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Draft2 - Baartman`s computer at TRIUMF
Draft2 - Baartman`s computer at TRIUMF

... required to compress the seal, so very light non-magnetic SS hardware is used. The water cooling of the emittance head is achieved through 2 parallel water line of 0.25 inch diameter. The parallel water lines have different lengths, so the flow percentage is slightly higher on the upper branch which ...
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... colouration. In 4-pole mode, you have the "fat" sound of a 24 dB/oct filter slope, while the 2-pole mode gives a less dramatic, more electronic sound. Also, while the signal output levels in the two filter modes are equal at low resonance settings, there will be a noticeable difference in output lev ...
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... The full H-bridge output stages use NMOS transistors only. They therefore require bootstrap capacitors for the high side of each output to turn on correctly. At least 220nF ceramic capacitor, rated for at least 25V, must be connected from each output to its corresponding bootstrap input. Specificall ...
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... The CM-35XT is specially designed to simplify installation, calibration and scaling. It is one of the CM-Series family of meters. Deriving their operating power from the current loop, these meters require no external power supply. The CM-35XT is a functional replacement for the now obsoleted CM-35X ...
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... pump circuitry that generates the +/-10V RS-232 voltage levels using 0.1µF charge pump capacitors. The SP211EH and SP213EH devices feature a low-power shutdown mode, which reduces power supply drain to 1µA. Enhancements to this series include a higher transmission rate of 500kbps, a lower power supp ...
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... In the Active mode of operation, the DS2786 continually measures the current flow into and out of the battery by measuring the voltage drop across a low-value current-sense resistor, RSNS, connected between the SNS and VSS pins. The voltage sense range between SNS and VSS is ±51.2mV. Note that posit ...
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Buck converter



A buck converter is a voltage step down and current step up converter.The simplest way to reduce the voltage of a DC supply is to use a linear regulator (such as a 7805), but linear regulators waste energy as they operate by dissipating excess power as heat. Buck converters, on the other hand, can be remarkably efficient (95% or higher for integrated circuits), making them useful for tasks such as converting the main voltage in a computer (12V in a desktop, 12-24V in a laptop) down to the 0.8-1.8V needed by the processor.
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