Patents Assigned to Polytronics Technology Corp.
  • Publication number: 20140209365
    Abstract: An over-current protection device, which can be surface-mounted and stand upright on a circuit board and withstand 60 to 600 volts, comprises a PTC device, first and second electrodes. The PTC device is a laminated structure comprising first and second conductive layers and a PTC material layer. The first and second conductive layers are in physical contact with first and second planar surfaces of the PTC material layer, respectively. The first electrode is disposed on the first conductive layer. The second electrode is disposed on the second conductive layer and is separated from the first electrode. The first electrode, the second electrode and the PTC device commonly form an end surface which is substantially perpendicular to the first and second planar surfaces. The first electrode and the second electrode at the end surface serve as interfaces electrically connecting to the circuit board.
    Type: Application
    Filed: September 4, 2013
    Publication date: July 31, 2014
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Tong Cheng TSAI, Wen Feng LEE, Chun Teng TSENG, Chi Jen SU, Yi An SHA
  • Publication number: 20140118871
    Abstract: A surface mountable over-current protection device having upper and lower surfaces comprises a PTC device, first and second electrodes, and first and second circuits. The PTC device comprises a PTC material layer and first and second conductive layers. The PTC material layer is disposed between the conductive layers and comprises crystalline polymer and conductive filler dispersed therein. The first electrode comprises a pair of first metal foils, whereas the second electrode comprises a pair of second metal foils. The first circuit connects the first electrode and conductive layer, and has a first planar line extending horizontally. The second circuit connects the second electrode and conductive layer, and has a second planar line extending horizontally. At least one of the planar lines has a thermal resistance sufficient to mitigate heat dissipation by which the over-current protection device undergoes a test at 25° C. and 8 amperes can trip within 60 seconds.
    Type: Application
    Filed: May 23, 2013
    Publication date: May 1, 2014
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Chun Teng TSENG, David Shau Chew Wang, Chi Jen Su
  • Patent number: 8687337
    Abstract: An over-current protection device includes a first substrate, a second substrate, a first grating electrode, a second grating electrode and a positive temperature coefficient (PTC) material layer. The first grating electrode and the second grating electrode are formed on the first substrate and are interlaced and spaced on a same plane. The PTC material layer is formed on the first substrate, the first grating electrode and the second grating electrode, and between the first grating electrode and the second grating electrode. In an embodiment, the first grating electrode and the second grating electrode serve as a current input port and a current output port, respectively.
    Type: Grant
    Filed: September 21, 2011
    Date of Patent: April 1, 2014
    Assignee: Polytronics Technology Corp.
    Inventors: Yi An Sha, David Shau Chew Wang
  • Patent number: 8687336
    Abstract: An over-current protection device is disposed on a circuit board and configured to protect a battery. The over-current protection device includes a resistive device, at least one insulation layer and a weld electrode layer. The resistive device exhibits positive temperature coefficient behavior. The insulation layer has a thickness of at least 0.03 mm. The weld electrode layer is configured to weld a strip interconnect member to electrically coupled to the battery, and has a thickness of at least 0.03 mm. The insulation layer and the resistive device are disposed between the weld electrode layer and the circuit board. The circuit board, the resistive device and the weld electrode layer are electrically coupled in series. The association of the resistive device and the weld electrode layer has a thermal mass capable of withstanding welding the strip interconnect member without significant damage to the over-current protection device.
    Type: Grant
    Filed: January 6, 2012
    Date of Patent: April 1, 2014
    Assignee: Polytronics Technology Corp.
    Inventors: David Shau Chew Wang, Fu Hua Chu, Chun Teng Tseng
  • Publication number: 20140063671
    Abstract: A surface-mountable over-current protection device comprises a PTC material layer, first and second conductive layers, first and second electrodes, first and second electrically conductive connecting members. The PTC material layer has a resistivity less than 0.18 ?-cm. The conductive layers are in contact with opposite surfaces of the PTC material layer. The first electrode comprises a pair of first metal foils and is insulated from the second conductive layer. The second electrode comprises a pair of second metal foils and is insulated from the first conductive layer. The first electrically conductive connecting member connects to the first metal foils and conductive layer. The second electrically conductive connecting member connects to the second metal foils and conductive layer. The first electrically conductive connecting member comprises 40%-100% by area of the first lateral surface, and the second electrically conductive connecting member comprises 40%-100% by area of the second lateral surface.
