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Fiber Optic Power Meters and Fault Locators
Fiber optic communication systems require the right tools to commission new links and to troubleshoot existing links. Fluke Networks has a wide range of Fiber Optic testing products to help certify that power losses are within standards and to troubleshoot broken and high loss links on single mode and multimode fiber. Fluke Network fiber optic tools are designed to be rugged and reliable, and to get the job done.
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Visual Fault Locators
MVFL Series
Shanghai Tarluz Telecom Tech Co., LTD
MVFL series Visual Fault Locators is meet the Class IIIA product, which is the easiest way to identify fibers from end to end and locate polished connector endfaces. Its red laser shines through most yellow-jacketed fibers to help you pinpoint breaks, bends, faulty connectors, splices and other causes of signal loss. The 1mW output power enable the MVFL has a reach of up to 5 km. MVFL seires VFL locates faults visually by creating a bright red glow at the exact location of the fault on single mode (SM) or multimode (MM) fibers. Due to its small size, lightweight and simple but proven design, the MVFL can accompany you anywhere In your pocket or belt pouch in harsh environment
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Visual Fault Locators
*Visual Fault Locator, we can understand its function in the letter. It could be regarded to be part of OTDR and the fiber fault locator is cheap.*Fiber visual fault locator is a kind of device which is able to locate the breakpoint, bending or cracking of the fiber glass. It can also locate the fault of OTDR dead zone and make fiber identification from one end to the other end. Designed with a FC,SC,ST universal adapter, this fiber testing red light is used without any other type of additional adapters, it can locates fault up to 10km in fiber cable, with compact in size, light in weight, red laser output.*Fiber visual fault locators include the pen type, the handheld type and portable visual fiber fault locator. Fiberinthebox also supply a new kind of Fiber laser tester/ optical fiber pen/ fiber laser pen, it can locates fault up to 30km in fiber cable.*Welcome to our store. Contact us at sales@fiberinthebox.com or Live Chat with us. Save your money & time right now! Buy from optical fiber supplies at Fiberinthebox.com with your confidence.
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Visual Fault Locators
Optical Wavelength Laboratories
OWL fiber optic visual fault locators (VFL) are specially designed to couple a maximum of optical energy into multimode and singlemode optical fibers by using a bright red fiber optic laser. Breaks, microbends, and other anomalies in optical fibers and connectors cause the intense bright red laser light to escape, thus revealing the presence of a fault. In addition to visual fault location, OWL VFLs can be used as a visual optical fiber identifier. A visual fiber optic identifier eliminates much of the guesswork during testing by identifying the fiber under test.
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Visual Fault Locators
Visual fault locators are used to identify problems with your fiber. GAOTek visual fault locators typically are applied for fiber tracing, fiber routine, and continuity checking. Imagine being able to easily identify when and where a fiber is breaking, bending, or when there’s a threat to the fiber layer.
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Fiber Optic Instruments
Tempo Communications provides a comprehensive line of fiber optic testing solutions that enable tech... nicians to install, commission, and document P2P and FTTx installations. Accurate troubleshooting is made effortless with the 930XC family of OTDR’s, optical power meters, visual fault locators, and the fiber identifier, while installing fiber has never been easier with the fusion splicer, fiber cleaver, splice on connectors, and fiber hand tools. Elevate your fiber game with Tempo!Show less
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Battery Fault Insertion Unit
The Battery Fault Insertion Unit (FIU) provides intelligent switching of cell-simulation channels for the Battery Simulator 1200. The switching capability enables simulation of open-circuit and short-to-rail fault conditions on any cell channel for the purposes of battery management system (BMS) testing. Additionally, a four-wire auxiliary input allows you to connect an external digital multimeter (DMM) instrument to any cell channel for very high-accuracy bypass current and cell voltage measurements. Each FIU provides 24 independently-programmable cell-switching channels for one or two 12-cell Battery Simulator 1200 units. Additional Battery Simulator 1200 and FIU instruments can extend functionality up to 120 series-connected cell channels.
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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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CAN/FlexRay/Differential Bus PCI Fault Insertion Switch - 8 Channel
50-200-008
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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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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Dual Bus 64-Channel 2A PCI Fault Insertion Switch
50-190-102
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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Dual Bus 75-Channel 2A PCI Fault Insertion Switch
50-190-002
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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Ethernet/AFDX/BroadR-Reach PCI Fault Insertion Switch - 4 Channel
50-201-004
This high bandwidth differential PCI fault insertion card is designed to simulate common faults on high speed two wire communication interfaces such as Ethernet. This card supports 4 or 8-channels of two wire serial connections and can be used for simulating faults on Ethernet, AFDX, Broad R-Reach, 100BaseT and 1000BaseT interfaces. Any wire can be set to an open circuit, shorts can be applied across the wire pair, or to the adjacent pair. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to a supply voltage or ground.
