Earth Fault
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PXI 5A Fault Insertion Switch 10-Channel
40-196-001
The 40-196 is a 10 Channel 5A Fault Insertion Switch, primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers. It is designed to be able to insert different fault conditions between the test fixture and the equipment under test: Open-Circuit, Short-Circuit between signal pairs, Short-Circuit between signal pairs and user applied fault conditions e.g. Power or GND. Shorting relays on each channel enable UUT signals to be subjected to external user applied fault conditions or to be shorted to the adjacent signal in the same channel. Relays in line with the signal allow open circuit conditions to be simulated on either side or both sides of a channel signal pair. The switching topology of the 40-196 allows channels to be interconnected so that complex fault insertion systems can be constructed.
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PXI Fault Insertion Switch, 7-Channel, One Fault Bus, 20 A, Hardware Interlock
40-193A-001-HI
The 40-193A-001-HI is a 7-Channel Fault Insertion switch with hardware interlock and one fault bus, designed for the simulation of fault conditions in automotive systems. The module is capable of switching current up to 20A.
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PXI 10GBase-T1 Ethernet MEMS Fault Insertion Switch, 8 Channel
40-205-008
The 40-205-008 (PXI) is a 8-channel fault insertion switches designed to simulate common faults on high speed two wire communication interfaces such as xBaseT1 Ethernet. They available with 4 or 8 channels of two wire serial connections and can be used for simulating faults on 10BaseT1, 100BaseT1, 1000BaseT1 and 10GBaseT1 Ethernet interfaces. Any wire can be set as open circuit and shorts can be applied across wire pairs. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to supply voltage or ground.
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PXI/PXIe Fault Insertion Switch, 74-Chan 2A, N/C Through Relays, Fault Buses on M & U
40-190C-012
The 40-190C-012 (PXI) and 42-190C-012 (PXIe) are fault insertion switches with 74 channels. They are part of a range of modules available with 74, 64 or 32 channels and are primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers.
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PXI Dual Bus 74-Chan 2A Fault Insertion Switch, N/O Through Relays
40-190B-302
The Dual Bus, 74 Channel PXI Fault Insertion switch is part of our family of 2 Amp fault insertion solutions, The range includes modules with 74, 64 or 32 channels and single or dual fault buses. This version has normally open through relays, so in the default state, there are no paths between inputs and outputs for any signal channel. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers.
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PXI Dual Bus 32-Chan 2A Fault Insert Switch, N/O Through Relays
40-190B-502
The Dual Bus, 32 Channel PXI Fault Insertion switch is part of our family of 2 Amp fault insertion solutions, The range includes modules with 74, 64 or 32 channels and single or dual fault buses. This version has normally open through relays, so in the default state, there are no paths between inputs and outputs for any signal channel.
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PXI Fault Insertion Switch, 7-Channel, Two Fault Buses, 20 A, Hardware Interlock
40-194A-002-HI
The 40-194A-002 is a 7-Channel Fault Insertion switch with hardware interlock and two fault buses, designed for the simulation of fault conditions in automotive systems. As well as high current handling of 20A, very low currents can also be switched.
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Single Bus 75-Channel 2A PCI Fault Insertion Switch
50-190-001
This PCI fault insertion switch range is available with 75, 64 or 36 channels. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers. The Stimulus/Measurement to UUT path is suitable for supporting CAN and FlexRay bus systems.
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48-Ch 2A-250VAC 2-Bus Fault Insertion
YAV90076
48 channels2A 250V 2 Fault Insertion BusesSwitching up to 60CAN Control (or Ethernet with Ethernet to CAN Gateway)Drivers dll & VIs available
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PXI 10GBase-T1 Ethernet MEMS Fault Insertion Switch, 8 Channel
40-205-008
The 40-205-008 (PXI) is an 8-channel fault insertion switch designed to simulate common faults on high speed two wire communication interfaces such as xBaseT1 Ethernet. It is available with 4 or 8 channels of two wire serial connections and can be used for simulating faults on 10BaseT1, 100BaseT1, 1000BaseT1 and 10GBaseT1 Ethernet interfaces. Any wire can be set as open circuit and shorts can be applied across wire pairs. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to supply voltage or ground.
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PXI Fault Insertion Switch, 6-channel, Two Fault Buses, 10 A, Hardware Interlock
40-192A-012-HI
The 40-192A-012-HI is a PXI fault insertion switch with hardware interlock using solid state switching elements and is capable of switching current up to 10A. It is designed to be able to insert three different fault conditions between the test fixture and the equipment under test:
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PXI Single Bus 32-Ch 2A Fault Insertion Switch
40-190B-201
The Single Bus, 32 Channel PXI Fault Insertion switch is part of our family of 2 Amp fault insertion solutions, The range includes modules with 74, 64 or 32 channels and single or dual fault buses. This version has normally closed through relays, so in the default state, there is a path between input and output for all signal channels. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers.
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Dual Bus 36-Channel 2A PCI Fault Insertion Switch
50-190-202
This PCI fault insertion switch range is available with 75, 64 or 36 channels. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers. The Stimulus/Measurement to UUT path is suitable for supporting CAN and FlexRay bus systems.