    Type: Application
    Filed: May 23, 2013
    Publication date: March 6, 2014
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Fu Hua CHU, David Shau Chew Wang, Chun Teng Tseng, Yi An Sha
  • Publication number: 20140049357
    Abstract: An over-current protection device comprises a PTC material layer, a first electrode layer and a second electrode layer. The PTC material layer has opposite first and second surfaces and opposite first and second lateral surfaces. The first electrode layer is in physical contact with the first surface of the PTC material layer and extends to the first lateral surface. The second electrode layer is in physical contact with the first surface of the PTC material layer and extends to the second lateral surface. The second electrode layer is insulated from the first electrode layer by a first separation. The first electrode layer and the second electrode layer are substantially laterally symmetrical, and serve as interfaces for current flowing in and out of the device when the over-current protection device is in use.
    Type: Application
    Filed: January 9, 2013
    Publication date: February 20, 2014
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: CHUN TENG TSENG, DAVID SHAU CHEW WANG
  • Patent number: 8652641
    Abstract: A heat conductive dielectric polymer material comprises a polymer, a curing agent and a heat conductive filler. The polymer comprises a thermoplastic and a thermosetting epoxy resin. The thermoplastic comprises 3% to 30% by volume of the heat conductive dielectric polymer material, and the thermosetting epoxy is selected from end-epoxy-function group epoxy resin, side chain epoxy function group epoxy resin, multi-function group epoxy resin or the mixture thereof. The curing agent can cure the thermosetting epoxy resin at a temperature. The heat conductive filler is uniformly distributed in the polymer and comprises 40% to 70% by volume of the heat conductive dielectric polymer material. The heat conductive dielectric polymer material has an interpenetrating network structure, and the heat conductive coefficient is greater than 1.0 W/m-K.
    Type: Grant
    Filed: May 17, 2011
    Date of Patent: February 18, 2014
    Assignee: Polytronics Technology Corp.
    Inventors: David Shau Chew Wang, Yi An Sha, Kuo Hsun Chen
  • Publication number: 20140035718
    Abstract: An over-current protection device is of an approximately quadrilateral structure with upper and lower surfaces, first and second side surfaces, in which the second side surface contains a bevel. The device comprises first and second electrodes, a first PTC material layer, and first and second conductive connecting members. The first electrode is formed on the upper or lower surface. The second electrode is formed on the lower surface and is insulated from the first electrode. The first PTC material layer extends along the upper surface and has a first surface electrically coupled to the first electrode, and a second surface electrically coupled to the second electrode. The first conductive connecting member is formed on the first side surface and is electrically coupled to the first electrode. The second conductive connecting member is formed on the second side surface and extends along the bevel to electrically couple to the second electrode.
    Type: Application
    Filed: April 19, 2013
    Publication date: February 6, 2014
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Chun Teng TSENG, David Shau Chew Wang
  • Publication number: 20140035719
    Abstract: An over-current protection device has a PTC device, first and second electrodes and an insulation layer. The PTC device comprises first and second electrically conductive members and a PTC layer laminated between the first and second electrically conductive members. The first and second electrodes are electrically connected to the first and second electrically conductive members, respectively. The insulation layer is disposed on a surface of the first electrically conductive member. The device is a stack structure extending along a first direction, and comprises at least one hole extending along a second direction substantially perpendicular to the first direction. The value of the covered area of the hole divided by the area of the form factor of the over-current protection device is not less than 2%, and the value of the thickness of the device divided by the number of the PIC devices is less than 0.7 mm.
    Type: Application
    Filed: April 19, 2013
    Publication date: February 6, 2014
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Wen Feng LEE, Kuo Hsun Chen, Chun Teng Tseng, Yi An Sha, Ming Hsun Lu
  • Publication number: 20130328491
    Abstract: An illumination apparatus includes a rectifier, a linear regulator, a lighting unit and a temperature sensing control circuit. The rectifier is connected to an AC supply voltage. The regulator is electrically connected to the rectifier and is adaptive to a first voltage. The lighting apparatus and the regulator form a circuit coupled to the AC power supply. The lighting unit has first and second loads having respective first and second lighting components adaptive to the first voltage. The control circuit can effectively sense the temperature of the regulator and thereby determines whether the first and second load are connected in series or in parallel. If the supply voltage is the first voltage, the first and second load is connected in parallel. If the supply voltage is a second voltage greater than the first voltage, the temperature sensing control circuit switches the first and second load to be connected in series.
