Patents by Inventor Wendell E. Tomimbang

Wendell E. Tomimbang has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20150109077
    Abstract: Electrical fire risks and consumer safety are major concerns driving regulators worldwide to implement more stringent electrical code and enforcement. While there are many commercially available protective devices available, none affords total protection, and they are made and classified only to protect circuits from specific or limited number of faults. This invention is about an apparatus, system and method for protection of electrical circuits and consumers from literally all known electrical faults in Direct Current (DC) and Alternating Current (AC) single and multi-phase systems such as and including Arc Faults, Ground and Leakage Faults, Surge, Overload, Short Circuit, Glowing Connections, Miswired Connections, overvoltage, undervoltage and Phase-Loss. Said apparatus, system and method come in the form of or in a housing as a Circuit Breaker, Receptacle, Convenience Outlet, Attachment Plug, Equipment Controller, a circuit, or a system integrated with another system, device or apparatus.
    Type: Application
    Filed: December 25, 2014
    Publication date: April 23, 2015
    Inventors: WENDELL E. TOMIMBANG, MAYULE TOMIMBANG
  • Patent number: 8995098
    Abstract: Electrical distribution systems, equipment and wiring devices are required to have their wiring connections properly identified to ensure proper operation of connected loads as well as the safety of users, however, errors in installation do occur. Electrical wiring errors are commonly called miswire conditions. The current invention is an integrated system and method of miswire protection and annunciation of system conditions for Arc Fault Circuit Interrupters (AFCIs) and other wiring devices, electrical systems and equipment. Electrical code and regulatory standards require certain wiring devices to include miswire protection with their standard features. These wiring devices, among others include Arc Fault Circuit Interrupters (AFCIs) and Ground Fault Circuit Interrupters (GFCIs) which are required to incorporate protection from miswire conditions with other electrical faults they are designed to protect circuits from, such as and including arc, ground, overload, short circuit, and surge.
    Type: Grant
    Filed: June 20, 2012
    Date of Patent: March 31, 2015
    Assignee: True-Safe Technologies, Inc.
    Inventor: Wendell E. Tomimbang
  • Patent number: 8974239
    Abstract: To prevent electrocution from improper connections through electrical outlets including Arc Fault Circuit Interrupters (commonly known as AFCI's), Ground Fault Circuit Interrupters (commonly known as GFCI's) and power strips, plugs of matching configuration should be used. For purposes of this application, “electrical outlet” or “receptacle outlet” have the same meaning as an “outlet”. When unattended, some children could be electrocuted by inserting metallic objects into electrical outlets. To control these incidents, it becomes necessary to provide outlets with a shutter device incorporated into the housing cover so that only plugs of matching configuration can be used. For purposes of this application, “childproof”, “tamper-proof” or “tamper-resistant” outlets are the same and refer to an outlet provided with a shutter device as the present invention.
    Type: Grant
    Filed: August 30, 2012
    Date of Patent: March 10, 2015
    Inventor: Wendell E. Tomimbang
  • Patent number: 8957748
    Abstract: Traditional contactors utilize a magnetic circuit that requires its coil to be continuously powered up to hold contacts together. They are heavy and bulky with the type, quality and size of materials used to develop sufficient magnetic force to hold contacts together. They are inefficient, costly and are a safety concern due to potential overheating which could result into fire or damage to connected loads. The current invention utilizes a solenoid actuator assembly with locking and unlocking mechanism in place of the yoke and armature assembly used in traditional magnetic contactors. It does not require the coil to be continuously powered up during operation and the contactor could be manually, electronically or electrically controlled thereby avoiding unnecessary power loss. They are very efficient, safe to users and connected loads, and have long service life expectancy. They are also more cost-effective and smaller in size than traditional magnetic contactors.
    Type: Grant
    Filed: November 12, 2012
    Date of Patent: February 17, 2015
    Inventor: Wendell E. Tomimbang
  • Patent number: 8925589
    Abstract: The invention herein presented involves two (2) alternative equipment and methods which could be used independently or together, depending on the application and means available to have them implemented, for plugging or stopping active flow of fluid from a damaged or broken pipeline, said pipeline possibly being located at depths of thousands of feet in ocean water.
