Industrial Manuals

DELTA Delphi Series Q48DW 45W Quarter Brick Dual Output DC/DC Power Modules: 1.2V/13A 3.3V/8A

The Delphi Series Q48DW is a 48V input, dual output, isolated DC/DC converter with features such as high efficiency, low profile, flexible current allocation on each output, and fixed frequency operation. These converters have outstanding electrical and thermal performance, as well as extremely high reliability under highly stressful operating conditions.

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LINEAR LTC1293/LTC1294/LTC1296 Data Sheet

The LTC1293/4/6 is a family of data acquisition systems which contain a serial I/O successive approximation A/D converter. It uses LTCMOS TM switched capacitor technology to perform either 12-bit unipolar, or 11-bit plus sign bipolar A/D conversions. The input multiplexer can be configured for either single ended or differential inputs (or combinations thereof). An on-chip sample and hold is included for all single ended input channels. When the LTC1293/4/6 is idle it can be powered down in applications where low power consumption is desired. The LTC1296 includes a System Shutdown Output pin which can be used to power down external circuitry, such as signal conditioning circuitry prior to the input mux. The serial I/O is designed to communicate without external hardware to most MPU serial ports and all MPU parallel I/O ports allowing up to eight channels of data to be transmitted over as few as three wires.

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Diotec PT800A ... PT800M Data Sheet

PT800A . PT800M is a single-phase silicon rectifier from ABB with a rated current of 8A and a maximum reverse peak voltage of 50.1000V. It has a plastic case with UL94V-0 certification and weighs approximately 1.8g.

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intersil 82C88 Data Sheet

82C88 is a CMOS bus controller produced by Intersil. It is compatible with Bipolar 8288 and is compatible with 80C86/80C88, 80186/80188, 8086/8088, 8089. 82C88 provides three-state command outputs, has bipolar drive capability, uses scaled SAJI IV CMOS process, single 5V power supply, and low power operation.

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National Semiconductor LM2727/LM2737 N-Channel FET Synchronous Buck Regulator Controller for Low Output Voltages handbook

The LM2727/LM2737 N-Channel FET Synchronous Buck Regulator Controller for Low Output Voltages is a high-performance, synchronous switching regulator controller released by Texas Instruments. It adopts a fixed-frequency, voltage-mode, PWM control architecture and can adjust the switching frequency from 50kHz to 2MHz by adjusting an external resistor. The device uses non-overlapping MOSFET gate drivers and a high-side bootstrap structure to further improve efficiency. The input power is 2.2V to 16V and the output voltage can be adjusted to 0.6V.

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MAXIM MAX6361/MAX6363/MAX6364 handbook

The data sheet describes the features of the MAX6361/MAX6363/MAX6364 power supply monitoring and battery control chips from maxim-ic

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MAXIM MAX4359/MAX4360/MAX4456 handbook

MAX4359/MAX4360/MAX4456 low-cost video cross-point switches are designed to reduce component count, board space, design time, and system cost. Each con- tains a matrix of T-switches that connect any of their four (MAX4359) or eight (MAX4360/MAX4456) video inputs to any of their buffered outputs, in any combination. Each matrix output is buffered by an internal, high-speed (250V/µs), unity-gain amplifier that is capable of driving 400Ω and 20pF at 2.6Vp-p. For applications requiring increased drive capability, buffer the MAX4359/ MAX4360/MAX4456 outputs with the MAX497 quad, gain-of-two video line driver. The MAX4456 has a digitally controlled 8x8 switch matrix and is a low-cost pin-for-pin compatible alternative to the popular MAX456. The MAX4359/MAX4360 are similar to the MAX4456, with the 8x8 switch matrix replaced by a 4x4 (MAX4359) or an 8x4 (MAX4360) switch matrix. Three-state output capability and internal, programmable active loads make it feasible to parallel multiple devices to form larger switch arrays. The inputs and outputs are on opposite sides, and a quiet power supply or digital input line separates each channel, which reduces crosstalk to -70dB at 5MHz. For applications demanding better DC specifications, see the MAX456 8x8 video crosspoint switch.

