Statek Corporation

United States of America

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IPC Class
H03H 9/215 - Crystal tuning forks consisting of quartz 12
H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details 9
H03H 9/10 - Mounting in enclosures 7
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 5
H03H 9/05 - Holders or supports 5
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Status
Pending 2
Registered / In Force 15

1.

Torsional mode quartz crystal device

      
Application Number 18776130
Grant Number 12706590
Status In Force
Filing Date 2024-07-17
First Publication Date 2025-05-29
Grant Date 2026-08-11
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal. Each of the tines has formed on one or both of opposing sides thereof a vertically protruding line structure laterally elongated in the horizontal lengthwise direction. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details

2.

Torsional mode quartz crystal device

      
Application Number 18815247
Grant Number 12580549
Status In Force
Filing Date 2024-08-26
First Publication Date 2025-05-29
Grant Date 2026-03-17
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal, wherein each of the tines has formed on one or both of opposing sides thereof a pair of vertically recessed groove structures laterally elongated in the horizontal lengthwise direction, wherein the pair of groove structures are separated in a horizontal widthwise direction by a line structure. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • 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
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details
  • H03H 9/05 - Holders or supports
  • H03H 9/10 - Mounting in enclosures
  • H03H 9/13 - Driving means, e.g. electrodes, coils for networks consisting of piezoelectric or electrostrictive materials

3.

SILVER-BONDED QUARTZ CRYSTAL

      
Application Number 18972778
Status Pending
Filing Date 2024-12-06
First Publication Date 2025-03-27
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Pham, Thomas

Abstract

The disclosed technology generally relates to packaging a quartz crystal, and more particularly to bonding a quartz crystal using sintering silver paste. In one aspect, a method of packaging a quartz crystal comprises attaching a quartz crystal to a package substrate using one or more silver paste layers comprising silver particles. The method additionally comprises sintering the silver paste in a substantially oxygen-free atmosphere and at a sintering temperature sufficient to cause sintering of the silver particles. The sintering is such that the quartz crystal exhibits a positive drift in resonance frequency of the quartz crystal over time. The method further comprises hermetically sealing the quartz crystal in the package substrate.

IPC Classes  ?

  • H03H 9/10 - Mounting in enclosures
  • B22F 1/107 - Metallic powder containing lubricating or binding agentsMetallic powder containing organic material containing organic material comprising solvents, e.g. for slip casting
  • B22F 3/10 - Sintering only
  • B29K 83/00 - Use of polymers having silicon, with or without sulfur, nitrogen, oxygen or carbon only, in the main chain, as moulding material
  • C08G 65/336 - Polymers modified by chemical after-treatment with organic compounds containing silicon
  • H03H 3/02 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks
  • H03H 3/04 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks for obtaining desired frequency or temperature coefficient
  • H03H 9/19 - Constructional features of resonators consisting of piezoelectric or electrostrictive material having a single resonator consisting of quartz
  • H03H 9/215 - Crystal tuning forks consisting of quartz

4.

TORSIONAL MODE QUARTZ CRYSTAL DEVICE

      
Application Number 18753423
Status Pending
Filing Date 2024-06-25
First Publication Date 2024-10-24
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. The quartz crystal device includes a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal. Each of the tines comprises a line structure vertically protruding out of a central portion of each of top and bottom surfaces thereof and elongated in the horizontal lengthwise direction. The line structures comprise sidewalls, and at least some of the sidewalls and adjoining ones of the top and bottom surfaces of the tines are adjoined by faceted corners. The quartz crystal device also includes first and second electrodes formed on each of the tines, where the first and second electrodes are formed on opposing ones of the sidewalls of each of the line structures.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • 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
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details
  • H03H 9/05 - Holders or supports
  • H03H 9/10 - Mounting in enclosures
  • H03H 9/13 - Driving means, e.g. electrodes, coils for networks consisting of piezoelectric or electrostrictive materials

5.

Torsional mode quartz crystal device

      
Application Number 18319319
Grant Number 12074585
Status In Force
Filing Date 2023-05-17
First Publication Date 2024-04-25
Grant Date 2024-08-27
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal, wherein each of the tines has formed on one or both of opposing sides thereof a pair of vertically recessed groove structures laterally elongated in the horizontal lengthwise direction, wherein the pair of groove structures are separated in a horizontal widthwise direction by a line structure. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • 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
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details
  • H03H 9/05 - Holders or supports
  • H03H 9/10 - Mounting in enclosures
  • H03H 9/13 - Driving means, e.g. electrodes, coils for networks consisting of piezoelectric or electrostrictive materials

6.

Torsional mode quartz crystal device

      
Application Number 18310341
Grant Number 12047055
Status In Force
Filing Date 2023-05-01
First Publication Date 2023-11-02
Grant Date 2024-07-23
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal. Each of the tines has formed on one or both of opposing sides thereof a vertically protruding line structure laterally elongated in the horizontal lengthwise direction. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details
  • H10N 30/80 - Constructional details

7.

