Data Flow Systems, Inc.

United States of America

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        Patent 10
        Trademark 2
IPC Class
C02F 1/00 - Treatment of water, waste water, or sewage 3
G05D 11/00 - Control of flow ratio 3
G05D 7/00 - Control of flow 3
C02F 3/00 - Biological treatment of water, waste water, or sewage 2
G01F 23/00 - Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm 2
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1.

Fluid flow management through a wastewater level manipulation system and associated methods

      
Application Number 14573952
Grant Number 09556040
Status In Force
Filing Date 2014-12-17
First Publication Date 2015-06-11
Grant Date 2017-01-31
Owner Data Flow Systems, Inc. (USA)
Inventor Smaidris, Thomas F.

Abstract

A system is provided to control fluid flow in a wastewater treatment system through wastewater level manipulation. The wastewater treatment system may include a wastewater treatment plant connected to a plurality of pump stations by a main. Each of the plurality of pump stations may include a wet well with a pump therein. The system may include a central server in communication with a sensor to sense a level of wastewater within the wet well. The pump may be automatically moved to an on position when the level of the wastewater in the wet well is at or above a first level and may be automatically moved to an off position when the level of the wastewater in the respective wet well is at or below a pump cutoff level. The central server may systematically manipulate the first level to selectively set the level of wastewater within the wet well.

IPC Classes  ?

  • G05D 7/06 - Control of flow characterised by the use of electric means
  • C02F 1/00 - Treatment of water, waste water, or sewage
  • C02F 3/00 - Biological treatment of water, waste water, or sewage

2.

Liquid-resistant control systems enclosure

      
Application Number 14340269
Grant Number 09200466
Status In Force
Filing Date 2014-07-24
First Publication Date 2014-11-13
Grant Date 2015-12-01
Owner Data Flow Systems, Inc. (USA)
Inventor Smaidris, Thomas F.

Abstract

A liquid-resistant control systems enclosure may include a shell, a shaft and at least one shell anchoring member. The shell may include a top, a shell wall connected to and extending downwardly from a perimeter of the top, and a sleeve. The shaft may extend upwardly through a surface pad and may be adapted to pass through the sleeve. The sleeve may include a sleeve wall extending downwardly from an inner perimeter of an opening in the top. The sleeve may matingly engage the shaft to move the shell between a raised position and a lowered position. The shell may be moveable between a latched position and an unlatched position. The shell may be adapted to be positioned in the latched position when the shell is in the lowered position.

IPC Classes  ?

  • E04B 1/64 - Insulation or other protectionElements or use of specified material therefor for making damp-proofProtection against corrosion
  • E04B 1/38 - Connections for building structures in general
  • E04B 1/343 - Structures characterised by movable, separable, or collapsible parts, e.g. for transport
  • E04H 9/14 - Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate against other dangerous influences, e.g. tornadoes, floods
  • H05K 5/02 - Casings, cabinets or drawers for electric apparatus Details

3.

Fluid flow management through a wastewater level manipulation system and associated methods

      
Application Number 14063569
Grant Number 08983667
Status In Force
Filing Date 2013-10-25
First Publication Date 2014-02-20
Grant Date 2015-03-17
Owner Data Flow Systems, Inc. (USA)
Inventor Smaidris, Thomas F.

Abstract

A system is provided to control fluid flow in a wastewater treatment system through wastewater level manipulation. The wastewater treatment system may include a wastewater treatment plant connected to a plurality of pump stations by a main. Each of the plurality of pump stations may include a wet well with a pump therein. The system may include a central server in communication with a sensor to sense a level of wastewater within the wet well. The pump may be automatically moved to an on position when the level of the wastewater in the wet well is at or above a first level and may be automatically moved to an off position when the level of the wastewater in the respective wet well is at or below a pump cutoff level. The central server may systematically manipulate the first level to selectively set the level of wastewater within the wet well.

IPC Classes  ?

  • F04F 3/00 - Pumps using negative pressure acting directly on the liquid to be pumped
  • F17D 3/00 - Arrangements for supervising or controlling working operations
  • G05D 11/00 - Control of flow ratio
  • G08B 21/00 - Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
  • G05D 7/00 - Control of flow
  • C02F 1/00 - Treatment of water, waste water, or sewage
  • C02F 3/00 - Biological treatment of water, waste water, or sewage

4.