    Type: Grant
    Filed: June 24, 2010
    Date of Patent: January 6, 2015
    Inventor: Wendell E. Tomimbang
  • Patent number: 8879218
    Abstract: In all electrical circuits, various arcing conditions can arise, however, the primary ones are series arcing (low current arcing), and, parallel arcing (high current arcing). An arc fault circuit interrupter (“AFCI”) that protects for both series and parallel arcing is called a combination type. An AFCI is a device that controls the effects of electrical arcing by opening a circuit through a tripping mechanism that isolates the load from the supply line upon detection of an arcing condition. In this invention, this arc fault is detected by a circuit employing a Hall-Effect sensor (“HES”) integrated circuit, and a microprocessor among other components.
    Type: Grant
    Filed: December 18, 2009
    Date of Patent: November 4, 2014
    Assignee: True-Safe Technologies, Inc.
    Inventor: Wendell E. Tomimbang
  • Publication number: 20140065862
    Abstract: To prevent electrocution from improper connections through electrical outlets including Arc Fault Circuit Interrupters (commonly known as AFCI's), Ground Fault Circuit Interrupters (commonly known as GFCI's) and power strips, plugs of matching configuration should be used. For purposes of this application, “electrical outlet” or “receptacle outlet” have the same meaning as an “outlet”. When unattended, some children could be electrocuted by inserting metallic objects into electrical outlets. To control these incidents, it becomes necessary to provide outlets with a shutter device incorporated into the housing cover so that only plugs of matching configuration can be used. For purposes of this application, “childproof”, “tamper-proof” or “tamper-resistant” outlets are the same and refer to an outlet provided with a shutter device as the present invention.
    Type: Application
    Filed: August 30, 2012
    Publication date: March 6, 2014
    Inventor: Wendell E. Tomimbang
  • Publication number: 20130188290
    Abstract: Electrical distribution systems, equipment and wiring devices are required to have their wiring connections properly identified to ensure proper operation of connected loads as well as the safety of users, however, errors in installation do occur. Electrical wiring errors are commonly called miswire conditions. The current invention is an integrated system and method of miswire protection and annunciation of system conditions for Arc Fault Circuit Interrupters (AFCIs) and other wiring devices, electrical systems and equipment. Electrical code and regulatory standards require certain wiring devices to include miswire protection with their standard features. These wiring devices, among others include Arc Fault Circuit Interrupters (AFCIs) and Ground Fault Circuit Interrupters (GFCIs) which are required to incorporate protection from miswire conditions with other electrical faults they are designed to protect circuits from, such as and including arc, ground, overload, short circuit, and surge.
    Type: Application
    Filed: June 20, 2012
    Publication date: July 25, 2013
    Inventor: Wendell E. Tomimbang
  • Publication number: 20130063231
    Abstract: Traditional contactors utilize a magnetic circuit that requires its coil to be continuously powered up to hold contacts together. They are heavy and bulky with the type, quality and size of materials used to develop sufficient magnetic force to hold contacts together. They are inefficient, costly and are a safety concern due to potential overheating which could result into fire or damage to connected loads. The current invention utilizes a solenoid actuator assembly with locking and unlocking mechanism in place of the yoke and armature assembly used in traditional magnetic contactors. It does not require the coil to be continuously powered up during operation and the contactor could be manually, electronically or electrically controlled thereby avoiding unnecessary power loss. They are very efficient, safe to users and connected loads, and have long service life expectancy. They are also more cost-effective and smaller in size than traditional magnetic contactors.
    Type: Application
    Filed: November 12, 2012
    Publication date: March 14, 2013
    Inventor: Wendell E. Tomimbang
  • Patent number: 8310322
    Abstract: Electric Solenoid Actuators are used in a wide range of industries that require the combination of electrical, electromagnetic and mechanical apparatus and systems to activate or de-activate a device, automatically, or semi-automatically. Solenoid actuators are used in a variety of applications ranging from valve controls, electrical switch controls or contactors, or other electrical, electronic, hydraulic, pneumatic, mechanical systems and/or combinations thereof. Electric solenoid actuators are preferred from pneumatic and hydraulic actuators for many practical reasons. There are disadvantages with the use of electrical solenoids and this may include the limitation of motion as well as the limited force which is dictated by the strength of the electromagnet developed by the armature.
