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IXDD404 - IXYS Power
IXDD404 - IXYS Power

... with small internal delays, cross conduction/current shootthrough is virtually eliminated in the IXDD404. Improved speed and drive capabilities are further enhanced by very low, matched rise and fall times. Additionally, each driver in the IXDD404 incorporates a unique ability to disable the output ...
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... If your power supply includes a gate drive supply (VDR, referenced to HV-), as the SMPS600 does, idle dissipation is around 4.5W. When no drive supply is available, another 5W are being dissipated by the onboard regulator. Working out how much average power you need and the required cooling: Music, ...
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FIN1027 / FIN1027A — 3.3V LVDS, 2-Bit, High-Speed, Differential Driver FIN
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... The device operating voltage range is 3.0 V to 3.6 V and it has an internal DC/DC converter that provides 1.8 V to the ARM7 Core. Problem: If during a power-on reset the voltage on Vdd takes longer than 200 ms to ramp from below 0.8 V to above 2.0 V, the chip-internal DC/DC converter might not start ...
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LF412 Low Offset, Low Drift Dual JFET Input Operational Amplifier
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... dress, component placement and supply decoupling in order to ensure stability. For example, resistors from the output to an input should be placed with the body close to the input to minimize ‘‘pick-up’’ and maximize the frequency of the feedback pole by minimizing the capacitance from the input to ...
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... Solutions has under development. Performance is based on engineering tests. Specifications are typical. Mechanical outline has been fixed. Engineering samples and/or test data may be available. M/A-COM Technology Solutions Inc. and its affiliates reserve the right to make Commitment to produce in vo ...
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Immunity-aware programming

When writing firmware for an embedded system, immunity-aware programming refers to programming techniques which improve the tolerance of transient errors in the program counter or other modules of a program that would otherwise lead to failure. Transient errors are typically caused by single event upsets, insufficient power, or by strong electromagnetic signals transmitted by some other ""source"" device.Immunity-aware programming is an example of defensive programming and EMC-aware programming. Although most of these techniques apply to the software in the ""victim"" device to make it more reliable, a few of these techniques apply to software in the ""source"" device to make it emit less unwanted noise.
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