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Open Short
Pinpoint open circuits.
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product
PXI RTD Simulator Module, 24 Channel, PT1000
40-263-003
The 40-263-003 is a 24-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 24 Channel, PT100
40-263-001
The 40-263-001 is a 24-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 20 Channel, PT500
40-263-102
The 40-263-102 is a 20-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 20 Channel, PT1000
40-263-103
The 40-263-103 is a 20-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 4 Channel, PT100
40-263-501
The 40-263-501 is a 4-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 16 Channel, PT500
40-263-202
The 40-263-202 is a 16-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 16 Channel, PT1000
40-263-203
The 40-263-203 is a 16-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 12 Channel, PT500
40-263-302
The 40-263-302 is a 12-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 12 Channel, PT100
40-263-301
The 40-263-301 is a 12-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 16 Channel, PT100
40-263-201
The 40-263-201 is a 16-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 12 Channel, PT1000
40-263-303
The 40-263-303 is a 12-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 4 Channel, PT500
40-263-502
The 40-263-502 is a 4-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 4 Channel, PT1000
40-263-503
The 40-263-503 is a 4-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 8 Channel, PT100
40-263-401
The 40-263-401 is an 8-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 8 Channel, PT500
40-263-402
The 40-263-402 is an 8-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 8 Channel, PT1000
40-263-403
The 40-263-403 is an 8-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 24 Channel, PT500
40-263-002
The 40-263-002 is a 24-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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Circuit Tracer Open/Closed
SureTrace™ 955
Receiver display rotates automatically for easy viewingIdentifies breakers and fuses with CertainCircuit™ detection*Pinpoints open and shorts*Traces wires*0-99 display of signal strength*Audible indication intensifies in tone/pitch with signal strength*Works on energized or de-energized circuits (0-600V AC/DC)*Four sensitivity levels*Peak reading bar graph*2-year warranty
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UTP Cable Tester
21-8574-00
The Lan Cable Tester is consists of unshield RJ45:568A, 568B & USOC. The tester also easy to operate, the user begins testing by connecting. The multiple LEDs showed indication. This Lan Cable Tester is very practical tester can be easily read and correct pin configuration of cable continuity, open, short, miswiring, & no connection.
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Linear Regulated Power Supplies (to 150 watts)
Gold Box "Infinity"
*Highly Configurable, with a seemingly Infinite number of Options*Any slot voltage from 1.5v to 150v is available*Remote Sensing*Open Sense protection*Isolated output*Short circuit and overload protection with enhanced surge capabilities*No minimum load required*Internal EMI Filtering*Pluggable connectors*Can be mounted on two surfaces in any orientation
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PXI/PXIe 1000Base-T1 Dual Multiplexer With Fault Insertion, Dual Channel
40-204-002
The 40-204-002 (PXI) and 42-204-002 (PXIe) are dual channel differential multiplexers designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They are available with support for 1 or 2-channels of two wire serial interfaces. Each channel pair can be looped out to external equipment or the switches can be used simulate a channel open fault. Using the fault bus, switches can simulate a short between both wires or a short to one of two externally applied fault conditions – such as battery supply or ground - via two fault buses.
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PXI/PXIe 1000Base-T1 Dual Multiplexer With Fault Insertion, Single Channel
40-204-001
The 40-204-001(PXI) and 42-204-001 (PXIe) are single channel differential multiplexers designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They are available with support for 1 or 2-channels of two wire serial interfaces. Each channel pair can be looped out to external equipment or the switches can be used simulate a channel open fault. Using the fault bus, switches can simulate a short between both wires or a short to one of two externally applied fault conditions – such as battery supply or ground - via two fault buses.
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Cable Detectors
With certain models of cable detectors you can locate open power cables, either live or dead (without current), with voltages up to 300V. Cable detectors can locate cables, circuits, short circuits and ground points. To perform these functions, it is not necessary to disconnect electrically sensitive devices or to disconnect theCable Detectors to locate open power cables, either live or without current, up to 300V power from the cable which is being tested. Cable detectors can also locate ferrous and non-ferrous metals, wood and plastic with a high level of accuracy.