Torsional mode quartz crystal device

      
Application Number 17305898
Grant Number 11641187
Status In Force
Filing Date 2021-07-16
First Publication Date 2022-04-07
Grant Date 2023-05-02
Owner STATEK CORPORATION (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal. Each of the tines has formed on one or both of opposing sides thereof a vertically protruding line structure laterally elongated in the horizontal lengthwise direction. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • H01L 41/04 - SEMICONDUCTOR DEVICES; ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR - Details thereof - Details of piezo-electric or electrostrictive elements
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details

8.

Torsional mode quartz crystal device

      
Application Number 17305904
Grant Number 11658637
Status In Force
Filing Date 2021-07-16
First Publication Date 2022-04-07
Grant Date 2023-05-23
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal, wherein each of the tines has formed on one or both of opposing sides thereof a pair of vertically recessed groove structures laterally elongated in the horizontal lengthwise direction, wherein the pair of groove structures are separated in a horizontal widthwise direction by a line structure. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • H03H 9/05 - Holders or supports
  • H03H 9/13 - Driving means, e.g. electrodes, coils for networks consisting of piezoelectric or electrostrictive materials
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details
  • 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
  • H03H 9/10 - Mounting in enclosures

9.

Silver-bonded quartz crystal

      
Application Number 17305897
Grant Number 12166467
Status In Force
Filing Date 2021-07-16
First Publication Date 2022-03-10
Grant Date 2024-12-10
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Pham, Thomas

Abstract

The disclosed technology generally relates to packaging a quartz crystal, and more particularly to bonding a quartz crystal using sintering silver paste. In one aspect, a method of packaging a quartz crystal comprises attaching a quartz crystal to a package substrate using one or more silver paste layers comprising silver particles. The method additionally comprises sintering the silver paste in a substantially oxygen-free atmosphere and at a sintering temperature sufficient to cause sintering of the silver particles. The sintering is such that the quartz crystal exhibits a positive drift in resonance frequency of the quartz crystal over time. The method further comprises hermetically sealing the quartz crystal in the package substrate.

IPC Classes  ?

  • H03H 9/10 - Mounting in enclosures
  • C08G 65/336 - Polymers modified by chemical after-treatment with organic compounds containing silicon
  • H03H 3/04 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks for obtaining desired frequency or temperature coefficient
  • H03H 9/19 - Constructional features of resonators consisting of piezoelectric or electrostrictive material having a single resonator consisting of quartz
  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • B22F 1/107 - Metallic powder containing lubricating or binding agentsMetallic powder containing organic material containing organic material comprising solvents, e.g. for slip casting
  • B22F 3/10 - Sintering only
  • B29K 83/00 - Use of polymers having silicon, with or without sulfur, nitrogen, oxygen or carbon only, in the main chain, as moulding material
  • H03H 3/02 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks

10.

Torsional mode quartz crystal device

      
Application Number 16548675
Grant Number 11070191
Status In Force
Filing Date 2019-08-22
First Publication Date 2021-02-25
Grant Date 2021-07-20
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal. Each of the tines has formed on one or both of opposing sides thereof a vertically protruding line structure laterally elongated in the horizontal lengthwise direction. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • H01L 41/04 - SEMICONDUCTOR DEVICES; ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR - Details thereof - Details of piezo-electric or electrostrictive elements
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details

11.

Torsional mode quartz crystal device

      
Application Number 16999579
Grant Number 11070192
Status In Force
Filing Date 2020-08-21
First Publication Date 2021-02-25
Grant Date 2021-07-20
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chen, Jian Feng

Abstract

The disclosed technology generally relates to quartz crystal devices and more particularly to quartz crystal devices configured to vibrate in torsional mode. In one aspect, a quartz crystal device configured for temperature sensing comprises a fork-shaped quartz crystal comprising a pair of elongate tines laterally extending from a base region in a horizontal lengthwise direction of the fork-shaped quartz crystal, wherein each of the tines has formed on one or both of opposing sides thereof a pair of vertically recessed groove structures laterally elongated in the horizontal lengthwise direction, wherein the pair of groove structures are separated in a horizontal widthwise direction by a line structure. The quartz crystal device further comprises a first electrode and a second electrode formed on the one or both of the opposing sides of each of the tines and configured such that, when an electrical bias is applied between the first and second electrodes, the fork-shaped quartz crystal vibrates in a torsional mode in which each of the tines twists about a respective axis extending in the horizontal lengthwise direction.

IPC Classes  ?

  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • H03H 9/05 - Holders or supports
  • H03H 9/13 - Driving means, e.g. electrodes, coils for networks consisting of piezoelectric or electrostrictive materials
  • H03H 9/02 - Networks comprising electromechanical or electro-acoustic elementsElectromechanical resonators Details
  • 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
  • H03H 9/10 - Mounting in enclosures

12.

