a first test path, the delay based on a predetermined timing margin that is selected from a group of discrete timing margin values comprising a shortest timing margin value and at least one longer timing margin value; a comparison circuit that compares the delayed first test path and a second test path and provides a measurement output according to the comparison for an instance of measuring; and a controller that sets the predetermined timing margin such that, over the instances of measuring, a frequency of selection of the shortest timing margin value is higher than a frequency of selection of each longer timing margin value.

IPC Classes  ?

6.

Integrated circuit margin measurement

      
Application Number 18421199
Grant Number 12461143
Status In Force
Filing Date 2024-01-24
First Publication Date 2025-07-24
Grant Date 2025-11-04
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • David, Yahel
  • Landman, Evelyn

Abstract

Failure risk measurement in a semiconductor Integrated Circuit (IC) by generating a pulse of a preset time duration on an output path when a signal from a data path and/or control logic circuit of the semiconductor IC changes. The data paths and/or control logic circuits of the semiconductor IC have a common clock. The output paths may be combined to provide a combined output path and a signal on the combined output path may be delayed by a configurable time duration, providing a delayed combined output path signal thereby. The delayed combined output path signal may be received at a data input of a device state element, which is clocked by a signal based on the common clock and outputs a failure risk measurement signal.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

7.

DIE-TO-DIE AND CHIP-TO-CHIP INTERCONNECT CLOCK SKEW COMPENSATION

      
Application Number 18406164
Status Pending
Filing Date 2024-01-07
First Publication Date 2025-07-10
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • David, Yahel
  • Landman, Evelyn

Abstract

Die or chip interconnect clock skew compensation can be performed for a multi-IC (Integrated Circuit) module. A timing margin or eye-width parameter (for example, a setup or hold time) for each of one or more interconnect lanes may be measured at a first die or chip of the multi-IC module that is receiving data and clock signals from a second die or chip of the multi-IC module. Compensation information can be determined based on the measured timing margin or eye-width parameter for each of one or more interconnect lanes. Compensation for clock skew can then be based on the determined compensation information.

IPC Classes  ?

8.

DIE-TO-DIE AND CHIP-TO-CHIP INTERCONNECT CLOCK SKEW COMPENSATION

      
Application Number IL2025050015
Publication Number 2025/146691
Status In Force
Filing Date 2025-01-07
Publication Date 2025-07-10
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • David, Yahel
  • Landman, Evelyn
  • Sever, Nir

Abstract

Die or chip interconnect clock skew compensation can be performed for a multi -IC (Integrated Circuit) module. A timing margin or eye-width parameter (for example, a setup or hold time) for each of one or more interconnect lanes may be measured at a first die or chip of the multi - IC module that is receiving data and clock signals from a second die or chip of the multi -IC module. Compensation information can be determined based on the measured timing margin or eye-width parameter for each of one or more interconnect lanes. Compensation for clock skew can then be based on the determined compensation information.

IPC Classes  ?

  • G06F 13/42 - Bus transfer protocol, e.g. handshakeSynchronisation
  • G06F 1/10 - Distribution of clock signals
  • G06F 1/12 - Synchronisation of different clock signals

9.

EFFICIENT INTEGRATED CIRCUIT SIMULATION AND TESTING

      
Application Number 19044072
Status Pending
Filing Date 2025-02-03
First Publication Date 2025-06-05
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Talker, Yair
  • Fayneh, Eyal
  • David, Yahel
  • Cohen, Shai
  • Weintrob, Inbar

Abstract

A method comprising using at least one hardware processor for: running a Monte Carlo simulation of possible integrated circuit (IC) process variations of each of a plurality of IC cell types, wherein each of the plurality of IC cell types is defined by multiple specific transistors and multiple specific interconnects; based on the results of the Monte Carlo simulation, creating a library of IC cell types and their corresponding behavioral values for each of the possible IC process variations, and storing the library in a non-transient memory; receiving an IC design embodied as a digital file; correlating the received IC design with the library; and predicting a frequency distribution and a power distribution of ICs manufactured according to the IC design.

IPC Classes  ?

10.

THERMAL SENSOR FOR INTEGRATED CIRCUIT

      
Application Number 18833051
Status Pending
Filing Date 2023-01-25
First Publication Date 2025-04-24
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Rahamim, Shaked
  • Landman, Evelyn

Abstract

A thermal sensor for an integrated circuit including: a Proportional To Absolute Temperature (PTAT) circuit comprising n-type MOS transistors and providing a first voltage; and a voltage generator circuit comprising a p-type MOS transistor and providing a second voltage. A reference voltage is based on the first voltage and the second voltage. At least one thermal output signal is based on the reference voltage together with the first voltage and/or the second voltage. In another aspect, an integrated circuit has a power routing arrangement, providing a power supply core voltage (VDDCORE) to operate functional circuitry on the integrated circuit. One or more local thermal sensors are located on the integrated circuit, each comprising a PTAT circuit having MOS transistors using the power supply core voltage to generate a temperature-dependent voltage that varies independently of power supply core voltage variation.

IPC Classes  ?

  • G01K 7/01 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using semiconducting elements having PN junctions
  • G01K 15/00 - Testing or calibrating of thermometers

11.

Integrated circuit glitch detection

      
Application Number 18892957
Grant Number 12640719
Status In Force
Filing Date 2024-09-23
First Publication Date 2025-04-03
Grant Date 2026-05-26
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Tanasra, Faten
  • Khazin, Alex
  • Landman, Evelyn

Abstract

Glitch detection is provided for a clock signal in a semiconductor integrated circuit (IC), for example between an input buffer and a Phase Locked Loop (PLL). A first pulse signal is generated in response to a rising edge of the clock signal, and a second pulse signal is generated in response to its falling edge. A third pulse signal is generated at a predetermined period of time after a start of the first pulse signal, and a fourth pulse signal is generated at a predetermined period of time after a start of the second pulse signal. A glitch in the clock signal is indicated based on the third pulse signal having an opposite logical level to the clock signal, and/or based on the fourth pulse signal having the same logical level as the clock signal.

IPC Classes  ?

  • H03K 5/135 - Arrangements having a single output and transforming input signals into pulses delivered at desired time intervals by the use of time reference signals, e.g. clock signals
  • H03K 5/14 - Arrangements having a single output and transforming input signals into pulses delivered at desired time intervals by the use of delay lines
  • H03K 19/20 - Logic circuits, i.e. having at least two inputs acting on one outputInverting circuits characterised by logic function, e.g. AND, OR, NOR, NOT circuits

12.

LOOPBACK TESTING OF INTEGRATED CIRCUITS

      
Application Number IL2024050918
Publication Number 2025/057163
Status In Force
Filing Date 2024-09-11
Publication Date 2025-03-20
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Cohen, Shai
  • Landman, Evelyn

Abstract

Loopback testing may be provided for one or more transmission output paths of a semiconductor Integrated Circuit (IC). One or more parametric loopback sensors are provided in the semiconductor IC, each parametric loopback sensor being configured to receive a clocked data input signal to a respective transmitter of the IC and a signal from a transmission output path from the respective transmitter of the IC, and to generate a respective sensor output based on a comparison of the clocked data input signal and the signal from the transmission output path for the respective transmitter of the IC. A programmable load circuit is also provided in the semiconductor IC, coupled to each transmission output path.

IPC Classes  ?

  • G01R 31/317 - Testing of digital circuits
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G01R 31/3187 - Built-in tests
  • G01R 31/3193 - Tester hardware, i.e. output processing circuits with comparison between actual response and known fault-free response

13.

INTEGRATED CIRCUIT SIMULATOR FOR DEGRADATION ESTIMATION AND TIME-OF-FAILURE PREDICTION

      
Application Number 18709604
Status Pending
Filing Date 2022-11-15
First Publication Date 2025-01-09
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Shmueli, Edi
  • Burlak, Alexander
  • Landman, Evelyn
  • Weintrob, Inbar
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

A method including: Receiving timing data of multiple data paths of an integrated circuit (IC) design. Simulating degradation of the multiple data paths over a period of time, wherein the timing data serve as a baseline of the simulated degradation, and wherein the simulation includes: simulating effects of operational conditions on the multiple data paths, wherein the operational conditions comprise: temperature, voltage, and frequency; simulating an effect of at least one physical degradation phenomenon on the multiple data paths, wherein the at least one physical degradation phenomenon is negative-bias temperature instability (NBTI), hot carrier injection (HCI), electromigration (EM), and/or time-dependent dielectric breakdown (TDDB); and simulating operation of a margin measurement circuit which is embedded in the IC design and monitors the multiple data paths, wherein the margin measurement circuit, in the simulated operation, outputs a time series of values of a worst-case remaining margin of the multiple data paths.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

14.

