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Nonvolatile, I C -Compatible 64-Position, Digital Potentiometer
Nonvolatile, I C -Compatible 64-Position, Digital Potentiometer

... packaged solution for 64-position adjustment applications. These devices perform the same electronic adjustment function as mechanical potentiometers1 or variable resistors, but with enhanced resolution and solid-state reliability. The wiper settings are controllable through an I2C-compatible digita ...
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... 10.1.4 Design Abstraction and Computer Aids • The design of very complex digital systems, whether on a single IC chip or using off-the-shelf components, is made possible by the use of different levels of design abstraction, and the use of a variety of computer aids. • The designer does not need to ...
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... The total modulation current injected to the VCSEL at ...
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... The MAX3311/MAX3313 receiver converts RS-232 signals to CMOS-logic output levels. The MAX3311 receiver will remain active during shutdown mode. The MAX3313 INVALID indicates when an RS-232 signal is present at the receiver input, and therefore when the port is in use. The MAX3313 INVALID output is p ...
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... the ‘band of interest’. Higher order modulators are prone to instability, however. Therefore, a balance must be obtained between the order of the modulator and the stability. In low bandwidth  ADCs, a second- or third-order modulator is normally used, so the devices are not prone to instability. ...
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... Basic supply protection circuit A cost-effective supply voltage protection has been implemented, while reverse-polarity protection has not. Supply overvoltage protection is provided by the TR1 diode. It works as a primary overvoltage clamp to limit supply line distortions - like surge pulses or osci ...
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... the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters ...
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... ∙ Near real-time - Updates once every five to fifteen minutes or more frequently as required by operator or computer system (e.g. DMS or EMS), with provision for on-demand update. ...


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... Voltage Profile established by ERCOT. Generation Resources shall comply with the following Reactive Power Capability Requirements: an over-excited (lagging) power factor capability of 0.95 or less and an under-excited (leading) power factor capability of 0.95 or less, both determined at the generati ...
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... simplifies the transmitter system by eliminating the intermediate frequency stage. It also offers the opportunity to address the extensive range of cellular bands with the same architecture and building blocks. Direct synthesis of carriers in the 5 to 6GHz unlicenced bands remains a challenge for RF ...
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... PROCEDURE : Caution: High voltages are present in this Laboratory Experiment! Do not make any connections with the power on! The power should be turned off after completing each individual measurement! FINDING THE NEUTRAL ...
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... undesirable high switching frequency for high- and medium- voltage stages despite the fact that the inverter’s dc sources voltages are selected to maximize the number of levels by state redundancy elimination. ...
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... or ice cube temp that is too cold (lower than -5 degrees). In some areas, there are water issues that can also cause shattered cubes. The temp in the freezer should not have any effect on this issue, as long as it’s below 1.5 degrees F, as a properly installed sensor will not read the freezer temp, ...
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< 1 ... 701 702 703 704 705 706 707 708 709 ... 1306 >

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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