Wastewater collection flow management system and techniques

      
Application Number 11958430
Grant Number 08594851
Status In Force
Filing Date 2007-12-18
First Publication Date 2013-11-26
Grant Date 2013-11-26
Owner Data Flow Systems, Inc. (USA)
Inventor Smaidris, Thomas F.

Abstract

Reductions in energy consumption and maintenance requirements for operating a wastewater treatment plant are achieved by controlling the operation of pumps at pump stations along a force main in a systematic fashion. The operation of the pumps is controlled to manage the flow of wastewater along the force main to minimize energy consumption, to eliminate sediment, to manage peak pressures encountered by smaller pumps and to avoid septic conditions.

IPC Classes  ?

  • G05D 7/00 - Control of flow
  • E03B 1/00 - Methods or layout of installations for water supply
  • F23N 1/00 - Regulating fuel supply
  • G05D 11/00 - Control of flow ratio
  • G08B 21/10 - Alarms for ensuring the safety of persons responsive to calamitous events, e.g. tornados or earthquakes

5.

Biochar generator and associated methods

      
Application Number 13947221
Grant Number 08772559
Status In Force
Filing Date 2013-07-22
First Publication Date 2013-11-14
Grant Date 2014-07-08
Owner Data Flow Systems, Inc. (USA)
Inventor Smaidris, Thomas F.

Abstract

A biochar generator may include a pyrolysis chamber, a heater connected to the pyrolysis chamber and a biochar collection chamber in communication with the pyrolysis chamber. A biochar collection chamber sensor may sense a composition of the biochar collected in the biochar collection chamber to define a sensed composition of the biochar. A controller in electrical communication with the biochar collection chamber sensor may utilize the sensed composition of the biochar to dynamically alter conditions in the pyrolysis chamber to alter the composition of the biochar.

IPC Classes  ?

  • C07C 1/00 - Preparation of hydrocarbons from one or more compounds, none of them being a hydrocarbon
  • C10B 47/00 - Destructive distillation of solid carbonaceous materials with indirect heating, e.g. by external combustion

6.

Liquid level determination system

      
Application Number 13681750
Grant Number 08521452
Status In Force
Filing Date 2012-11-20
First Publication Date 2013-06-13
Grant Date 2013-08-27
Owner Data Flow Systems, Inc. (USA)
Inventor
  • Smaidris, Thomas F.
  • Boyd, James Marion
  • Manchester, Darrell Lee
  • Valenti, Gregory Louis

Abstract

A liquid level determination system includes pressure determination components that include an interference dampener to mitigate interference originating from a bubbler air compressor. The system may include a pressure pipe with a pressure sensing pipe end located adjacent to the pressure determination components and a bubbler pipe end locatable at least partially in a wet well. The wet well may include a pump that has a volute. The pressure pipe may further include layered pipe sections, and the position of the bubbler pipe end may be calculated so that it is not lower than a level substantially equivalent to a center line through the volute. The bubbler air compressor may provide air pressure to the pressure pipe.

IPC Classes  ?

  • G01F 23/00 - Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm
  • G01F 23/14 - Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm by measurement of pressure

7.

Fluid flow management system and associated methods

      
Application Number 13372778
Grant Number 08600568
Status In Force
Filing Date 2012-02-14
First Publication Date 2012-09-06
Grant Date 2013-12-03
Owner Data Flow Systems, Inc. (USA)
Inventor Smaidris, Thomas F.

Abstract

A system is provided to control fluid flow in a wastewater treatment system. The wastewater treatment system may include a wastewater treatment plant and a main that connects a plurality of pump stations to the wastewater treatment plant. Each of the plurality of pump stations may include a wet well and a pump carried by the wet well to pump the wastewater. The system may include a central server and a sensor in communication with the central server to sense a level of wastewater within the wet well. The pump may be moved to an on position when the level of the wastewater in the wet well is at or above a first level. The level of wastewater within the wet well may be systematically manipulated responsive to the central server to control the fluid flow in the wastewater treatment system. The system advantageously enhances fluid management in a wastewater treatment system, increases life span of the wastewater treatment plant, and saves energy associated with running pumps at the pump stations of the wastewater treatment system.

IPC Classes  ?

  • G05D 7/00 - Control of flow
  • G05D 11/00 - Control of flow ratio
  • G05D 9/00 - Level control, e.g. controlling quantity of material stored in vessel
  • G01F 1/12 - Adjusting, correcting, or compensating means therefor
  • G11C 19/00 - Digital stores in which the information is moved stepwise, e.g. shift registers
  • C02F 1/00 - Treatment of water, waste water, or sewage

8.