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Ethernet/AFDX/BroadR-Reach PCI Fault Insertion Switch - 8 Channel
50-201-008
This high bandwidth differential PCI fault insertion card is designed to simulate common faults on high speed two wire communication interfaces such as Ethernet. This card supports 4 or 8-channels of two wire serial connections and can be used for simulating faults on Ethernet, AFDX, BroadR-Reach, 100BaseT and 1000BaseT interfaces. Any wire can be set to an open circuit, shorts can be applied across the wire pair, or to the adjacent pair. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to a supply voltage or ground.
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Ethernet/AFDX/BroadR-Reach PXI Fault Insertion Switch - 4 Channel
40-201-004
This high bandwidth differential fault insertion module is designed to simulate common faults on high speed two wire communication interfaces such as Ethernet. This module supports 4 or 8-channels of two wire serial connections and can be used for simulating faults on Ethernet, AFDX, BroadR-Reach, 100BaseT and 1000BaseT interfaces. Any wire can be set to an open circuit, shorts can be applied across the wire pair, or to the adjacent pair. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to a supply voltage or ground. Each fault bus is capable of carrying 2A allowing multiple channels to be connected to the same fault condition. Additionally, each fault bus features a changeover relay to allow the user to connect alternative fault conditions to the fault buses.
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Ethernet/AFDX/BroadR-Reach PXI Fault Insertion Switch - 8 Channel
40-201-008
This high bandwidth differential PXI fault insertion module is designed to simulate common faults on high speed two wire communication interfaces such as Ethernet. This module supports 4 or 8-channels of two wire serial connections and can be used for simulating faults on Ethernet, AFDX, BroadR-Reach, 100BaseT and 1000BaseT interfaces. Any wire can be set to an open circuit, shorts can be applied across the wire pair, or to the adjacent pair. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to a supply voltage or ground. Each fault bus is capable of carrying 2A allowing multiple channels to be connected to the same fault condition. Additionally, each fault bus features a changeover relay to allow the user to connect alternative fault conditions to the fault buses.
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PXI 10A Fault Insertion Switch 10-Chan 1-Bus
40-199-001
The 40-199 is a 10 Channel Fault Insertion switch designed for the simulation of fault conditions in automotive/avionics applications, involving the reliability testing of safety critical controllers.
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PXI 10A Fault Insertion Switch 10-Chan 2-Bus
40-199-002
The 40-199 is a 10 Channel Fault Insertion switch designed for the simulation of fault conditions in automotive/avionics applications, involving the reliability testing of safety critical controllers.
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PXI 11-Channel 2A Fault Insert Switch
40-202-101
This is the 11 Channel version of the 40-202 Fault Insertion Switch. It is 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 three different fault conditions between the test fixture and the equipment under test
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PXI 16-Channel 4-Bus 2A Fault Insertion Switch
40-197A-002
This 16-channel fault insertion switch is primarily intended for routing simulated fault conditions in automotive and aerospace applications involving the reliability testing of safety critical controllers.
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PXI 22-Channel 2A Fault Insert Switches
40-202-001
This is the 22 Channel version of the 40-202 Fault Insertion Switch. It is 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 three different fault conditions between the test fixture and the equipment under test.
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PXI-2510, 68-Channel, 2 A PXI Signal Insertion Switch Module
778572-10
68-Channel, 2 A PXI Signal Insertion Switch Module—The PXI‑2510 fault insertion unit (FIU) is designed for hardware‑in‑the‑loop (HIL) applications and electronic reliability tests. Each module has a set of feedthrough channels that you can open or short to one or more fault buses. You can use this architecture to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXI‑2510 is ideal for validating the integrity of control systems including engine control units (ECUs) and full authority digital engine controls
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PXI 34-Channel 4-Bus 2A Fault Insertion Switch
40-197A-001
This 34-channel fault insertion switch is primarily intended for routing simulated fault conditions in automotive and aerospace applications involving the reliability testing of safety critical controllers. A low cost 16-channel option is also available.
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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 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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PXI 5A Fault Insertion Switch 20-Chan 2-Bus
40-198-002
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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PXI 5A Fault Insertion Switch 5-Channel
40-196-101
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 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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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 Dual Bus 64-Chan 2A Fault Insertion Switch
40-190B-102
The Dual Bus, 64 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.