    Type: Application
    Filed: April 24, 2013
    Publication date: December 12, 2013
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Tao Hung CHOU, Chun Teng Tseng, Pin Syuan Li
  • Patent number: 8558656
    Abstract: An over-current protection device comprises a resistance material with positive or negative temperature coefficient and an upper surface and a lower surface; a first electrode layer having a first groove, disposed on the upper surface; a first surface mount pad disposed on the upper surface; a second electrode layer disposed on the lower surface, electrically connecting to the first surface mount pad; a second surface mount pad disposed on the lower surface, electrically connecting to the first electrode layer; a second groove electrically separating the first surface mount pad from the first electrode layer; and a third groove electrically separating the second electrode layer from the second surface mount pad. The first groove divides the first electrode layer into two connected regions. The first and second surface mount pads are separated from each other and one end of the first groove connects to the second groove.
    Type: Grant
    Filed: March 18, 2013
    Date of Patent: October 15, 2013
    Assignee: Polytronics Technology Corp.
    Inventors: David Shau Chew Wang, Chun Teng Tseng
  • Publication number: 20130249415
    Abstract: An LED apparatus includes an LED component and a current-limiting device. The LED component includes at least one LED having a corresponding current-limiting resistance value. The current-limiting device includes a plurality of PTC devices connected in series. The plurality of PTC devices are capable of effectively sensing the temperature of the LED and are electrically coupled to the LED component. The resistance value of the current-limiting device increases with the increment of sensed temperature. The current-limiting device has a resistance close to or equal to the current-limiting resistance value at a temperature at which the LED operates normally. When the temperature of the LED gradually increases to an abnormal temperature, current allowable to be flowed through the current-limiting device gradually decreases to be lower than LED operating current.
    Type: Application
    Filed: March 22, 2012
    Publication date: September 26, 2013
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Chun Teng TSENG, David Shau Chew Wang
  • Patent number: 8536973
    Abstract: An over-current protection device includes two metal foils and a PTC material layer. The PTC material layer is laminated between the two metal foils and has a resistivity less than 0.4 ?-cm. The PTC material layer includes crystalline polymer and electrically conductive ceramic filler dispersed in the crystalline polymer. The conductive ceramic filler is of HCP structure and includes 70-95% by weight of the PTC material layer. The trip jump value of the over-current protection device after 300 times trip is less than or equal to 25. The resistance repeatability of the device can be effectively improved by adding the conductive ceramic filler.
    Type: Grant
    Filed: June 25, 2012
    Date of Patent: September 17, 2013
    Assignee: Polytronics Technology Corp.
    Inventors: Kuo Chang Lo, Yao Te Chang, Ya Fang Liang, Yi An Sha, David Shau Chew Wang
  • Patent number: 8525636
    Abstract: A thermistor includes a first electrically conductive member, a second electrically conductive member and a polymer material layer laminated therebetween. The polymer material layer exhibits positive temperature coefficient (PTC) behavior, and includes at least one crystalline polymer and at least one electrically conductive filler distributed in the crystalline polymer. The conductive filler has a resistivity less than 500 ??-cm and includes 72-96% by weight of the polymer material layer. The thermistor has a device effective area, and the value of the hold current at 60° C. divided by the device effective area is around 0.16-0.8 A/mm2. The ratio of the hold current of the thermistor at 60° C. to the hold current at 25° C. of the thermistor is 40-95%.
    Type: Grant
    Filed: April 4, 2012
    Date of Patent: September 3, 2013
    Assignee: Polytronics Technology Corp.
    Inventors: Yi An Sha, Kuo Chang Lo, Tsungmin Su
  • Publication number: 20130215547
    Abstract: An over-current protection device comprises a resistance material with positive or negative temperature coefficient and an upper surface and a lower surface; a first electrode layer having a first groove, disposed on the upper surface; a first surface mount pad disposed on the upper surface; a second electrode layer disposed on the lower surface, electrically connecting to the first surface mount pad; a second surface mount pad disposed on the lower surface, electrically connecting to the first electrode layer; a second groove electrically separating the fist surface mount pad from the first electrode layer; and a third groove electrically separating the second electrode layer from the second surface mount pad. The first groove divides the first electrode layer into two connected regions. The first and second surface mount pads are separated from each other and one end of the first groove connects to the second groove.
    Type: Application
    Filed: March 18, 2013
    Publication date: August 22, 2013
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventor: POLYTRONICS TECHNOLOGY CORP.