Modbus simulation system and associated transfer methods

      
Application Number 13431561
Grant Number 08260872
Status In Force
Filing Date 2012-03-27
First Publication Date 2012-09-04
Grant Date 2012-09-04
Owner Data Flow Systems, Inc. (USA)
Inventor
  • Smaidris, Thomas F.
  • Saunders, R. Brent

Abstract

A data transmission system may include a master node and a slave node. Both the master node and the slave node may comprise modbus simulators. The master node may initialize by receiving register data into its status repository from a status repository on the slave modbus simulator. After initialization, historical events may be transmitted from a historical repository of the slave modbus simulator to a historical repository of the master modbus simulator.

IPC Classes  ?

  • G06F 15/16 - Combinations of two or more digital computers each having at least an arithmetic unit, a program unit and a register, e.g. for a simultaneous processing of several programs
  • G06F 12/00 - Accessing, addressing or allocating within memory systems or architectures

9.

Liquid level determination system and associated methods

      
Application Number 13366712
Grant Number 08340929
Status In Force
Filing Date 2012-02-06
First Publication Date 2012-08-09
Grant Date 2012-12-25
Owner Data Flow Systems, Inc. (USA)
Inventor
  • Smaidris, Thomas F.
  • Boyd, James Marion
  • Manchester, Darrell Lee
  • Valenti, Gregory Louis

Abstract

A liquid level determination system to determine the level of a liquid in a wet we is disclosed. The system may include pressure determination components and a pressure pipe with a pressure sensing pipe end located adjacent to the pressure determination components and a bubbler pipe end locatable at least partially in the wet well. A transducer is used to determine a pressure level within the pressure pipe maintained by a bubbler air compressor. A level detection processor may analyze the pressure level to determine a liquid level in the wet well. An interference dampener is included to mitigate interference originating from the bubbler air compressor. The interference dampener may be provided by transducer plug to restrict air flow. Alternatively, the interference dampener may be provided by a computer operated program to monitor and mitigate the interference.

IPC Classes  ?

  • G01F 23/00 - Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm
  • G01F 23/14 - Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm by measurement of pressure
  • G06F 19/00 - Digital computing or data processing equipment or methods, specially adapted for specific applications (specially adapted for specific functions G06F 17/00;data processing systems or methods specially adapted for administrative, commercial, financial, managerial, supervisory or forecasting purposes G06Q;healthcare informatics G16H)

10.

Valve malfunctioning detection system for a vacuum sewer an associated methods

      
Application Number 12813223
Grant Number 08228190
Status In Force
Filing Date 2010-06-10
First Publication Date 2011-08-25
Grant Date 2012-07-24
Owner Data Flow Systems, Inc. (USA)
Inventor
  • Smaidris, Thomas F.
  • Saunders, R. Brent
  • Gerhardt, Edward C.

Abstract

A valve malfunctioning detection system for use in a vacuum sewer system including a vacuum pit in fluid communication with a vacuum station is provided. The vacuum pit includes a vacuum sewer valve that is moveable between an opened position and a closed position. The valve malfunctioning detection system may include a radio unit adapted to be carried by the vacuum pit, a gateway radio in communication with the radio unit, a hub radio in communication with the gateway radio to receive a signal transmitted by the gateway radio, and a server in communication with the hub radio. The signal transmitted by the radio unit may include an indication of a status of the vacuum sewer valve.

IPC Classes  ?

  • G08B 1/08 - Systems for signalling characterised solely by the form of transmission of the signal using electric transmission

11.

DATA FLOW SYSTEMS

      
Serial Number 77627202
Status Registered
Filing Date 2008-12-05
Registration Date 2010-02-16
Owner Data Flow Systems Inc ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Supervisory control, alarm, and data acquisition (SCADA) telemetry system hardware, software, and instructional manuals that are sold as a unit to water utilities that employ these goods in the monitoring and control of their freshwater, wastewater, and water reuse processing, transportation, and distribution equipment

12.

DFS DATA FLOW SYSTEMS

      
Serial Number 77626494
Status Registered
Filing Date 2008-12-04
Registration Date 2009-06-02
Owner Data Flow Systems, Inc ()
NICE Classes  ? 09 - Scientific and electric apparatus and instruments

Goods & Services

Supervisory control, alarm, and data acquisition (SCADA) telemetry system hardware, software, and instructional manuals that are sold as a unit to water utilities that employ these goods in the monitoring and control of their freshwater, wastewater, and water reuse processing, transportation, and distribution equipment