INTEGRATED CIRCUIT WORKLOAD, TEMPERATURE, AND/OR SUB-THRESHOLD LEAKAGE SENSOR

      
Application Number 18817199
Status Pending
Filing Date 2024-08-27
First Publication Date 2024-12-19
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Weintrob, Inbar
  • Landman, Evelyn
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

An integrated circuit (IC) comprising: a margin measurement circuit configured to monitor multiple data paths of the IC and to output, at different times, different ranges of remaining margins of the multiple data paths; a workload sensor configured to output a value representing aggregate operational stress experienced by the IC over a period of time ending at each of the different times; and a processor configured to: (i) compute, based on the value output by said workload sensor, an upper bound and a lower bound of change of the remaining margin of the IC, and (ii) compute upper and lower bounds of a current remaining margin of the IC, based on (a) the upper and lower bounds of change, and (b) a remaining margin indicated by a border between two adjacent ranges outputted by the margin measurement circuit.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

15.

Die-to-die connectivity monitoring

      
Application Number 18796452
Grant Number 12644924
Status In Force
Filing Date 2024-08-07
First Publication Date 2024-11-28
Grant Date 2026-06-02
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn
  • Cohen, Ishai Zeev
  • Rahamim, Shaked
  • Khazin, Alex

Abstract

An input/output (I/O) sensor for a multi-IC module. The I/O sensor includes: delay circuitry, configured to receive a data signal from an interconnected part of an IC of the multi-IC module and to generate a delayed data signal, the delay circuitry including an adjustable delay-line configured to delay an input signal by a set time duration; a comparison circuit, configured to generate a comparison signal by comparing the data signal with the delayed data signal; and processing logic, configured to set the time duration of the adjustable delay-line and, based on the comparison signal, identify a margin measurement of the data signal for determining an interconnect quality parameter.

IPC Classes  ?

  • G01R 31/30 - Marginal testing, e.g. by varying supply voltage
  • G01R 31/3173 - Marginal testing
  • H01L 23/538 - Arrangements for conducting electric current within the device in operation from one component to another the interconnection structure between a plurality of semiconductor chips being formed on, or in, insulating substrates
  • H03K 19/003 - Modifications for increasing the reliability
  • H10W 70/60 -
  • H10W 70/65 -

16.

Adaptive frequency scaling based on clock cycle time measurement

      
Application Number 18285719
Grant Number 12470223
Status In Force
Filing Date 2022-04-07
First Publication Date 2024-11-07
Grant Date 2025-11-11
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Weintrob, Inbar
  • Landman, Evelyn
  • Tanasra, Faten
  • Redler, Guy
  • Tzroia, Shai

Abstract

Generation of a clock signal in a semiconductor integrated circuit (IC) is controlled using a Noise Modulation Agent (NMA), configured to measure the clock signal and output a parameter indicative of an effective cycle time of the clock signal. An Adaptive Frequency Scaling (AFS) circuit selectively adjusts a frequency of the clock signal, based on the output of the NMA indicating a change in a power supply voltage of the semiconductor IC.

IPC Classes  ?

  • H03L 7/093 - Details of the phase-locked loop concerning mainly the frequency- or phase-detection arrangement including the filtering or amplification of its output signal using special filtering or amplification characteristics in the loop
  • G06F 1/04 - Generating or distributing clock signals or signals derived directly therefrom
  • G06F 1/08 - Clock generators with changeable or programmable clock frequency
  • G06F 1/28 - Supervision thereof, e.g. detecting power-supply failure by out of limits supervision
  • G06F 1/30 - Means for acting in the event of power-supply failure or interruption, e.g. power-supply fluctuations

17.

INTEGRATED CIRCUIT DEGRADATION ESTIMATION AND TIME-OF-FAILURE PREDICTION USING WORKLOAD AND MARGIN SENSING

      
Application Number 18685070
Status Pending
Filing Date 2022-11-15
First Publication Date 2024-10-24
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Shmueli, Edi
  • Burlak, Alexander
  • Landman, Evelyn
  • Weintrob, Inbar
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

An integrated circuit (IC) comprising: a margin measurement circuit configured to monitor multiple data paths of the IC and to output, at different times, different ranges of remaining margins of the multiple data paths; a workload sensor configured to output a value representing aggregate operational stress experienced by the IC over a period of time ending at each of the different times; and a processor configured to: (i) compute, based on the value output by said workload sensor, an upper bound and a lower bound of change of the remaining margin of the IC, and (ii) compute upper and lower bounds of a current remaining margin of the IC, based on (a) the upper and lower bounds of change, and (b) a remaining margin indicated by a border between two adjacent ranges outputted by the margin measurement circuit.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

18.

Loopback testing of integrated circuits

      
Application Number 18367333
Grant Number 12123908
Status In Force
Filing Date 2023-09-12
First Publication Date 2024-10-22
Grant Date 2024-10-22
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Cohen, Shai
  • Landman, Evelyn

Abstract

Loopback testing may be provided for one or more transmission output paths of a semiconductor Integrated Circuit (IC). One or more parametric loopback sensors are provided in the semiconductor IC, each parametric loopback sensor being configured to receive a clocked data input signal to a respective transmitter of the IC and a signal from a transmission output path from the respective transmitter of the IC, and to generate a respective sensor output based on a comparison of the clocked data input signal and the signal from the transmission output path for the respective transmitter of the IC. A programmable load circuit is also provided in the semiconductor IC, coupled to each transmission output path.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G01R 31/317 - Testing of digital circuits
  • G01R 31/3177 - Testing of logic operation, e.g. by logic analysers

19.

DIE-TO-DIE AND CHIP-TO-CHIP CONNECTIVITY MONITORING

      
Application Number IL2024050141
Publication Number 2024/166103
Status In Force
Filing Date 2024-02-07
Publication Date 2024-08-15
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn

Abstract

An input/output (I/O) sensor is provided for a multi-IC (Integrated Circuit) module. The I/O sensor includes: a signal input, configured to receive a data signal from an interconnected part of an IC of the multi-IC module; and a time duration measurement circuit, configured to measure a time duration between a first time, at which the data signal is at a first level, and a second time, at which the data signal is at a second level, different from the first level. The sensor may be incorporated into an I/O block, an IC, and/or a multi-IC module. An I/O sensor which includes a controller configured to measure duty cycle distortion of a multi-phase clock is also disclosed.

IPC Classes  ?

  • H03K 5/14 - Arrangements having a single output and transforming input signals into pulses delivered at desired time intervals by the use of delay lines
  • H03K 5/00 - Manipulation of pulses not covered by one of the other main groups of this subclass
  • H03K 5/12 - Shaping pulses by steepening leading or trailing edges
  • H03K 19/003 - Modifications for increasing the reliability
  • G01R 31/3193 - Tester hardware, i.e. output processing circuits with comparison between actual response and known fault-free response
  • H01L 23/538 - Arrangements for conducting electric current within the device in operation from one component to another the interconnection structure between a plurality of semiconductor chips being formed on, or in, insulating substrates
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • H03K 5/26 - Circuits having more than one input and one output for comparing pulses or pulse trains with each other according to input signal characteristics, e.g. slope, integral the characteristic being duration, interval, position, frequency, or sequence
  • H03L 7/00 - Automatic control of frequency or phaseSynchronisation
  • G06F 1/06 - Clock generators producing several clock signals

20.

PROTEANTECS

      
Serial Number 98684139
Status Registered
Filing Date 2024-08-06
Registration Date 2025-04-29
Owner PROTEANTECS LTD (Israel)
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Electronic monitoring of advanced electronics' health and performance using computers and sensors

21.

