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Burn-In
The application of current, typically at high temperatures, over periods of time to detect infant mortality.
See Also: Burn-In Boards, High Power Burn-in, Burn-In Sockets, PCB Inspection
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Burn-in Systems
Incal Offers A Line Of State-Of-The-Art Burn-In Testing Hardware And Software For Retrofit And/Or Total, Customized Burn-In System Configurations.
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Burn-in System
Sonoma
High power burn-in system with advanced testing functionality at DUT level for substantially lower cost and high performance using State-of-the-Art technology
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Burn-In Boards
Meets burn-in requirements, including extreme temperatures or continual handling. 2 or more layers of polyimide. 200 C maximum temperature. Gold-plated connectors.
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Burn-In Test Sockets
The selection of the test socket is critical to the performance of a device during qualification testing where electrical bias and signals are applied. Key factors such as mechanical compatibility, operating temperature, ability to withstand high moisture levels, signal speed and lead inductance/capacitance all need to be taken into account when selecting the best socket for the test application.
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LED Burn-In Test
Burn-in system, based on LXI instrumentation, for concurrent testing of up to 80 DUTs in a climatic chamber. Devices to be tested include modern light emitting diodes and LED modules.The system consists of 2 control cabinets, each with 40 independent supply and measurement channels. Each channel can be configured individually via the operator software (current or voltage, including the relevant limit values). The software supports logging of current and voltage values for each DUT on all 80 channels with a sampling rate of <1s. Additionally, the software and system also support digital I/O channels, e. g. for controlling the climatic chamber. Inputs for connecting temperature sensors are also provided.
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Photodiode Burn-in Reliability Test System
58606
The Chroma 58606 PD/APD Burn-in system is a high density, multifunction and temperature controlled module based system for photo diode burn-in and lifetime test. Each module has up to 256 Source Measurement Unit channels which can source current and measure voltage in various scenarios such as one described below. The system can accommodate 7 modules for a total of 1,792 device channels.
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Memory Burn-In Tester
H5620/H5620ES
As Server and Mobile applications have mainly led the Memory and market has also entered a super cycle that has completely withdrawn from the previous silicon cycle.Memory capacitance will continue to rise as the application of data processing and mobile communication occurs—however, revenue will not grow as ASP goes down. Suppliers need to reduce test costs and increase profits.H5620 contributes to reduction of test cost by integrating the test process of DRAM Burn-in and Core Test. This hybrid memory test solution solves the challenge of reducing test costs while increasing test efficiency in the expanding DRAM market.
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Production Wafer Level Burn-in
TV19 VersaTile™ probe cards are designed with Celadon’s patented ceramic technology for superior electrical performance, yet is highly modular due to it’s 28mm x 28mm chassis. Micro-adjustments can be made in seconds with an allen wrench and a microscope. Easily align VersaTile cards for different wafer layouts using a 4.5” compatible 1×3 , 200mm, or 300mm VersAdjust plate.
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Burn-in Board Continuity Tester
CT-1
Burn-in Board Coninuity Tester. Verifies burn-in board continuity and component tolerances. 768 I/O channels, can be forced to the constant current source or grounded independently. Highly accurate measurement of resistance, voltage, and capacitance using a pair of precision instrumentation amplifiers.
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Burn-In System
The COBIS-II Series Burn-in System is designed to test the latest high frequency integrated circuits (ICs) and combines a large capacity oven with well proven Accutron FlexBID™ dynamic driver technology. This system is engineered for productive dynamic device testing and reliable monitoring.
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Burn-In Boards
Manufacture of burn-in boards since 1976. Established for more than 40 years in the market, Trio-Tech is recognized and is an approved global supplier to all major semiconductor companies. Trio-Tech has the capability to design and manufacture boards for all system types, with solutions available for many test conditions, Including HTOL, PTC, HAST and 85/85.
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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.
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Memory Burn-in Tester
B6700 Series
B6700 can test as many as 48 burn-in boards in parallel at speeds up to 10 MHz, which helps memory suppliers get their newest products to market faster while also reducing testing costs. An original high performance chamber improves yield by assuring high temperature accuracy while generating high temperature. It also shortens the temperature rise and fall time which leads to shortening the test time.
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Polarity & Burn in Test Systems
Our polarity and burn-in test systems are available for components such as multilayer, disc type or hollow ceramics.
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Multi-Wafer Test & Burn-in System
FOX-XP
The key features of the new FOX-XP test cell that contribute to the cost-effectiveness of the solution include the ability to provide up to 2,048 "Universal Channels" per wafer, which allows the system to test all the devices on the wafer in parallel. The new "Universal Channel" architecture allows any channel to be any function (I/O, Device Power Supply (DPS) or Per-pin Precision Measurement Unit (PPMU)). This enhanced architecture now allows customers to perform per pin parametric testing, more extensive digital pattern test with deeper data stimulus / capture memory (32M per pin), and deeper scan (768M) optimized for BIST/DFT testing.