Silver-bonded quartz crystal

      
Application Number 15937065
Grant Number 11070190
Status In Force
Filing Date 2018-03-27
First Publication Date 2019-10-03
Grant Date 2021-07-20
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Pham, Thomas

Abstract

The disclosed technology generally relates to packaging a quartz crystal, and more particularly to bonding a quartz crystal using sintering silver paste. In one aspect, a method of packaging a quartz crystal comprises attaching a quartz crystal to a package substrate using one or more silver paste layers comprising silver particles. The method additionally comprises sintering the silver paste in a substantially oxygen-free atmosphere and at a sintering temperature sufficient to cause sintering of the silver particles. The sintering is such that the quartz crystal exhibits a positive drift in resonance frequency of the quartz crystal over time. The method further comprises hermetically sealing the quartz crystal in the package substrate.

IPC Classes  ?

  • H03H 9/19 - Constructional features of resonators consisting of piezoelectric or electrostrictive material having a single resonator consisting of quartz
  • H03H 9/215 - Crystal tuning forks consisting of quartz
  • B22F 1/00 - Metallic powderTreatment of metallic powder, e.g. to facilitate working or to improve properties
  • C08G 65/336 - Polymers modified by chemical after-treatment with organic compounds containing silicon
  • H03H 3/04 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks for obtaining desired frequency or temperature coefficient
  • B22F 3/10 - Sintering only
  • B29K 83/00 - Use of polymers having silicon, with or without sulfur, nitrogen, oxygen or carbon only, in the main chain, as moulding material
  • H03H 3/02 - Apparatus or processes specially adapted for the manufacture of impedance networks, resonating circuits, resonators for the manufacture of electromechanical resonators or networks for the manufacture of piezoelectric or electrostrictive resonators or networks

13.

Piezoelectric resonator with vibration isolation

      
Application Number 12471084
Grant Number 08446079
Status In Force
Filing Date 2009-05-22
First Publication Date 2009-11-26
Grant Date 2013-05-21
Owner Statek Corporation (USA)
Inventor
  • Fang, Yue
  • Chuang, Shih

Abstract

Embodiments of the present disclosure are directed to a piezoelectric resonator. The resonator can have a base defining at least a first base portion and a second base portion and two or more vibrating arms projecting from the first base portion, the first vibrating arm being substantially parallel to the second vibrating arm. The resonator can define a generally planar first main surface and a generally planar second main surface defined by the base and the first and second vibrating arms wherein the first main surface is generally parallel to the second main surface. At least one groove can be formed in at least one of the first and second main surfaces of each of the first and second vibrating arms. The resonator can further have at least one vibration isolation arm projecting from the base, the vibration isolation arm being approximately perpendicular to the two or more vibrating arms.

IPC Classes  ?

  • H03H 9/19 - Constructional features of resonators consisting of piezoelectric or electrostrictive material having a single resonator consisting of quartz
  • H03H 9/21 - Crystal tuning forks

14.

PIEZOELECTRIC RESONATOR

      
Application Number US2009045083
Publication Number 2009/143492
Status In Force
Filing Date 2009-05-22
Publication Date 2009-11-26
Owner STATEK CORPORATION (USA)
Inventor
  • Fang, Yue
  • Chuang, Shih

Abstract

Embodiments of the present disclosure are directed to a piezoelectric resonator. The resonator can have a base defining at least a first base portion and a second base portion and two or more vibrating arms projecting from the first base portion, the first vibrating arm being substantially parallel to the second vibrating arm. The resonator can define a generally planar first main surface and a generally planar second main surface defined by the base and the first and second vibrating arms wherein the first main surface is generally parallel to the second main surface. At least one groove can be formed in at least one of the first and second main surfaces of each of the first and second vibrating arms. The resonator can further have at least one vibration isolation arm projecting from the base, the vibration isolation arm being approximately perpendicular to the two or more vibrating arms.

IPC Classes  ?

15.

STATEK

      
Application Number 000762567
Status Registered
Filing Date 1998-03-05
Registration Date 1999-11-25
Owner STATEK CORPORATION (USA)
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Electronic devices, namely crystals and oscilators.

16.

STATEK

      
Serial Number 75400066
Status Registered
Filing Date 1997-12-04
Registration Date 1999-05-18
Owner STATEK CORPORATION ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

ELECTRONIC TIMING DEVICES, NAMELY CRYSTALS AND OSCILLATORS

17.

STATEK

      
Serial Number 75400067
Status Registered
Filing Date 1997-12-04
Registration Date 1999-04-27
Owner STATEK CORPORATION ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

ELECTRONIC TIMING DEVICES, NAMELY CRYSTALS AND OSCILLATORS