PHYSICALLY UNCLONABLE FUNCTION FOR AN INTEGRATED CIRCUIT

      
Application Number IL2023051322
Publication Number 2024/142056
Status In Force
Filing Date 2023-12-27
Publication Date 2024-07-04
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • David, Yahel
  • Sever, Nir
  • Katz, Boaz
  • Lan, Shelley
  • Landman, Evelyn

Abstract

A circuit for providing a physically unclonable function for a semiconductor integrated circuit (IC) comprises a plurality of comparator circuits. Each comparator circuit has respective inputs, all inputs of each comparator circuit of the plurality of comparator circuits being coupled to a respective common voltage. The plurality of comparator circuits have at least one output. At least some of the plurality of comparator circuits have an offset voltage sufficient to cause the at least one output to provide either a consistent high logic level or a consistent low logic level. At least some of the plurality of comparator circuits comprise a configurable differential amplifier, configured to provide an output dependent on a plurality of selection signals, such that the output of the configurable differential amplifier is the same if the plurality of selection signals is the same at different times.

IPC Classes  ?

  • H04L 9/32 - Arrangements for secret or secure communicationsNetwork security protocols including means for verifying the identity or authority of a user of the system
  • H04L 9/08 - Key distribution
  • H03K 5/24 - Circuits having more than one input and one output for comparing pulses or pulse trains with each other according to input signal characteristics, e.g. slope, integral the characteristic being amplitude

22.

Die-to-die and chip-to-chip connectivity monitoring

      
Application Number 18209685
Grant Number 12013800
Status In Force
Filing Date 2023-06-14
First Publication Date 2024-06-18
Grant Date 2024-06-18
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn

Abstract

An input/output (I/O) sensor is provided for a multi-IC (Integrated Circuit) module. The I/O sensor includes: a signal input, configured to receive a data signal from an interconnected part of an IC of the multi-IC module; and a time duration measurement circuit, configured to measure a time duration between a first time, at which the data signal is at a first level, and a second time, at which the data signal is at a second level, different from the first level. The sensor may be incorporated into an I/O block, an IC, and/or a multi-IC module.

IPC Classes  ?

  • G06F 13/20 - Handling requests for interconnection or transfer for access to input/output bus
  • G01R 31/317 - Testing of digital circuits

23.

Integrated circuit margin measurement and failure prediction device

      
Application Number 18377016
Grant Number 12535521
Status In Force
Filing Date 2023-10-05
First Publication Date 2024-02-01
Grant Date 2026-01-27
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Cohen, Shai
  • David, Yahel
  • Fayneh, Eyal
  • Weintrob, Inbar

Abstract

A semiconductor integrated circuit (IC) comprising a signal path combiner, comprising a plurality of input paths and an output path. The IC comprises a delay circuit having an input electrically connected to the output path, the delay circuit delaying an input signal by a variable delay time to output a delayed signal path. The IC may comprise a first storage circuit electrically connected to the output path and a second storage circuit electrically connected to the delayed signal path. The IC comprises a comparison circuit that compares outputs of the signal path combiner and the delayed signal, wherein the comparison circuit comprises a comparison output provided in a comparison data signal to at least one mitigation circuit.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G01R 31/30 - Marginal testing, e.g. by varying supply voltage

24.

Die-to-die connectivity monitoring with a clocked receiver

      
Application Number 18376956
Grant Number 12690425
Status In Force
Filing Date 2023-10-05
First Publication Date 2024-02-01
Grant Date 2026-07-21
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn

Abstract

An I/O sensor including: a programmable delay line; a delayed sampling device having the following inputs: (a) a data signal that also serves as an input to a reference clocked receiver that is configured to sample the data signal received from an interconnect lane between two integrated circuits (ICs) of a multi-IC module, and (b) a delayed clock signal received from the programmable delay line, wherein the delayed clock signal is a delayed version of a clock signal that clocks the reference clocked receiver; a comparison circuits configured to compare a data signal output of the delayed sampling device and a data signal output of the reference clocked receiver; and a controller configured, based on a comparison result of the comparison circuit and on the amount of delay that caused it, to estimate a quality of connectivity between the two ICs over the interconnect lane.

IPC Classes  ?

25.

Integrated circuit profiling and anomaly detection

      
Application Number 18369171
Grant Number 12320844
Status In Force
Filing Date 2023-09-17
First Publication Date 2024-01-04
Grant Date 2025-06-03
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • David, Yahel
  • Fayneh, Eyal
  • Cohen, Shai
  • Talker, Yair

Abstract

A computerized method for IC classification, outlier detection and/or anomaly detection comprising using at least one hardware processor for testing each of the plurality of ICs in accordance with an IC design on a wafer, wherein the IC design comprises a plurality of sensors. The at least one hardware processor is used for testing each of the plurality of ICs by: collecting a plurality of sensor values, the plurality of sensor values including sensor values from each of the plurality of sensors; comparing the plurality of sensor values to a classification scheme, thereby obtaining a classification for each tested IC; and recording the classification of the tested IC.

IPC Classes  ?

  • G01R 31/317 - Testing of digital circuits
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G06N 3/08 - Learning methods
  • G06N 7/01 - Probabilistic graphical models, e.g. probabilistic networks

26.

INTEGRATED CIRCUIT PAD FAILURE DETECTION

      
Application Number 18369172
Status Pending
Filing Date 2023-09-17
First Publication Date 2024-01-04
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Landman, Evelyn
  • Cohen, Shai
  • Redler, Guy
  • Weintrob, Inbar

Abstract

An input/output (I/O) block for a semiconductor integrated circuit (IC), which includes: at least one I/O buffer, configured to define at least one signal path in respect of a connection to a remote I/O block via a communication channel, each signal path causing a respective signal edge slope; and an I/O sensor, coupled to the at least one signal path and configured to generate an output signal indicative of one or both of: (a) a timing difference between the signal edge for a first signal path and the signal edge for a second signal path, and (b) an eye pattern parameter for one or more of the at least one signal path.

IPC Classes  ?

  • G06F 13/16 - Handling requests for interconnection or transfer for access to memory bus
  • H01L 25/065 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices all the devices being of a type provided for in a single subclass of subclasses , , , , or , e.g. assemblies of rectifier diodes the devices not having separate containers the devices being of a type provided for in group
  • H01L 25/18 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices the devices being of types provided for in two or more different main groups of the same subclass of , , , , or
  • H01L 23/00 - Details of semiconductor or other solid state devices

27.

DIE-TO-DIE CONNECTIVITY MONITORING WITH A CLOCKED RECEIVER

      
Application Number IL2023050585
Publication Number 2023/238128
Status In Force
Filing Date 2023-06-07
Publication Date 2023-12-14
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn

Abstract

An I/O sensor including: a programmable delay line; a delayed sampling device having the following inputs: (a) a data signal that also serves as an input to a reference clocked receiver that is configured to sample the data signal received from an interconnect lane between two integrated circuits (ICs) of a multi-IC module, and (b) a delayed clock signal received from the programmable delay line, wherein the delayed clock signal is a delayed version of a clock signal that clocks the reference clocked receiver; a comparison circuits configured to compare a data signal output of the delayed sampling device and a data signal output of the reference clocked receiver; and a controller configured, based on a comparison result of the comparison circuit and on the amount of delay that caused it, to estimate a quality of connectivity between the two ICs over the interconnect lane.

IPC Classes  ?

  • G01R 31/3185 - Reconfiguring for testing, e.g. LSSD, partitioning
  • G01R 31/317 - Testing of digital circuits
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

28.

Die-to-die connectivity monitoring using a clocked receiver

      
Application Number 18089541
Grant Number 11815551
Status In Force
Filing Date 2022-12-27
First Publication Date 2023-11-14
Grant Date 2023-11-14
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn

Abstract

An I/O sensor including: a programmable delay line; a delayed clocked receiver having the following inputs: (a) a data signal and a reference voltage that also serve as inputs to a reference clocked receiver that is configured to sample the data signal received from an interconnect lane between two integrated circuits (ICs) of a multi-IC module, and (b) a delayed clock signal received from the programmable delay line, wherein the delayed clock signal is a delayed version of a clock signal that clocks the reference clocked receiver; a comparison circuits configured to compare a data signal output of the delayed clocked receiver and a data signal output of the reference clocked receiver; and a controller configured, based on a comparison result of the comparison circuit and on the amount of delay that caused it, to estimate a quality of connectivity between the two ICs over the interconnect lane.

