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Liquid Test Fixture
16452A
The 16452A provides accurate dielectric constant and impedance measurements of liquid materials. The 16452A employs the parallel plate method, which sandwiches the liquid material between two electrodes to form a capacitor. An LCR meter or an impedance analyzer is then used to measure the capacitance created from the fixure.
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Parallel Electrode SMD Test Fixture
16192A
The 16192A test fixture is designed for impedance evaluations of side electrode SMD components. The minimum SMD size that this fixture is adapted to evaluate is 1(L)[mm].
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Component Test Fixture For N1413 With B2980 Series
N1428A
The N1428A is designed to operate specifically with the B2985B / 87B electrometer / high resistance meter. It is provided with two component modules, which are used to hold SMD, lead, and various types of devices. Electrical noise effects are reduced by the employment of a shielded case. A built-in interlock circuit enables safe high-voltage measurements. The N1413A high resistance meter fixture adapter is also required to connect the N1428A to the B2985B / 87B.
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Test Fixture
16047E
Perform impedance evaluation of lead type devices of up to 120 MHz; includes a guard and a shorting plate
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80 DIOs, 8AIs, 8AOs JTAG Boundary Scan Resources Unit Expansion
YAV9JTAH
80 DIOs8 Ais8 AOsCompatible with all JTAG vendors
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Parametric Test Fixture
U2941A
The Keysight U2941A is a parametric test fixture that is designed to complement the usage of U2722A USB source measure unit in the testing of semiconductor components, including SMT and DIP ICs.
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In-Line Test Fixture for 6TL33/6TL36
AB799/AT799
Fixture Kit for Platforms featuring receiver Virginia Panel 9025 and external pusher system. Its heavy duty design supports more than 1.000N.nnThe fixture kit includes the Base fixture (probe plate) as well as the Puhsers plate.
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Test Fixture (SMD Components)
16034E
Perform impedance evaluation on a minimum SMD size of 1.6(L) x 0.8(W) [mm]
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128 DIOs JTAG Boundary Scan Resources Unit
YAV9JTAG
Boundary-scan is a widely practiced test methodology that is reducing costs, speeding development, and improving product quality for electronics manufacturers around the world. By relying on an industry standard, IEEE 1149.1, it is relatively quick, easy, and inexpensive to deploy a highly effective test procedure. In addition, today’s PCBs have little alternative because of limited access to board-level circuitry.
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SMD Array Type LCR Test Fixture
16034H
The 16034H is designed for impedance evaluations of array-type SMD.The minimum SMD size that this fixture is adapted to evaluate is 1.6(L)x0.8(W)[mm]. Since the tip of the measurement electrodes are very thin and the device holder is extremely flat, the device can be shifted and the measurement electrodes can contact each of the elements of the array-type component.
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VITA 62, 3U Test Fixture
TF-3U-7B041-1
This Power Supply test fixture is being proposed as a tool for checking Injector / Ejector operation, proper alignment of the VITA 62 connector and proper alignment of both keys on a Single slot, 3U, VITA 62/SOSA power supply.
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Parallel Electrode SMD Test Fixture, DC To 3 GHz
16196B
The 16196B surface mount devices (SMD) test fixture offers excellent repeatability and usability, with accurate correlation up to 3 GHz. 16196 series fixtures are custom designed to fit specific SMD sizes (see table below), and provide repeatable DUT positioning with reliable contacts to enable stable measurement results, reducing the possibility of operator-induced error. Traditionally, SMD inductor evaluation up to 3 GHz has been difficult to implement. Now with the 16196 series, it’s easy to perform accurate and repeatable measurements.
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In-Circuit Test (ICT) Fixtures
At Forwessun we support and manufacture In-Circuit Test Fixtures for a range of Test Systems. We regularly build fixtures that are supported on a range of systems including - - HP3070- Agilent- Keysight- GenRad- TeradyneWith over 50 years in the industry, we provide a weatlth of knowledge and support to our customers. We are a global company and can support businesses all over the world with the help of over 30 experienced test engineers.
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Magnetic Material Test Fixture
16454A
The 16454A is designed for accurate permeability measurements of toroidal-shaped magnetic materials. Since the construction of this fixture creates one turn around the toroid (with no magnetic flux leakage), the need of winding a wire around the toroid is unnecessary. Complex permeability is calculated from the inductance with and without the toroid. When the E4991A/4291B with option 002 is used as the measurement instrument, direct readouts of complex permeability are possible. In addition, it is furnished with a small and a large fixture to adapt to a wide range of sizes.
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Parallel Electrode SMD Test Fixture, DC To 3 GHz
16196C
The 16196C surface mount devices (SMD) test fixture offers excellent repeatability and usability, with accurate correlation up to 3 GHz. 16196 series fixtures are custom designed to fit specific SMD sizes (see table below), and provide repeatable DUT positioning with reliable contacts to enable stable measurement results - reducing the possibility of operator-induced error. Traditionally, SMD inductor evaluation up to 3 GHz has been difficult to implement - now with the 16196 series, it’s easy to perform accurate and repeatable measurements.