    Type: Grant
    Filed: April 12, 2010
    Date of Patent: November 13, 2012
    Inventor: Wendell E. Tomimbang
  • Publication number: 20120089266
    Abstract: To prevent property fires, electrical circuits need to be protected from arc faults due to line-to-line, line-to-neutral and line-to-ground conductivity, known as high current parallel arcing, and protected from arc faults occurring along line-to-line, line-to-load, load-to-load, load-to-neutral and neutral-to-neutral conductor configurations, known as low current series arcing. Devices that protect electrical circuits from these arc faults is known as a combination-type arc fault circuit interrupter (AFCI).
    Type: Application
    Filed: October 14, 2011
    Publication date: April 12, 2012
    Inventors: Wendell E. Tomimbang, Randall J. Muravez
  • Publication number: 20110315258
    Abstract: The invention herein presented involves two (2) alternative equipment and methods which could be used independently or together, depending on the application and means available to have them implemented, for plugging or stopping active flow of fluid from a damaged or broken pipeline, said pipeline possibly being located at depths of thousands of feet in ocean water.
    Type: Application
    Filed: June 24, 2010
    Publication date: December 29, 2011
    Inventor: Wendell E. Tomimbang
  • Publication number: 20110148552
    Abstract: Electric Solenoid Actuators are used in a wide range of industries that require the combination of electrical, electromagnetic and mechanical apparatus and systems to activate or de-activate a device, automatically, or semi-automatically. Solenoid actuators are used in a variety of applications ranging from valve controls, electrical switch controls or contactors, or other electrical, electronic, hydraulic, pneumatic, mechanical systems and/or combinations thereof. Electric solenoid actuators are preferred from pneumatic and hydraulic actuators for many practical reasons. There are disadvantages with the use of electrical solenoids and this may include the limitation of motion as well as the limited force which is dictated by the strength of the electromagnet developed by the armature.
    Type: Application
    Filed: April 12, 2010
    Publication date: June 23, 2011
    Inventor: Wendell E. Tomimbang
  • Patent number: 7697248
    Abstract: In all electrical circuits, various arcing conditions can arise, however, there are primary ones are series arcing (low current arcing), and, parallel arcing (high current arcing). An arc fault circuit interrupter (“AFCI”) that protects for both series and parallel arcing is called a combination type. An AFCI is a device that controls the effects of electrical arcing by opening a circuit through a tripping mechanism that isolates the load from the supply line upon detection of an arcing condition. In this invention, this arc fault is detected by a Hall-Effect sensor (“HES”), a HES integrated circuit, and microprocessor. When circuit fluctuation starts, the microprocessor logs this from its first occurrence then compares it to a pre-determined threshold time to determine an arcing condition. Continued fluctuation beyond this threshold time is considered an arcing condition for safety the microprocessor then executes a command to activate the tripping mechanism.
    Type: Grant
    Filed: December 14, 2007
    Date of Patent: April 13, 2010
    Inventor: Wendell E. Tomimbang
  • Publication number: 20090154033
    Abstract: In all electrical circuits, various arcing conditions can arise, however, there are primary ones are series arcing (low current arcing), and, parallel arcing (high current arcing). An arc fault circuit interrupter (“AFCI”) that protects for both series and parallel arcing is called a combination type. An AFCI is a device that controls the effects of electrical arcing by opening a circuit through a tripping mechanism that isolates the load from the supply line upon detection of an arcing condition. In this invention, this arc fault is detected by a Hall-Effect sensor (“HES”), a HES integrated circuit, and microprocessor. When circuit fluctuation starts, the microprocessor logs this from its first occurrence then compares it to a pre-determined threshold time to determine an arcing condition. Continued fluctuation beyond this threshold time is considered an arcing condition for safety the microprocessor then executes a command to activate the tripping mechanism.
    Type: Application
    Filed: December 14, 2007
    Publication date: June 18, 2009
    Inventor: Wendell E. Tomimbang