IPC Classes  ?

  • G01R 31/317 - Testing of digital circuits
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

29.

Integrated circuit workload, temperature, and/or sub-threshold leakage sensor

      
Application Number 18215828
Grant Number 12092684
Status In Force
Filing Date 2023-06-29
First Publication Date 2023-10-26
Grant Date 2024-09-17
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Weintrob, Inbar
  • Landman, Evelyn
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

An integrated circuit (IC) comprising: a margin measurement circuit configured to monitor multiple data paths of the IC and to output, at different times, different ranges of remaining margins of the multiple data paths; a workload sensor configured to output a value representing aggregate operational stress experienced by the IC over a period of time ending at each of the different times; and a processor configured to: (i) compute, based on the value output by said workload sensor, an upper bound and a lower bound of change of the remaining margin of the IC, and (ii) compute upper and lower bounds of a current remaining margin of the IC, based on (a) the upper and lower bounds of change, and (b) a remaining margin indicated by a border between two adjacent ranges outputted by the margin measurement circuit.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

30.

Integrated circuit margin measurement for structural testing

      
Application Number 18014642
Grant Number 12241933
Status In Force
Filing Date 2021-07-05
First Publication Date 2023-08-17
Grant Date 2025-03-04
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Fayneh, Eyal
  • Cohen, Shai
  • Khazin, Alex

Abstract

Structural testing of a semiconductor integrated circuit (IC), including scanning test patterns or test conditions into internal circuits of the semiconductor IC, for example from a tester device. A timing margin may be measured during the structural test. The margin is measured based on a characteristic of a comparison between a test signal path of the semiconductor IC and a delayed signal path, the delayed signal path being a signal of the test signal path delayed by a variable delay time. An output of the margin measurement sensor may be scanned out, for instance to the tester device.

IPC Classes  ?

  • G01R 31/3185 - Reconfiguring for testing, e.g. LSSD, partitioning
  • G01R 31/30 - Marginal testing, e.g. by varying supply voltage
  • H03K 5/13 - Arrangements having a single output and transforming input signals into pulses delivered at desired time intervals

31.

THERMAL SENSOR FOR INTEGRATED CIRCUIT

      
Application Number IL2023050082
Publication Number 2023/144817
Status In Force
Filing Date 2023-01-25
Publication Date 2023-08-03
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Rahamim, Shaked
  • Landman, Evelyn

Abstract

A thermal sensor for an integrated circuit including: a Proportional To Absolute Temperature (PTAT) circuit comprising n-type MOS transistors and providing a first voltage; and a voltage generator circuit comprising a p-type MOS transistor and providing a second voltage. A reference voltage is based on the first voltage and the second voltage. At least one thermal output signal is based on the reference voltage together with the first voltage and/or the second voltage. In another aspect, an integrated circuit has a power routing arrangement, providing a power supply core voltage (VDDCORE) to operate functional circuitry on the integrated circuit. One or more local thermal sensors are located on the integrated circuit, each comprising a PTAT circuit having MOS transistors using the power supply core voltage to generate a temperature- dependent voltage that varies independently of power supply core voltage variation.

IPC Classes  ?

  • G01K 7/01 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using semiconducting elements having PN junctions
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • H02H 5/04 - Emergency protective circuit arrangements for automatic disconnection directly responsive to an undesired change from normal non-electric working conditions with or without subsequent reconnection responsive to abnormal temperature
  • G05F 3/24 - Regulating voltage or current wherein the variable is DC using uncontrolled devices with non-linear characteristics being semiconductor devices using diode-transistor combinations wherein the transistors are of the field-effect type only
  • G05F 1/567 - Regulating voltage or current wherein the variable actually regulated by the final control device is DC using semiconductor devices in series with the load as final control devices sensing a condition of the system or its load in addition to means responsive to deviations in the output of the system, e.g. current, voltage, power factor for temperature compensation
  • G05F 1/56 - Regulating voltage or current wherein the variable actually regulated by the final control device is DC using semiconductor devices in series with the load as final control devices
  • G01K 15/00 - Testing or calibrating of thermometers
  • G01K 3/00 - Thermometers giving results other than momentary value of temperature
  • G01K 7/42 - Circuits effecting compensation of thermal inertiaCircuits for predicting the stationary value of a temperature

32.

INTEGRATED CIRCUIT SIMULATOR FOR DEGRADATION ESTIMATION AND TIME-OF-FAILURE PREDICTION

      
Application Number IL2022051216
Publication Number 2023/084528
Status In Force
Filing Date 2022-11-15
Publication Date 2023-05-19
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Shmueli, Edi
  • Burlak, Alexander
  • Landman, Evelyn
  • Weintrob, Inbar
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

A method including: Receiving timing data of multiple data paths of an integrated circuit (IC) design. Simulating degradation of the multiple data paths over a period of time, wherein the timing data serve as a baseline of the simulated degradation, and wherein the simulation includes: simulating effects of operational conditions on the multiple data paths, wherein the operational conditions comprise: temperature, voltage, and frequency; simulating an effect of at least one physical degradation phenomenon on the multiple data paths, wherein the at least one physical degradation phenomenon is negative-bias temperature instability (NBTI), hot earner injection (HCI), electromigration (EM), and/or time-dependent dielectric breakdown (TDDB); and simulating operation of a margin measurement circuit which is embedded in the IC design and monitors the multiple data paths, wherein the margin measurement circuit, in the simulated operation, outputs a time series of values of a worst-case remaining margin of the multiple data paths.

IPC Classes  ?

  • G06F 11/34 - Recording or statistical evaluation of computer activity, e.g. of down time, of input/output operation
  • G06F 30/30 - Circuit design
  • G06F 119/04 - Ageing analysis or optimisation against ageing
  • G06F 119/08 - Thermal analysis or thermal optimisation
  • G05B 17/02 - Systems involving the use of models or simulators of said systems electric
  • G06F 30/367 - Design verification, e.g. using simulation, simulation program with integrated circuit emphasis [SPICE], direct methods or relaxation methods

33.

INTEGRATED CIRCUIT DEGRADATION ESTIMATION AND TIME-OF-FAILURE PREDICTION USING WORKLOAD AND MARGIN SENSING

      
Application Number IL2022051217
Publication Number 2023/084529
Status In Force
Filing Date 2022-11-15
Publication Date 2023-05-19
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Shmueli, Edi
  • Burlak, Alexander
  • Landman, Evelyn
  • Weintrob, Inbar
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

An integrated circuit (IC) comprising: a margin measurement circuit configured to monitor multiple data paths of the IC and to output, at different times, different ranges of remaining margins of the multiple data paths; a workload sensor configured to output a value representing aggregate operational stress experienced by the IC over a period of time ending at each of the different times; and a processor configured to: (i) compute, based on the value output by said workload sensor, an upper bound and a lower bound of change of the remaining margin of the IC, and (ii) compute upper and lower bounds of a current remaining margin of the IC, based on (a) the upper and lower bounds of change, and (b) a remaining margin indicated by a border between two adjacent ranges outputted by the margin measurement circuit.

IPC Classes  ?

  • G06F 11/34 - Recording or statistical evaluation of computer activity, e.g. of down time, of input/output operation
  • G06F 30/30 - Circuit design
  • G06F 119/04 - Ageing analysis or optimisation against ageing
  • G06F 119/08 - Thermal analysis or thermal optimisation
  • G05B 17/02 - Systems involving the use of models or simulators of said systems electric
  • G06F 30/367 - Design verification, e.g. using simulation, simulation program with integrated circuit emphasis [SPICE], direct methods or relaxation methods

34.