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50 Channel Linear Vibration Motor Aging Unit
BK2021
The BK2021 50 Channel Linear Vibration Motor Aging Test System was designed to test your linear vibration motors so you know they are working. Load a jig drawer in the jig assembly unit with 10 DUT's. Close the drawer to start testing and begin loading the next of the 5 drawers. When the machine has finished running up to 4 test sequences that you've programmed in, the drawer opens. On the front, a green light tells you the motor is good, a red light tells you there was a short and if there is no light you know there was an open circuit.
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Cable Gauge
CZ20050
Telecommunications, Electrical, Data, and Video installers should all have a TDR in their toolkit. From measuring the length remaining on a drum to knowing exactly where to dig to find that cable fault the Cable Gauge can be invaluable. Opens, Shorts, and length are all measured by the metre letting you know how much you have or where the issue is. Stocktaking of cables is made simple using the Cable Gauge. Using TDR technology, the Cable Gauge diagnoses cable faults with no launch or dead zone at an accuracy of ±2%. Simply select the appropriate cable type from the pre-stored library or enter the cable NVP, attach the leads to two conductors of the cable and with a single press of a button the length of the cable or distance to an open or short is displayed. Voltage on the wires up to 250v is continuously measured by the built in, true RMS voltmeter and is displayed to warn of a potentially unsafe condition.
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1 Mm Calibration Kit
85059B
The Keysight 85059B is a 1.0 mm calibration kit designed for vector network analyzer systems operating over the frequency range of DC to 120 GHz. The opens, shorts and loads in this kit are optimized to provide accurate and traceable calibrations over the specified frequency range. The 85059B with 85059V 1 mm Verification kit are replacements for the 85059A 1 mm calibration/verification kit.
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Solid State Relays with Low ON Resistance
Series CD
The CD series Solid-state Relay utilizes the latest technology to provide a low ON resistance. The control circuit is buffered to enable the relay to be driven directly from standard CMOS or open collector TTL logic circuits. Available options include short circuit protection and current overload protection or a status output line.MSL 1CD relays are controlled by 3.8-6VdcC = Through-hole mount SC = Surface mountAvailable options include:CD00CF 2A, 60Vdc LoadSCD00CF 2A, 60Vdc LoadCD01CF 2A, 60Vdc Load; control statusSCD01CF 2A, 60Vdc Load; control statusCD20CD 1A, 60Vdc Load; short-circuit protectionSCD20CD 1A, 60Vdc Load; short circuit protectionCD21CD 1A, 60Vdc Load; short-circuit protection & control statusSCD21CD 1A, 60Vdc Load; short circuit protection & control status
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Reflectometers
ESP and ESP+
The Eclypse ESP and ESP+ Reflectometers are user friendly, menu driven meters designed to provide the operator with plain language displays describing the type [open or short] and location from the measurement point to the wiring fault. The ESP alphanumeric screen will not only display the status of your meter, but also give you step-by-step instructions to guide you through all operations.
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Solar Cell Simulation
Setfos
Easily calculate the short circuit current, open circuit voltage Voc and fill factor with Setfos. Tweak the layer stack and add light scattering layers for enhanced absorption. Optimize for AM1.5 or specific wavelength bandsElectrical IV curvesCurve fitting & parameter extractionAC simulation and transient experiments like photo-CELIVAdvanced device physics: SRH-recombination, excitons, ... Design anti-reflection coatings or transparent cells
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Software
Interface Analysis
Surface-mount components warp during the reflow process, and the area where they attach also changes shape during assembly. This interface between components is where solder, paste, and gaps created due to thermal expansion combine to create 100% good products, or defects such as Head-in-Pillow, Shorts, and Opens. Fully understanding that critical interface between surfaces is more important than ever.