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MAXIM MAX4249 MAX4257 handbook

MAX4249-MAX4257 are low-noise, low-distortion op-amps that offer Rail-to-Rail® outputs and single-supply operation down to 2.4V. They draw 400µA of quiescent supply current per amplifier while featuring ultra-low distortion (0.0002% THD), as well as low input voltage-noise density (7.9nV/√Hz) and low input current-noise density (0.5fA/√Hz). These features make the devices an ideal choice for portable/battery-powered applications that require low distortion and/or low noise. For additional power conservation, the MAX4249/MAX4251/MAX4253/MAX4256 offer a low-power shut-down mode that reduces supply current to 0.5µA and puts the amplifiers’ outputs into a high-impedance state. The MAX4249-MAX4257’s outputs swing rail-to-rail and their input common-mode voltage range includes ground. The MAX4250–MAX4254 are unity- gain stable with a gain-bandwidth product of 3MHz. The MAX4249/MAX4255/MAX4256/MAX4257 are inter- nally compensated for gains of 10V/V or greater with a gain-bandwidth product of 22MHz. The single MAX4250/MAX4255 are available in space-saving 5-pin SOT23 packages. The MAX4252 is available in an 8-bump chip-scale package (UCSP™) and the MAX4253 is available in a 10-bump UCSP.

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MAXIM MAX3748/MAX3748A handbook

The MAX3748/MAX3748A multirate limiting amplifier functions as a data quantizer for SONET, Fibre Channel, and Gigabit Ethernet optical receivers. The amplifier accepts a wide range of input voltages and provides constant-level current-mode logic (CML) output voltages with controlled edge speeds. A received-signal-strength indicator (RSSI) is available when the MAX3748/MAX3748A is combined with the MAX3744 SFP transimpedance amplifier (TIA).

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MAXIM MAX3080 MAX3089 handbook

MAX3080–MAX3089 is a series of high-speed transceivers for RS-485/RS-422 communication, featuring fail-safe circuitry that guarantees a logic-high receiver output when the receiver inputs are open or shorted.

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MAXIM MAX2360/MAX2362/MAX2364 handbook

The MAX2360 is a dual-band, triple-mode cellular phone transmitter that is the most integrated and architecturally advanced solution to date.

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MAXIM MAX1920/MAX1921 handbook

The MAX1921 evaluation kit provides a fixed 1.8V output voltage from a 2V to 5.5V input source and delivers up to 400mA output current. It is a step-down switching regulator with an internal power switch and synchronous rectifier in a tiny SOT23 package. The MAX1921 EV kit is a fully assembled and tested surface-mount circuit board. It can also be used to evaluate other fixed-output voltage versions of the MAX1921 or the MAX1920, which is a step-down switching regulator with an adjustable output voltage.

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MAXIM MAX1707 handbook

The MAX1707 is a high efficiency, low EMI and low input ripple LED controller that supports a maximum regulated constant current of 610mA for main display backlight, subdisplay backlight (or RGB indicator) and white LED camera flash.

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MAXIM MAX120 MAX122 Data Sheet

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AMD MACH110-12/15/20 Data Sheet

This data sheet provides the features and characteristics of AMD MACH110-12/15/20 high-density EE CMOS programmable logic. This device has approximately three times the logic macrocell capability of the popular PAL22V10 without loss of speed.

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ST M93S66 handbook

This document introduces the features and characteristics of M93S66, M93S56 M93S46 4Kbit, 2Kbit and 1Kbit (16-bit wide) MICROWIRE Serial Access EEPROM with Block Protection

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SGS-THOMSON M87C257 handbook

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SGS-THOMSON M54HC7240/7241/7244 M74HC7240/7241/7244 handbook

M54HC7240/7241/7244 M74HC7240/7241/7244 are high performance CMOS eight-way buffers with strong output drive capability, high noise immunity, symmetric output current, symmetric delays, wide operating voltage range and other features.

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MITSUBISHI M66258FP 8192 x 8-BIT LINE MEMORY Data Sheet

The M66258FP is a high-speed line memory that uses high-performance silicon gate CMOS process technology and adopts the FIFO structure consisting of 8192 words x 8 bits. It can independently and asynchronously perform reading and writing operations at different cycles, making it optimal for buffer memory to be used between equipment of different data processing speeds.

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