Thermal sensor for integrated circuit

      
Application Number 17750637
Grant Number 11619551
Status In Force
Filing Date 2022-05-23
First Publication Date 2023-04-04
Grant Date 2023-04-04
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Rahamim, Shaked
  • Landman, Evelyn

Abstract

A thermal sensor for an integrated circuit including: a Proportional To Absolute Temperature (PTAT) circuit comprising n-type MOS transistors and providing a first voltage; and a voltage generator circuit comprising a p-type MOS transistor and providing a second voltage. A reference voltage is based on the first voltage and the second voltage. At least one thermal output signal is based on the reference voltage together with the first voltage and/or the second voltage. In another aspect, an integrated circuit has a power routing arrangement, providing a power supply core voltage (VDDcore) to operate functional circuitry on the integrated circuit. One or more local thermal sensors are located on the integrated circuit, each comprising a PTAT circuit having MOS transistors using the power supply core voltage to generate a temperature-dependent voltage that varies independently of power supply core voltage variation.

IPC Classes  ?

  • G01K 7/00 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat
  • G01K 7/01 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using semiconducting elements having PN junctions
  • G01K 15/00 - Testing or calibrating of thermometers

35.

Integrated circuit margin measurement and failure prediction device

      
Application Number 17862142
Grant Number 11841395
Status In Force
Filing Date 2022-07-11
First Publication Date 2023-02-16
Grant Date 2023-12-12
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Cohen, Shai
  • David, Yahel
  • Fayneh, Eyal
  • Weintrob, Inbar

Abstract

A semiconductor integrated circuit (IC) comprising a signal path combiner, comprising a plurality of input paths and an output path. The IC comprises a delay circuit having an input electrically connected to the output path, the delay circuit delaying an input signal by a variable delay time to output a delayed signal path. The IC may comprise a first storage circuit electrically connected to the output path and a second storage circuit electrically connected to the delayed signal path. The IC comprises a comparison circuit that compares outputs of the signal path combiner and the delayed signal, wherein the comparison circuit comprises a comparison output provided in a comparison data signal to at least one mitigation circuit.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G01R 31/30 - Marginal testing, e.g. by varying supply voltage

36.

Memory device degradation monitoring

      
Application Number 17782146
Grant Number 11929131
Status In Force
Filing Date 2020-12-03
First Publication Date 2023-01-12
Grant Date 2024-03-12
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn

Abstract

A memory circuit which includes: A synchronous memory cell array, configured to receive a clock signal and having address lines and bit lines. A margin agent, determining a status of the synchronous memory cell array based on a time duration between a transition of the clock signal and a change on a signal derived from a bit line due to a signaling on at least one of the address lines. In another aspect, a memory cell, having a bit line configured to provide data input/output to the memory cell may be provided with a comparator, comparing a voltage on the bit line with a reference voltage and indicating of a status of the memory cell thereby. Firmware may receive the indication of the status of a memory cell array, and transmit the indication, issue an alert, and/or reconfigure the memory circuit responsive to the status.

IPC Classes  ?

  • G11C 11/419 - Read-write [R-W] circuits
  • G11C 29/08 - Functional testing, e.g. testing during refresh, power-on self testing [POST] or distributed testing

37.

Integrated circuit pad failure detection

      
Application Number 17866615
Grant Number 12282058
Status In Force
Filing Date 2022-07-18
First Publication Date 2022-11-03
Grant Date 2025-04-22
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Cohen, Shai
  • Landman, Evelyn
  • David, Yahel
  • Weintrob, Inbar

Abstract

A semiconductor integrated circuit (IC) comprising a time-to-digital converter (TDC) configured to measure an input-to-output delay of an I/O buffer of a pad the IC, the measured delay reflecting a connection impedance of the pad. A circuit in the IC, or a computer in communication with the IC, determines electrical connection integrity of the pad based on the measured delay of the I/O buffer.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G04F 10/00 - Apparatus for measuring unknown time intervals by electric means

38.

DETERMINATION OF UNKNOWN BIAS AND DEVICE PARAMETERS OF INTEGRATED CIRCUITS BY MEASUREMENT AND SIMULATION

      
Application Number 17607974
Status Pending
Filing Date 2020-05-13
First Publication Date 2022-10-27
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • David, Yahel
  • Weintrob, Inbar
  • Landman, Evelyn

Abstract

Determining one or more device parameters (Dp) of one or more parts of an integrated circuit (IC), including: simulating the IC; measuring one or more electrical characteristics of the one or more parts of the IC; using the one or more measured electrical characteristics of the one or more parts of the IC and the simulation to determine the one or more device parameters (Dp) of the one or more parts of the IC; for each part of the IC, determining a corresponding joint probability distribution of the one or more device parameters using the simulation; using maximum likelihood (ML) techniques to determine an estimate of the one or more device parameters; and using the one or more measured electrical characteristics of the one or more parts of the IC and the simulation to improve the estimate of the one or more device parameters.

IPC Classes  ?

  • G06F 30/367 - Design verification, e.g. using simulation, simulation program with integrated circuit emphasis [SPICE], direct methods or relaxation methods

39.

ADAPTIVE FREQUENCY SCALING BASED ON CLOCK CYCLE TIME MEASUREMENT

      
Application Number IL2022050363
Publication Number 2022/215076
Status In Force
Filing Date 2022-04-07
Publication Date 2022-10-13
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Weintrob, Inbar
  • Landman, Evelyn
  • Tanasra, Faten
  • Redler, Guy
  • Tzroia, Shai

Abstract

Generation of a clock signal in a semiconductor integrated circuit (IC) is controlled using a Noise Modulation Agent (NMA), configured to measure the clock signal and output a parameter indicative of an effective cycle time of the clock signal. An Adaptive Frequency Scaling (AFS) circuit selectively adjusts a frequency of the clock signal, based on the output of the NMA indicating a change in a power supply voltage of the semiconductor IC.

IPC Classes  ?

  • G06F 1/04 - Generating or distributing clock signals or signals derived directly therefrom
  • H03K 5/135 - Arrangements having a single output and transforming input signals into pulses delivered at desired time intervals by the use of time reference signals, e.g. clock signals
  • H03L 7/081 - Details of the phase-locked loop provided with an additional controlled phase shifter

40.

ON-DIE THERMAL SENSING NETWORK FOR INTEGRATED CIRCUITS

      
Application Number 17630995
Status Pending
Filing Date 2020-07-29
First Publication Date 2022-08-25
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn
  • Weintrob, Inbar
  • David, Yahel
  • Tanasra, Faten

Abstract

A semiconductor integrated circuit (IC) comprising: a first ring oscillator (ROSC) circuit and a second ROSC circuit at spaced apart locations in the IC, each ROSC circuit having a respective oscillation frequency in operation that varies with temperature; a semiconductor temperature sensor, located in the IC proximate to the first ROSC circuit and providing a sensor output signal indicative of temperature; and at least one processor, configured to indicate a temperature at the second ROSC circuit based at least on: the sensor output signal, the oscillation frequency of the second ROSC circuit, and the oscillation frequency of the first ROSC circuit.

IPC Classes  ?

  • G01K 15/00 - Testing or calibrating of thermometers
  • G01K 7/32 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using change of resonant frequency of a crystal

41.

Integrated circuit degradation estimation and time-of-failure prediction using workload and margin sensing

      
Application Number 17703438
Grant Number 11740281
Status In Force
Filing Date 2022-03-24
First Publication Date 2022-08-18
Grant Date 2023-08-29
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Shmueli, Edi
  • Burlak, Alexander
  • Landman, Evelyn
  • Weintrob, Inbar
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

An integrated circuit (IC) comprising: a margin measurement circuit configured to monitor multiple data paths of the IC and to output, at different times, different ranges of remaining margins of the multiple data paths; a workload sensor configured to output a value representing aggregate operational stress experienced by the IC over a period of time ending at each of the different times; and a processor configured to: (i) compute, based on the value output by said workload sensor, an upper bound and a lower bound of change of the remaining margin of the IC, and (ii) compute upper and lower bounds of a current remaining margin of the IC, based on (a) the upper and lower bounds of change, and (b) a remaining margin indicated by a border between two adjacent ranges outputted by the margin measurement circuit.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

42.