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PXI Dual Bus 32-Chan 2A Fault Insert Switch
40-190B-202
The Dual Bus, 32 Channel PXI Fault Insertion switch is part of our family of 2 Amp fault insertion solutions, The range includes modules with 74, 64 or 32 channels and single or dual fault buses. This version has normally closed through relays, so in the default state, there is a path between input and output for all signal channels. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers.
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Single Bus 64-Channel 2A PCI Fault Insertion Switch
50-190-101
This PCI fault insertion switch range is available with 75, 64 or 36 channels. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers. The Stimulus/Measurement to UUT path is suitable for supporting CAN and FlexRay bus systems.
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Earth Testers
Kyoritsu Electrical Instruments Works, Ltd.
Earth Ground Testing. Most facilities have grounded electrical systems, so that in the event of a lightning strike or utility overvoltage, current will find a safe path to earth. A ground electrode provides the contact between the electrical system and the earth.
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PXI 5A Fault Insertion Switch 20-Chan 1-Bus
40-198-001
The 40-198 is a 20 Channel Fault Insertion switch, primarily designed for the simulation of fault conditions in automotive/avionics applications involving the reliability testing of safety critical controllers.
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Fault Locating
Schweitzer Engineering Laboratories, Inc.
The built-in fault-locating methods in SEL devices allow you to quickly identify faults, dispatch crews for repairs, and restore service faster. Traveling-wave fault-locating technology calculates the locations of temporary and permanent faults by measuring the arrival times of the naturally occurring traveling waves caused by a transmission line fault. Accurately detecting these waves requires ultra-high-resolution monitoring, and locating is accurate to within one tower span (±300 m). Impedance-based fault-locating technology calculates fault locations by detecting changes in line impedance as a result of a fault. Impedance-based locating is reliable and accurate to about 2 percent of a line’s total length.
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Earth Leakage
Earth leakage is when the current flowing in a system finds an alternative return path other than active and neutral conductors.
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Measuring Earth Resistance
OSP-510
Additional equipment to measure the earth resistance and soil resistivity AD-510.
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Earth Testers
Sanwa Electric Instrument Co., Ltd
Most facilities have grounded electrical systems, so that in the event of a lightning strike or utility overvoltage, current will find a safe path to earth. A ground electrode provides the contact between the electrical system and the earth.
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Generator & Earthing Series
Kvtester Electronics Technology Co.,Ltd
AC Impedance Tester is the newly developed enhanced impedance tester on the basis of improving and perfecting the old model product. The instrument has three new functions: equipped with rotating mouse to achieve easier operation; display and print AC impedance characteristic curves; achieve data download and editing the test report with PC online. This instrument adopts the most advanced high-speed microprocessor with more powerful function and better performance. It is well established for its high reliability, simple operations, high accuracy and lightweight. Currently the instrument is in leading position in china.
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Fault Locator
REZAP FAULTMASTER
REZAP FAULTMASTER is an auto-recloser that keeps customers on supply during intermittent faults.
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PXI/PXIe Fault Insertion Switch, 74-Chan 2A, N/C Through Relays, Fault Buses on M & U
42-190C-012
The 40-190C-012 (PXI) and 42-190C-012 (PXIe) are fault insertion switches with 74 channels. They are part of a range of modules available with 74, 64 or 32 channels and are primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers.
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PXI/PXIe 1000Base-T1 Fault Insertion Switch, 3-Channel
40-203-001
The 40-203-001 (PXI) and 42-203-001 (PXIe) are designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They support 3 channels of two wire serial interfaces. Each channel pair can simulate an open fault in either or both wires, and using the fault bus switches can simulate short between both wires or a short to one of two externally applied fault connections – such as battery supply or ground - via two fault buses.
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Earth Ground Testers
TES Electrical Electronic Corp.
Capable of measuring earth voltage. Data hold function. Auto power off function. The timer operates automatically about 10 minutes with the "test button switch are pressed to keep the tester power on.
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CAN/FlexRay/Differential Bus PCI Fault Insertion Switch - 4 Channel
50-200-004
This PCI Fault Insertion card is designed to simulate common faults on two wire communication interfaces such as CAN Bus. This card supports 4 or 8-channels of two wire serial interfaces. Each channel can simulate an open fault in either or both wires, a short between both wires or a short to one of eight externally applied fault connections, such as a battery connection or ground, via four fault buses.
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Multifunction Earth Tester
MT-200
Multifunction earth tester for measuring earth resistance, protective conductors’ continuity, insulation up to 1000V, with touch-screen display and integrated Wi-Fi
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Ground Earth Resistance Tester
2678X
Shenzhen Chuangxin Instruments Co., Ltd.
Ground Earth Resistance Tester verifies the integrity (continuity) of the protective bonding of the equipment (Class I equipment) designed to secure safety through the basic insulation and protective earthing. It is also called earth (ground) bonding test. If the continuity of the protective bonding is confirmed, we can conclude that the equipment has the requirements for preventing electric shock even if the insulation between the primary circuit and the accessible conductive section fails and a fault current flows through the distribution system.





