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Power Tube Burn-in Station
Maxi-Burn
The MaxiBurn Tube Preheater is a 2U rack mountable or bench top unit for heating 30 Octal Base Tubes. Designed for continuous use heating standard power pentodes to normalize their characteristics before testing or matching the MaxiBurn powers the tube filaments and drives a nominal plate current through each tube. Normal function of each tube is indicated by a glowing LED associated with the tube.
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Burn-In Systems
OPTIMUM Series
Advanced Microtechnology, Inc.
The OPTIMUM product line of burn-in systems has a model to meet your individual testing requirements. Please select one of the models below for more specific information
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Memory Burn-In Test
The N3500 is Neosem Technology’s fourth generation memory test system. Specifically designed for Flash Components and Flash Cards, the N3500 tester-on-a-board architecture targets the broadest range of DUT technologies in various form factors and packages. Each Tester Board (or “Blade”) contains 288 I/O pins and 32 DPS supplies.
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Burn-In Board Tester
Focus-275
Focus275 is a tester for burn-in board.It can improve reliability of burn-in board by inspecting boards for burn-in test by Focus275 regularlyBoth short open test and component test can be done by sending electric signals for special socket contactor and edge part.
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Laser Diode Burn-in Reliability Test System
58604
The Chroma 58604 is a high density, multi-function, and temperature controlled module for laser diode burn-in and lifetime tests. Each module has up to 256 SMU channels which can source current and measure voltage in various control modes as described below.
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Low Voltage Burn-in and Test System
Max 450
For burning-in and testing DUTs such as microprocessors, DSPs and logic devices, which require low voltage. Output monitoring gives functional test results for every device during burn-in
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RF Bias Burn-In System
These systems deliver an unbeatable combination of advantages over a wide range of RF frequencies and power levels. The Automated Multi-Channel RF-Biased Burn-In Test System is a turnkey system that incorporates all of the capability needed for accelerated aging and parametric testing of RF semiconductor devices. Its powerful software elegantly supports data acquisition, storage, and presentation. Accel RF’s customers choose system features to meet their technical needs and capital budget. In addition to cost savings, use of Accel-RF’s solutions accelerate product time-to-market, saving many months of product development.
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Multiple Channel Burn In Power Supply
MCPS
The most important features of this burn in power supply is its ability to hold a constant output for each channel even in the event that a unit under test on one channel may short and fail. Since each channel has it''s own transformer, no glitches or voltage spikes can get into any of the other channels. This image shows the results as the second channel from the left is shorted with a small wire and the circuit breaker pops out. Used for burn-in testing and other timed testing where power isolation is required. Very basic simple circuit, see schematic below. Cleans and frees up benchtops, burn in racks and work space clutter. Available in benchtop or rackmount.
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Laser Diode Burn-In Testing
Laser reliability testing consists of a series of tests that laser diodes can be put under in order to ensure their reliability for post-production use. There are different types of tests that can be carried out and there are multiple measurements that can be taken in order to evaluate the reliability of the device. One of these tests is laser diode burn-in.
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DC Power Supplies
XFR Series
AMETEK Programmable Power, Inc.
XFR is the smart choice for research, product development and production test applications such as R&D, magnet control, product design, ATE, process control, electroplating and burn-in. The unique features of XFR make it the best choice for applications where high power and a wide adjustment of output voltage or current are required in a full 19-inch rack package. Choose from ten 2800-watt models.
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High Power Burn-In Test
Easily test the reliability of your high power laser devices with the Y2000H burn-in and life-test system. It will quickly identify defective laser devices so you can prevent them reaching your customers. Y2000H's full automation and expandable capacity helps you work through your tests more productively. And its user-friendly software makes testing your devices easier than ever.
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Industrial Automation Solutions
LXinstruments FCT systems for industrial electronics assemblies are particularly suited for applications with a large variant diversity for medium volume sizes. They are used for testing utility electronics as well as for drive control and grid management systems. We have also implemented systems for functional test, repair and calibration of decentralized PLC I/O assemblies.Since early failures in the field often lead to enormous costs, we not only provide functional test systems, but also burn-in systems for simultaneous testing of many assemblies in a climate chamber. Due to the modular structure of our software, it is possible to establish a logical separation between the definition of the climatic profile to be executed and the actual test sequence, during which the different electrical tests are processed. Connections to HALT/HASS systems can also be established without problems.