Die-to-die connectivity monitoring

      
Application Number 17712698
Grant Number 12072376
Status In Force
Filing Date 2022-04-04
First Publication Date 2022-07-21
Grant Date 2024-08-27
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn
  • Cohen, Ishai Zeev
  • Rahamim, Shaked
  • Khazin, Alex

Abstract

An input/output (I/O) sensor for a multi-IC module. The I/O sensor includes: delay circuitry, configured to receive a data signal from an interconnected part of an IC of the multi-IC module and to generate a delayed data signal, the delay circuitry including an adjustable delay-line configured to delay an input signal by a set time duration; a comparison circuit, configured to generate a comparison signal by comparing the data signal with the delayed data signal; and processing logic, configured to set the time duration of the adjustable delay-line and, based on the comparison signal, identify a margin measurement of the data signal for determining an interconnect quality parameter.

IPC Classes  ?

  • G01R 31/30 - Marginal testing, e.g. by varying supply voltage
  • G01R 31/3173 - Marginal testing
  • H01L 23/538 - Arrangements for conducting electric current within the device in operation from one component to another the interconnection structure between a plurality of semiconductor chips being formed on, or in, insulating substrates
  • H03K 19/003 - Modifications for increasing the reliability

43.

Integrated circuit I/O integrity and degradation monitoring

      
Application Number 17589758
Grant Number 11762789
Status In Force
Filing Date 2022-01-31
First Publication Date 2022-05-19
Grant Date 2023-09-19
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Landman, Evelyn
  • Cohen, Shai
  • Redler, Guy
  • Weintrob, Inbar

Abstract

An input/output (I/O) block for a semiconductor integrated circuit (IC), which includes: at least one I/O buffer, configured to define at least one signal path in respect of a connection to a remote I/O block via a communication channel, each signal path causing a respective signal edge slope; and an I/O sensor, coupled to the at least one signal path and configured to generate an output signal indicative of one or both of: (a) a timing difference between the signal edge for a first signal path and the signal edge for a second signal path, and (b) an eye pattern parameter for one or more of the at least one signal path.

IPC Classes  ?

  • G06F 13/16 - Handling requests for interconnection or transfer for access to memory bus
  • H01L 25/065 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices all the devices being of a type provided for in a single subclass of subclasses , , , , or , e.g. assemblies of rectifier diodes the devices not having separate containers the devices being of a type provided for in group
  • H01L 25/18 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices the devices being of types provided for in two or more different main groups of the same subclass of , , , , or
  • H01L 23/00 - Details of semiconductor or other solid state devices

44.

Efficient integrated circuit simulation and testing

      
Application Number 17485168
Grant Number 12216976
Status In Force
Filing Date 2021-09-24
First Publication Date 2022-01-13
Grant Date 2025-02-04
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Talker, Yair
  • Fayneh, Eyal
  • David, Yahel
  • Cohen, Shai
  • Weintrob, Inbar

Abstract

A method comprising using at least one hardware processor for: running a Monte Carlo simulation of possible integrated circuit (IC) process variations of each of a plurality of IC cell types, wherein each of the plurality of IC cell types is defined by multiple specific transistors and multiple specific interconnects; based on the results of the Monte Carlo simulation, creating a library of IC cell types and their corresponding behavioral values for each of the possible IC process variations, and storing the library in a non-transient memory; receiving an IC design embodied as a digital file; correlating the received IC design with the library; and predicting a frequency distribution and a power distribution of ICs manufactured according to the IC design.

IPC Classes  ?

45.

INTEGRATED CIRCUIT MARGIN MEASUREMENT FOR STRUCTURAL TESTING

      
Application Number IL2021050826
Publication Number 2022/009199
Status In Force
Filing Date 2021-07-05
Publication Date 2022-01-13
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Fayneh, Eyal
  • Cohen, Shai
  • Khazin, Alex

Abstract

Structural testing of a semiconductor integrated circuit (IC), including scanning test patterns or test conditions into internal circuits of the semiconductor IC, for example from a tester device. A timing margin may be measured during the structural test. The margin is measured based on a characteristic of a comparison between a test signal path of the semiconductor IC and a delayed signal path, the delayed signal path being a signal of the test signal path delayed by a variable delay time. An output of the margin measurement sensor may be scanned out, for instance to the tester device.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • H03K 5/13 - Arrangements having a single output and transforming input signals into pulses delivered at desired time intervals

46.

DIE-TO-DIE CONNECTIVITY MONITORING

      
Application Number IB2021051725
Publication Number 2021/214562
Status In Force
Filing Date 2021-03-02
Publication Date 2021-10-28
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn
  • Cohen, Shai
  • Rahamim, Shaked
  • Khazin, Alex

Abstract

An input/output (I/O) sensor for a multi-IC module. The I/O sensor comprises: delay circuitry, configured to receive a data signal from an interconnected part of an IC of the multi-IC module and to generate a delayed data signal, the delay circuitry comprising an adjustable delay-line configured to delay an input signal by a set time duration; a comparison circuit, configured to generate a comparison signal by comparing the data signal with the delayed data signal; and processing logic, configured to set the time duration of the adjustable delay-line and, based on the comparison signal, identify a margin measurement of the data signal for determining an interconnect quality parameter.

IPC Classes  ?

  • G01R 31/317 - Testing of digital circuits
  • G01R 31/27 - Testing of devices without physical removal from the circuit of which they form part, e.g. compensating for effects due to surrounding elements

47.

Die-to-die connectivity monitoring

      
Application Number 17205780
Grant Number 11293977
Status In Force
Filing Date 2021-03-18
First Publication Date 2021-10-21
Grant Date 2022-04-05
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn
  • Cohen, Ishai Zeev
  • Rahamim, Shaked
  • Khazin, Alex

Abstract

An input/output (I/O) sensor for a multi-IC module. The I/O sensor includes: delay circuitry, configured to receive a data signal from an interconnected part of an IC of the multi-IC module and to generate a delayed data signal, the delay circuitry including an adjustable delay-line configured to delay an input signal by a set time duration; a comparison circuit, configured to generate a comparison signal by comparing the data signal with the delayed data signal; and processing logic, configured to set the time duration of the adjustable delay-line and, based on the comparison signal, identify a margin measurement of the data signal for determining an interconnect quality parameter.

IPC Classes  ?

  • G01R 31/10 - Locating faults in cables, transmission lines, or networks by increasing destruction at fault, e.g. burning-in by using a pulse generator operating a special programme
  • H01L 23/538 - Arrangements for conducting electric current within the device in operation from one component to another the interconnection structure between a plurality of semiconductor chips being formed on, or in, insulating substrates
  • H03K 19/003 - Modifications for increasing the reliability
  • G01R 31/3173 - Marginal testing
  • G01R 31/30 - Marginal testing, e.g. by varying supply voltage

48.

Integrated circuit profiling and anomaly detection

      
Application Number 17047243
Grant Number 11762013
Status In Force
Filing Date 2019-04-16
First Publication Date 2021-06-10
Grant Date 2023-09-19
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • David, Yahel
  • Fayneh, Eyal
  • Cohen, Shai
  • Talker, Yair

Abstract

A computerized method for IC classification, outlier detection and/or anomaly detection comprising using at least one hardware processor for testing each of the plurality of ICs in accordance with an IC design on a wafer, wherein the IC design comprises a plurality of sensors. The at least one hardware processor is used for testing each of the plurality of ICs by: collecting a plurality of sensor values, the plurality of sensor values including sensor values from each of the plurality of sensors; comparing the plurality of sensor values to a classification scheme, thereby obtaining a classification for each tested IC; and recording the classification of the tested IC.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G01R 31/317 - Testing of digital circuits
  • G06N 3/08 - Learning methods
  • G06N 7/01 - Probabilistic graphical models, e.g. probabilistic networks

49.

MEMORY DEVICE DEGRADATION MONITORING

      
Application Number IL2020051246
Publication Number 2021/111444
Status In Force
Filing Date 2020-12-03
Publication Date 2021-06-10
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn

Abstract

A memory circuit which includes: A synchronous memory cell array, configured to receive a clock signal and having address lines and bit lines. A margin agent, determining a status of the synchronous memory cell array based on a time duration between a transition of the clock signal and a change on a signal derived from a bit line due to a signaling on at least one of the address lines. In another aspect, a memory cell, having a bit line configured to provide data input/output to the memory cell may be provided with a comparator, comparing a voltage on the bit line with a reference voltage and indicating of a status of the memory cell thereby. Firmware may receive the indication of the status of a memory cell array, and transmit the indication, issue an alert, and/or reconfigure the memory circuit responsive to the status.