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Parallel Electrode SMD Test Fixture, DC To 3 GHz
16196A
The 16196A surface mount devices (SMD) test fixture offers excellent repeatability and usability, with accurate correlation up to 3 GHz. 16196 series fixtures are custom designed to fit specific SMD sizes (see table below), and provide repeatable DUT positioning with reliable contacts to enable stable measurement results - reducing the possibility of operator-induced error. Traditionally, SMD inductor evaluation up to 3 GHz has been difficult to implement - now with the 16196 series, it’s easy to perform accurate and repeatable measurements.
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Fixture Self-Test Controller and Calibration Check
AQ818
The module AQ818 includes all the electronic blocks required to perform an effective test platform self-test. Thanks to this module, a chain of tests can be performed, which will end up not only with a report of the defective instruments or switch modules, but also with the relay contacts live expectancy report.
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Functional Test Fixtures
Reliable connections to device under test (DUT) test points are essential for robust functional test. Bloomy provides rugged fixtures and cable sets (ITAs) built for thousands and thousands of cycles in manufacturing environments. With the industry’s best mass interconnects and internal electronic keying, our fixtures are easy to change out and are automatically recognized by the test system.
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Fixture Kit 600x455mm RCV 8-slot for 6TL34
AG588
Stopper kit includedYAVCANCON2 for fixture identification not included
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Dielectric Material Test Fixture
16453A
The 16453A is designed for accurate dielectric constant and loss tangent measurements on the E4991A/4291A/B. It employs the parallel plate method, which sandwiches the material between two electrodes to form a capacitor. The E4991A/4291A/B measures the capacitance created from the fixure, and option 002 firmware calculates the relative complex permittivity as described in the 16451B. Adjustment to insure parallel electrodes is required when using the 16451B. This adjustment is not required with the 16453A because the fixure has a flexible electrode that adjusts automatically to the material surface.
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Parallel Electrode SMD Test Fixture, DC To 3 GHz
16196D
The 16196D surface mount devices (SMD) test fixture offers excellent repeatability and usability, with accurate correlation up to 3 GHz. 16196 series fixtures are custom designed to fit specific SMD sizes (see table below), and provide repeatable DUT positioning with reliable contacts to enable stable measurement results – reducing the possibility of operator-induced error. Traditionally, SMD inductor evaluation up to 3 GHz has been difficult to implement – now with the 16196 series, it’s easy to perform accurate and repeatable measurements.
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Test Fixture, Axial And Radial
16047A
The 16047A is designed for impedance evaluation of axial/radial lead type devices of up to 13MHz. The 16047A employs Kelvin contacts which realize a wide impedance measurement range. The contact tip can be changed according to the device shape.
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Bottom Electrode SMD Test Fixture
16198A
Designed for impedance evaluations of bottom electrode SMDs and supports 201 (mm) and 402 (mm) sizes
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Fixtures For Testing
Columbia offers a wide range of different fixtures and test equipment that are possible to modify according to your needs of testing. Our range of different types of test fixtures goes from ICT, RF, General Purpose, CMP to CMK.
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Custom Fixtures
The shock and vibration fixture model BW-SV-3X3X3 is designed to accept up to 24 each of the TO-3 packages on each of the 6 axes and mount to the vibration shaker model BW-100C and Shock Tester model BW-E5000. The fixture is made of white derlin and measures 3”x3”x3”and weighs approximately 13 ounces. The fixture includes a white derlin cube with a 2 ¼” bolt circle and 4 10-32 x 3” cap screws.
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ICT/FCT-Fixtures
We offer a wide range of testing fixtures. In Circuit Test fixtures, Functional Circuit Test fixtures, small and simple fixtures up to large special designed testing solutions.
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Faraday Chamber for RF w/Exchangeable Cassettes 340x350mm RCV 9025 for 6TL36
AN133
The Faraday Chamber is an add-on for the 6TL36 test handler. This kit is installed into the 6TL36 in the same way a normal test fixture would be installed, being the only difference the fact that different products to be tested will, from that moment on, only need an additional exchangeable cassettes to be tested.
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Standard RF Fixture
The standard RF fixture supports both pulsed and non-pulsed operation. It employs SMA input/output connections. For RF output powers over 10W, an N-type connector may be used to replaces the SMA connector because of its power-handling capability.
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Burn-In Test Fixtures
Burn-in generally involves the extended operation of a product in a temperature-controlled environment. With possible humidity and supply voltage margining - the burn-in process can then be extended to include power stress (levels and on/off cycles) tests, high humidity environmental simulation as well as the classic "four corner test" of high voltage + high temperature, high voltage + low temperature, low voltage + high temperature and low voltage + low temperature.





























