Insertion Loss & Return Loss
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Fluid Loss
Fluid Loss testers were designed to be as easy to use as possible, with clear and intuitive controls. Once the cement slurry or mud is placed into the test cell, a programmable temperature controller increases the temperature at the desired rate.
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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/PXIe 1000Base-T1 Fault Insertion Switch, 6-Channel
40-203-002
The 40-203-002 (PXI) and 42-203-002 (PXIe) are designed to simulate common faults on high-speed two wire communication interfaces such as 1000Base-T1. They support 6 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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Single Bus 36-Channel 2A PCI Fault Insertion Switch
50-190-201
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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Return Loss, Impedance & Balance Measurement Accessory
Model SLM620-1
For Loss- Frequency Range : 300Hz to 620KHz.- Impedance : 60 to 1000 ohms (40dB maximum).- Accuracy : ±1dB (upto 300KHz) ±2dB (300KHz to 620KHz).For Impedance- Frequency Range : 300Hz to 620KHz.- Impedance : 60 to 3000 ohms.- Accuracy : ±10% (upto 300KHz) ±20% (300KHz to 620KHz).
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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 Fault Insertion Switch, 7-Channel, Two Fault Buses, 20 A, Hardware Interlock
40-193A-002-HI
The 40-193A-002-HI is a 7-Channel Fault Insertion switch with hardware interlock and two fault buses, designed for the simulation of fault conditions in automotive systems. The module is capable of switching current up to 20A.
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Simple Loss Test Kit
KI-TK054
660/650 nm source & power meter. Interchangeable HFBR connectors
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Core Loss Tester
VCL
Core loss testing has become one of the most important tests for quality assurance in the motor industry. The function of a core loss test is to determine weather a motor has damaged core iron. Damage could include shorts between laminations and electrical arching. Although it is possible for a motor to still run with damaged core but the efficiency of that motor will be greatly reduced. The Motor will consume more power to operate at normal levels and it will cause the Motor to generate more heat. Heat will reduce the reliability of the motor and its overall life. VEER make Core Loss Tester is portable & easy to use instrument which is very useful to measure AC magnetic properties of Electrical steel of core of different grade and size. We provide Free Computer software along with instrument to create test report in computer.
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Iron Core Loss Tester
Chongqing TOP Oil Purifier Co., LTD
Iron Core Loss Tester by Chongqing TOP
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Micro Coax/Micro Power, Module Insert, Receiver, I2 MX, 15 Position
510143009
Micro Coax/Micro Power, Module Insert, Receiver, i2 MX, 15 Position
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Micro Power Insert, Receiver, SIM, 2 Position, 2 Slot
510180102
This insert contains 2 micropower contacts and is part of the Infinity Connector system. It is used in the 90 Series SIM Module and occupies 2 of the 34 slots in this module. This insert comes loaded with contacts. Individual contacts sold separately p/n 610142106.
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Loss Test Set
HPT-5100
The HPT-5100 represents a significant improvement in technology at a competitive price. This high performance loss test set has advanced features commonly found in instruments costing far more.
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PXIe 10GBase-T1 Ethernet MEMS Fault Insertion Switch, 8 Channel
42-205-008
42-205-008 (PXIe) 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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Loss Test Set
Combines functionality in a compact test kit designed for performing length, loss (Tier 1) testing and inspection capability on both multimode and single-mode fibers.
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Bench-top Insertion & Return Loss Test Station
STC-IRL3201
Shanghai Stone Communication tech Co., Ltd
STC-IRL3201 is a high performance loss test station that is designed specially for Optical Passive Components production Test and Lab Test. It combines three different working modes as a return loss meter, optical power and loss meter and a stable laser source in one test station.
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Fiber Loss Meter
Testing for loss (also called "insertion loss") requires measuring the optical power lost in a cable (including fiber attenuation, connector loss and splice loss) with a fiber optic light source and power meter (LSPM) or optical loss test set (OLTS.)
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Inversion Loss
DSP-1L
Is used to protect your three-phase motors against loss, imbalance or inversion. It continuously monitors each phase of your power supply. In case of phase loss, imbalance or inversion, the DSP-1L cuts off the power to the control circuit and thus protects the motor concerned.
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Low Loss Test Cables
SF Series
SuperFlexLow Loss Test Cables are very flexible, low loss and DC-26.5 GHz
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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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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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Optical Loss Test Set
KI23424OL-INGAAS-APC
A Quad Two-Way Optical Loss Test set / OLTS fiber tester that's perfect for medium to ultra high fiber count loss, length & optical return loss testing applications on both multimode and single mode fiber with APC connectors on both ports at 850 / 1330nm 1310/1550 nm. A pair of these compact SM & MM instruments set new standards of productivity, ultra-stable source accuracy and ease of use.
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VTAC Insert, Receiver/ITA, SIM (Only Available In Patchcords)
610151101
VTAC Insert, Receiver/ITA, SIM (Only Available in Patchcords)
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PIM & Return Loss Measurement
Range to Fault (RTF)
Range To Fault (RTF) is an exciting new technology from Kaelus that enables operators to accurately measure the location of PIM and Return Loss faults in their RF infrastructure. Reflection data together with PIM data provides an unmatched level of clarity for identifying the location of faults in the RF path.
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VTAC, Insert, Receiver/ITA, SIM, Right Angle, 8 Pos, 1 Slot
610151104
This insert contains 8 right-angle VTAC high speed contacts and is designed to mount directly to a PCB as part of the Infinity Connector system. It is used in the 90 Series SIM Module and occupies 1 of the 34 slots in this module. Available in a set with VTAC pass-thru insert as 610151106. Use the video link on this page for help installing this insert on a PCB.
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Loss Tangent M in Dielectric Oil
TAND220A
The measuring instrument type TAND220A complies with the international standard IEC 61620. The instrument is based on the so-called "low-amplitude, low-frequency alternating current square wave method" and allows accurate measurements of conductivity and relative permittivity. Conductivity measurement in the range of 0.01 pS/m to 20,000 pS/m allows the use of this instrument for quality control of high resistivity liquids even at room temperature. The TAND220A works with a low test voltage and also with a low test current so that it does not represent a danger for the operators.
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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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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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Optical Loss Testing
Is to inject a known level of light in one end and measure the level of light at the other end, using an OLTS. The difference between source and receive power levels is the loss.





