IPC Classes  ?

  • G11C 29/50 - Marginal testing, e.g. race, voltage or current testing
  • G11C 29/04 - Detection or location of defective memory elements
  • G06F 11/00 - Error detectionError correctionMonitoring
  • G11C 7/10 - Input/output [I/O] data interface arrangements, e.g. I/O data control circuits, I/O data buffers

50.

Efficient integrated circuit simulation and testing

      
Application Number 17254468
Grant Number 11132485
Status In Force
Filing Date 2019-06-19
First Publication Date 2021-06-03
Grant Date 2021-09-28
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Talker, Yair
  • Fayneh, Eyal
  • David, Yahel
  • Cohen, Shai
  • Weintrob, Inbar

Abstract

A method comprising using at least one hardware processor for: running a Monte Carlo simulation of possible integrated circuit (IC) process variations of each of a plurality of IC cell types, wherein each of the plurality of IC cell types is defined by multiple specific transistors and multiple specific interconnects; based on the results of the Monte Carlo simulation, creating a library of IC cell types and their corresponding behavioral values for each of the possible IC process variations, and storing the library in a non-transient memory; receiving an IC design embodied as a digital file; correlating the received IC design with the library; and predicting a frequency distribution and a power distribution of ICs manufactured according to the IC design.

IPC Classes  ?

51.

ON-DIE THERMAL SENSING NETWORK FOR INTEGRATED CIRCUITS

      
Application Number IL2020050840
Publication Number 2021/019539
Status In Force
Filing Date 2020-07-29
Publication Date 2021-02-04
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • Landman, Evelyn
  • Weintrob, Inbar
  • David, Yahel
  • Tanasra, Faten

Abstract

A semiconductor integrated circuit (IC) comprising: a first ring oscillator (ROSC) circuit and a second ROSC circuit at spaced apart locations in the IC, each ROSC circuit having a respective oscillation frequency in operation that varies with temperature; a semiconductor temperature sensor, located in the IC proximate to the first ROSC circuit and providing a sensor output signal indicative of temperature; and at least one processor, configured to indicate a temperature at the second ROSC circuit based at least on: the sensor output signal, the oscillation frequency of the second ROSC circuit, and the oscillation frequency of the first ROSC circuit.

IPC Classes  ?

  • G01K 7/20 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using resistive elements the element being a linear resistance, e.g. platinum resistance thermometer in a specially-adapted circuit, e.g. bridge circuit
  • G01R 31/27 - Testing of devices without physical removal from the circuit of which they form part, e.g. compensating for effects due to surrounding elements
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

52.

Integrated circuit margin measurement and failure prediction device

      
Application Number 16764056
Grant Number 11385282
Status In Force
Filing Date 2018-11-15
First Publication Date 2020-12-17
Grant Date 2022-07-12
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Cohen, Shai
  • David, Yahel
  • Fayneh, Eyal
  • Weintrob, Inbar

Abstract

A semiconductor integrated circuit (IC) comprising a signal path combiner, comprising a plurality of input paths and an output path. The IC comprises a delay circuit having an input electrically connected to the output path, the delay circuit delaying an input signal by a variable delay time to output a delayed signal path. The IC may comprise a first storage circuit electrically connected to the output path and a second storage circuit electrically connected to the delayed signal path. The IC comprises a comparison circuit that compares outputs of the signal path combiner and the delayed signal, wherein the comparison circuit comprises a comparison output provided in a comparison data signal to at least one mitigation circuit.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G01R 31/30 - Marginal testing, e.g. by varying supply voltage

53.

Integrated circuit I/O integrity and degradation monitoring

      
Application Number 16988993
Grant Number 11275700
Status In Force
Filing Date 2020-08-10
First Publication Date 2020-11-26
Grant Date 2022-03-15
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Landman, Evelyn
  • Cohen, Shai
  • Redler, Guy
  • Weintrob, Inbar

Abstract

An input/output (I/O) block for a semiconductor integrated circuit (IC), which includes: at least one I/O buffer, configured to define at least one signal path in respect of a connection to a remote I/O block via a communication channel, each signal path causing a respective signal edge slope; and an I/O sensor, coupled to the at least one signal path and configured to generate an output signal indicative of one or both of: (a) a timing difference between the signal edge for a first signal path and the signal edge for a second signal path, and (b) an eye pattern parameter for one or more of the at least one signal path.

IPC Classes  ?

  • G06F 13/16 - Handling requests for interconnection or transfer for access to memory bus
  • H01L 25/065 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices all the devices being of a type provided for in a single subclass of subclasses , , , , or , e.g. assemblies of rectifier diodes the devices not having separate containers the devices being of a type provided for in group
  • H01L 25/18 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices the devices being of types provided for in two or more different main groups of the same subclass of , , , , or
  • H01L 23/00 - Details of semiconductor or other solid state devices

54.

DETERMINATION OF UNKNOWN BIAS AND DEVICE PARAMETERS OF INTEGRATED CIRCUITS BY MEASUREMENT AND SIMULATION

      
Application Number IL2020050519
Publication Number 2020/230130
Status In Force
Filing Date 2020-05-13
Publication Date 2020-11-19
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Redler, Guy
  • David, Yahel
  • Weintrob, Inbar
  • Landman, Evelyn

Abstract

Determining one or more device parameters (Dp) of one or more parts of an integrated circuit (IC), including: simulating the IC; measuring one or more electrical characteristics of the one or more parts of the IC; using the one or more measured electrical characteristics of the one or more parts of the IC and the simulation to determine the one or more device parameters (Dp) of the one or more parts of the IC; for each part of the IC, determining a corresponding joint probability distribution of the one or more device parameters using the simulation; using maximum likelihood (ML) techniques to determine an estimate of the one or more device parameters; and using the one or more measured electrical characteristics of the one or more parts of the IC and the simulation to improve the estimate of the one or more device parameters.

IPC Classes  ?

  • G06F 30/20 - Design optimisation, verification or simulation
  • G06F 30/367 - Design verification, e.g. using simulation, simulation program with integrated circuit emphasis [SPICE], direct methods or relaxation methods

55.

Integrated circuit pad failure detection

      
Application Number 16765997
Grant Number 11391771
Status In Force
Filing Date 2018-11-22
First Publication Date 2020-11-19
Grant Date 2022-07-19
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Cohen, Shai
  • Landman, Evelyn
  • David, Yahel
  • Weintrob, Inbar

Abstract

A semiconductor integrated circuit (IC) comprising a time-to-digital converter circuit (TDC), wherein time inputs to the TDC are (i) one or more input to an input/output (I/O) buffer of a pad of the IC, and (ii) one or more output from the I/O buffer. The IC comprises a digital comparator circuit electrically configured to: receive a stream of digital output values from the TDC, compare each value of the stream to one or more previous value in the stream, and when the comparison reflects a difference value greater than a threshold, issuing a notification to a user of the IC.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G04F 10/00 - Apparatus for measuring unknown time intervals by electric means

56.

Integrated circuit workload, temperature and/or subthreshold leakage sensor

      
Application Number 16960421
Grant Number 11408932
Status In Force
Filing Date 2019-01-08
First Publication Date 2020-10-22
Grant Date 2022-08-09
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Weintrob, Inbar
  • Landman, Evelyn
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

Determination of one or more operating conditions (leakage current, temperature and/or workload) of a functional transistor in a semiconductor integrated circuit (IC). The functional transistor provides an electrical current, which is provided as an input to a ring oscillator (ROSC). The ROSC is located in the IC proximate to the functional transistor and has an oscillation frequency in operation. The one or more operating conditions of the functional transistor are determined based on the oscillation frequency of the ROSC.

IPC Classes  ?

  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G01R 31/52 - Testing for short-circuits, leakage current or ground faults
  • G01K 7/00 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat

57.

