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AC / DC converter
AC / DC converter

Test of Particle Sensor (PPD42NS, Shinyei) and
Test of Particle Sensor (PPD42NS, Shinyei) and

... In this document I present, briefly, the integration of two units of a particle sensor (PPD42NS, Shinyei) with Arduino boards and the main conclusions after preliminar tests. Each sensor provides two digital outputs that are indicative of the number of particles larger than 1 µm or 2.5 µm. The infor ...
Tests of STO IF Components S. Weinreb April 15, 2009
Tests of STO IF Components S. Weinreb April 15, 2009

... Test data on SN1 shows noise output power spectrum with input terminated and DC supply at 5.0V (310mA) and 4.0V (300mA). Resolution 1 MHz, total output power of -25.1 dBm, and monitor detector output of -1.83 mV. Expected input signal of -60 dBm/GHz will raise these levels by 20 dB. There are 10+6 d ...
STUSBCD01B
STUSBCD01B

... platforms which do not have this feature integrated in the PHY. The device can work with a supply voltage ranging from 2.2 V to 4.5 V and has an internal regulator which generates the 1.8 V voltage required for the internal blocks and state machine. The STUSBCD01B can detect a dedicated charger or a ...
week 4
week 4

... To find the O/C voltage, we note that i0 = 2 A. Then the dependent source is 10 i0 = 20 V. So Vt = 4 x 2 – 20 = - 12 V When the terminals a-b are S/C, we have KCL 2 = v/4 + (v – 10 i0)/2 and ...
Hardware Implementation of Artificial Neural Networks
Hardware Implementation of Artificial Neural Networks

DEI1166 OCTAL GND/OPEN INPUT, PARALLEL OUTPUT
DEI1166 OCTAL GND/OPEN INPUT, PARALLEL OUTPUT

... 3. Timing measured from VIN=1.5V to VOUT=200mV. See Figure 4. See Figure . The delay is due to both the on chip filter circuits and VDD. 5. Guaranteed by design. 6. Current flowing into device is positive. Current flowing out of device is negative. Voltages are referenced to GND. ...
BMNP20A SRAM Design Report
BMNP20A SRAM Design Report

ELGProject - School of Electrical Engineering and Computer
ELGProject - School of Electrical Engineering and Computer

... 1 Problem Identification and Statement A design tool is required to determine the value of a resistor R in an RLC circuit shown in Figure 2.1 to dissipate the charge on the capacitor to a percentage of its original charge within a dissipation time. The software will allow the user to determine the ...
Datasheet - Mouser Electronics
Datasheet - Mouser Electronics

... Application Notes 1. If the resistors are to dissipate full rated power, it is recommended that the terminations should not be soldered closer than 4mm from the body. 2. Due to operating temperature limits imposed by some PCB materials, derating may be necessary. An estimate of the temperature rise ...
MAX6979 16-Port, 5.5V Constant-Current LED Driver with LED Fault Detection and Watchdog
MAX6979 16-Port, 5.5V Constant-Current LED Driver with LED Fault Detection and Watchdog

... The MAX6979 serial-interfaced LED driver provides 16 open-drain, constant-current-sinking LED driver outputs rated at 5.5V. The MAX6979 operates from a 3V to 5.5V supply. The MAX6979 supply and the LEDs’ supply can power up in any order. The constant-current outputs are programmed together to up to ...
Capacitor Self
Capacitor Self

Ohm`s Law using a PhET Simulation
Ohm`s Law using a PhET Simulation

High Speed Super Low Power SRAM CS18LV20483
High Speed Super Low Power SRAM CS18LV20483

OT 110/120…277/1A4 2DIMLT2 P
OT 110/120…277/1A4 2DIMLT2 P

MOS Transistor Theory
MOS Transistor Theory

132: Front Panel Display
132: Front Panel Display

... The RT-2200 is a receiver/transmitter radio is designed for ground communications. Its primary mode of functioning is to be connected with several other RT-2200's all controlled remotely by a single computer. There are some uses that require the RT-2200 to be controlled locally. This presents a prob ...
Fineline Round Optic Spec
Fineline Round Optic Spec

... © OptoLum Inc. January 2014 - OptoLum reserves the right to change specifications for product improvement without notification ...
Simple Regulated Supply (SRS)
Simple Regulated Supply (SRS)

... unregulated voltage that may even be constantly changing. For example, as a battery is used the voltage across the battery slowly decreases. This is bad for most circuits because fixed voltages are typically needed (such as the 7400 series which needs 5V). So how do we take a supply of electricity t ...
LDA Large Display for Analog Inputs
LDA Large Display for Analog Inputs

...  Programmable user input  Adjustable display intensity  Programming lock-out  New 24 VDC power input  New universal power input (accepts both AC and DC ...
Power Supply Features - Excelsys Technologies
Power Supply Features - Excelsys Technologies

Protection of High-Voltage Power Supplies
Protection of High-Voltage Power Supplies

... Signal Ground Return are internally connected, the Signal Ground Return pin cannot be used as an alternative for the Input Power Ground Return pin. Special circuitry and procedures applicable exclusively to multiple HVPS systems As long as no faults can occur, multiple UltraVolt high-voltage power s ...
Low Voltage Power Distribution LVPD at Balloon-EUSO
Low Voltage Power Distribution LVPD at Balloon-EUSO

DC Network Analyzer
DC Network Analyzer

... The fault impedance diagram can be prepared on per phase basis for symmetrical faults and currents are calculated. The same can be analyzed with dc network analyzer panel. For the unsymmetrical faults, the sequence reactance diagrams are prepared and the positive, negative & zero sequence reactance ...
600 Watt SMB Transient Voltage Suppressor, 100 V, Unidirectional
600 Watt SMB Transient Voltage Suppressor, 100 V, Unidirectional

... condition associated with the inductance of the device and the inductance of the connection method. The capacitive effect is of minor importance in the parallel protection scheme because it only produces a time delay in the transition from the operating voltage to the clamp voltage as shown in Figur ...
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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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