  • Publication number: 20130200987
    Abstract: A thermistor includes a resistive device, a first insulation layer, a first electrode, a second electrode and a first heat-conductive layer. The resistive device includes a first electrically conductive member, a second electrically conductive member and a polymeric material layer laminated therebetween. The polymeric material layer exhibits positive temperature coefficient (PTC) or negative temperature coefficient (NTC) behavior. The first insulation layer is disposed on the first electrically conductive member. The first electrode is electrically coupled to the first electrically conductive member, whereas the second electrode is electrically coupled to the second electrically conductive member and is insulated from the first electrode. The first heat-conductive layer is disposed on the first insulation layer, and has a heat conductivity of at least 30 W/m-K and a thickness of 15-250 ?m.
    Type: Application
    Filed: February 3, 2012
    Publication date: August 8, 2013
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Yi An SHA, Chun Teng TSENG, David Shau Chew WANG
  • Publication number: 20130200988
    Abstract: An over-current protection device includes two metal foils and a PTC material layer. The PTC material layer is laminated between the two metal foils and has a resistivity less than 0.4 ?-cm. The PTC material layer includes crystalline polymer and electrically conductive ceramic filler dispersed in the crystalline polymer. The conductive ceramic filler is of HCP structure and includes 70-95% by weight of the PTC material layer. The trip jump value of the over-current protection device after 300 times trip is less than or equal to 25. The resistance repeatability of the device can be effectively improved by adding the conductive ceramic filler.
    Type: Application
    Filed: June 25, 2012
    Publication date: August 8, 2013
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: KUO CHANG LO, YAO TE CHANG, YA FANG LIANG, YI AN SHA, DAVID SHAU CHEW WANG
  • Patent number: 8502638
    Abstract: A thermistor includes a resistive device, a first insulation layer, a first electrode, a second electrode and a first heat-conductive layer. The resistive device includes a first electrically conductive member, a second electrically conductive member and a polymeric material layer laminated therebetween. The polymeric material layer exhibits positive temperature coefficient (PTC) or negative temperature coefficient (NTC) behavior. The first insulation layer is disposed on the first electrically conductive member. The first electrode is electrically coupled to the first electrically conductive member, whereas the second electrode is electrically coupled to the second electrically conductive member and is insulated from the first electrode. The first heat-conductive layer is disposed on the first insulation layer, and has a heat conductivity of at least 30 W/m-K and a thickness of 15-250 ?m.
    Type: Grant
    Filed: February 3, 2012
    Date of Patent: August 6, 2013
    Assignee: Polytronics Technology Corp.
    Inventors: Yi An Sha, Chun Teng Tseng, David Shau Chew Wang
  • Publication number: 20130187748
    Abstract: A surface mountable thermistor comprises a resistive device, first and second electrodes, and at least one heat conductive dielectric layer. The resistive device contains first and second electrically conductive members and a polymeric material layer laminated therebetween. The polymeric material layer exhibits PTC or NTC behavior. The polymeric material layer and the first and second electrically conductive members commonly extend in a first direction. The first electrode is electrically coupled to the first electrically conductive member. The second electrode is electrically coupled to the second electrically conductive member and is insulated from the first electrode. The heat conductivity of the first electrode or the second electrode is at least 50 W/mK. The heat conductive dielectric layer comprises polymeric insulation matrix and heat conductive filler, and is disposed between the first electrode and the second electrode. The heat conductivity of heat conductive dielectric layer is between 1.
    Type: Application
    Filed: September 5, 2012
    Publication date: July 25, 2013
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: Yi An SHA, Chun Teng Tseng, David Shau Chew Wang
  • Publication number: 20130176654
    Abstract: An over-current protection device is disposed on a circuit board and configured to protect a battery. The over-current protection device includes a resistive device, at least one insulation layer and a weld electrode layer. The resistive device exhibits positive temperature coefficient behavior. The insulation layer has a thickness of at least 0.03 mm. The weld electrode layer is configured to weld a strip interconnect member to electrically coupled to the battery, and has a thickness of at least 0.03 mm. The insulation layer and the resistive device are disposed between the weld electrode layer and the circuit board. The circuit board, the resistive device and the weld electrode layer are electrically coupled in series. The association of the resistive device and the weld electrode layer has a thermal mass capable of withstanding welding the strip interconnect member without significant damage to the over-current protection device.
    Type: Application
    Filed: January 6, 2012
    Publication date: July 11, 2013
    Applicant: POLYTRONICS TECHNOLOGY CORP.
    Inventors: David Shau Chew WANG, Fu Hua CHU, Chun Teng TSENG