INTEGRATED CIRCUIT I/O INTEGRITY AND DEGRADATION MONITORING

      
Application Number IL2019051436
Publication Number 2020/141516
Status In Force
Filing Date 2019-12-30
Publication Date 2020-07-09
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Landman, Evelyn
  • Cohen, Shai
  • Redler, Guy
  • Weintrob, Inbar

Abstract

An input/output (I/O) block for a semiconductor integrated circuit (IC), which includes: at least one I/O buffer, configured to define at least one signal path in respect of a connection to a remote I/O block via a communication channel, each signal path causing a respective signal edge slope; and an I/O sensor, coupled to the at least one signal path and configured to generate an output signal indicative of one or both of: (a) a timing difference between the signal edge for a first signal path and the signal edge for a second signal path, and (b) an eye pattern parameter for one or more of the at least one signal path.

IPC Classes  ?

  • G01R 31/317 - Testing of digital circuits
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer

58.

Integrated circuit I/O integrity and degradation monitoring

      
Application Number 16729680
Grant Number 10740262
Status In Force
Filing Date 2019-12-30
First Publication Date 2020-07-02
Grant Date 2020-08-11
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Landman, Evelyn
  • Cohen, Shai
  • Redler, Guy
  • Weintrob, Inbar

Abstract

An input/output (I/O) block for a semiconductor integrated circuit (IC), which includes: at least one I/O buffer, configured to define at least one signal path in respect of a connection to a remote I/O block via a communication channel, each signal path causing a respective signal edge slope; and an I/O sensor, coupled to the at least one signal path and configured to generate an output signal indicative of one or both of: (a) a timing difference between the signal edge for a first signal path and the signal edge for a second signal path, and (b) an eye pattern parameter for one or more of the at least one signal path.

IPC Classes  ?

  • G06F 3/00 - Input arrangements for transferring data to be processed into a form capable of being handled by the computerOutput arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
  • G06F 13/16 - Handling requests for interconnection or transfer for access to memory bus
  • H01L 25/065 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices all the devices being of a type provided for in a single subclass of subclasses , , , , or , e.g. assemblies of rectifier diodes the devices not having separate containers the devices being of a type provided for in group
  • H01L 25/18 - Assemblies consisting of a plurality of individual semiconductor or other solid-state devices the devices being of types provided for in two or more different main groups of the same subclass of , , , , or
  • H01L 23/00 - Details of semiconductor or other solid state devices

59.

EFFICIENT INTEGRATED CIRCUIT SIMULATION AND TESTING

      
Application Number IL2019050686
Publication Number 2019/244154
Status In Force
Filing Date 2019-06-19
Publication Date 2019-12-26
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Talker, Yair
  • Fayneh, Eyal
  • David, Yahel
  • Cohen, Shai
  • Weintrob, Inbar

Abstract

A method comprising using at least one hardware processor for: running a Monte Carlo simulation of possible integrated circuit (IC) process variations of each of a plurality of IC cell types, wherein each of the plurality of IC cell types is defined by multiple specific transistors and multiple specific interconnects; based on the results of the Monte Carlo simulation, creating a library of IC cell types and their corresponding behavioral values for each of the possible IC process variations, and storing the library in a non-transient memory; receiving an IC design embodied as a digital file; correlating the received IC design with the library; and predicting a frequency distribution and a power distribution of ICs manufactured according to the IC design.

IPC Classes  ?

60.

INTEGRATED CIRCUIT PROFILING AND ANOMALY DETECTION

      
Application Number IL2019050433
Publication Number 2019/202595
Status In Force
Filing Date 2019-04-16
Publication Date 2019-10-24
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • David, Yahel
  • Fayneh, Eyal
  • Cohen, Shai
  • Talker, Yair

Abstract

A computerized method for IC classification, outlier detection and/or anomaly detection comprising using at least one hardware processor for testing each of the plurality of ICs in accordance with an IC design on a wafer, wherein the IC design comprises a plurality of sensors. The at least one hardware processor is used for testing each of the plurality of ICs by: collecting a plurality of sensor values, the plurality of sensor values including sensor values from each of the plurality of sensors; comparing the plurality of sensor values to a classification scheme, thereby obtaining a classification for each tested IC; and recording the classification of the tested IC. A computerized method for IC classification, outlier detection and/or anomaly detection comprising using at least one hardware processor for testing each of the plurality of ICs in accordance with an IC design on a wafer, wherein the IC design comprises a plurality of sensors. The at least one hardware processor is used for testing each of the plurality of ICs by: collecting a plurality of sensor values, the plurality of sensor values including sensor values from each of the plurality of sensors; comparing the plurality of sensor values to a classification scheme, thereby obtaining a classification for each tested IC; and recording the classification of the tested IC.

IPC Classes  ?

  • G01R 31/317 - Testing of digital circuits
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer
  • G06N 7/00 - Computing arrangements based on specific mathematical models
  • G06F 17/50 - Computer-aided design

61.

INTEGRATED CIRCUIT WORKLOAD, TEMPERATURE AND/OR SUB-THRESHOLD LEAKAGE SENSOR

      
Application Number IL2019050039
Publication Number 2019/135247
Status In Force
Filing Date 2019-01-08
Publication Date 2019-07-11
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Weintrob, Inbar
  • Landman, Evelyn
  • David, Yahel
  • Cohen, Shai
  • Redler, Guy

Abstract

Determination of one or more operating conditions (leakage current, temperature and/or workload) of a functional transistor in a semiconductor integrated circuit (IC). The functional transistor provides an electrical current, which is provided as an input to a ring oscillator (ROSC). The ROSC is located in the IC proximate to the functional transistor and has an oscillation frequency in operation. The one or more operating conditions of the functional transistor are determined based on the oscillation frequency of the ROSC.

IPC Classes  ?

  • G01R 31/00 - Arrangements for testing electric propertiesArrangements for locating electric faultsArrangements for electrical testing characterised by what is being tested not provided for elsewhere
  • G01K 7/00 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat

62.

INTEGRATED CIRCUIT PAD FAILURE DETECTION

      
Application Number IL2018051267
Publication Number 2019/102467
Status In Force
Filing Date 2018-11-22
Publication Date 2019-05-31
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Fayneh, Eyal
  • Cohen, Shai
  • Landman, Evelyn
  • David, Yahel
  • Weintrob, Inbar

Abstract

A semiconductor integrated circuit (IC) comprising a time-to-digital converter circuit (TDC), wherein time inputs to the TDC are (i) one or more input to an input/output (I/O) buffer of a pad of the IC, and (ii) one or more output from the I/O buffer. The IC comprises a digital comparator circuit electrically configured to: receive a stream of digital output values from the TDC, compare each value of the stream to one or more previous value in the stream, and when the comparison reflects a difference value greater than a threshold, issuing a notification to a user of the IC.

IPC Classes  ?

  • G01R 31/04 - Testing connections, e.g. of plugs or non-disconnectable joints
  • G01R 31/02 - Testing of electric apparatus, lines, or components for short-circuits, discontinuities, leakage, or incorrect line connection
  • G04F 10/00 - Apparatus for measuring unknown time intervals by electric means

63.

INTEGRATED CIRCUIT MARGIN MEASUREMENT AND FAILURE PREDICTION DEVICE

      
Application Number IL2018051234
Publication Number 2019/097516
Status In Force
Filing Date 2018-11-15
Publication Date 2019-05-23
Owner PROTEANTECS LTD. (Israel)
Inventor
  • Landman, Evelyn
  • Cohen, Shai
  • David, Yahel
  • Fayneh, Eyal
  • Weintrob, Inbar

Abstract

A semiconductor integrated circuit (IC) comprising a signal path combiner, comprising a plurality of input paths and an output path. The IC comprises a delay circuit having an input electrically connected to the output path, the delay circuit delaying an input signal by a variable delay time to output a delayed signal path. The IC may comprise a first storage circuit electrically connected to the output path and a second storage circuit electrically connected to the delayed signal path. The IC comprises a comparison circuit that compares outputs of the signal path combiner and the delayed signal, wherein the comparison circuit comprises a comparison output provided in a comparison data signal to at least one mitigation circuit.

IPC Classes  ?

  • G01R 31/3193 - Tester hardware, i.e. output processing circuits with comparison between actual response and known fault-free response
  • G01R 31/02 - Testing of electric apparatus, lines, or components for short-circuits, discontinuities, leakage, or incorrect line connection
  • G01R 31/28 - Testing of electronic circuits, e.g. by signal tracer