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    Teledyne e2v TS86101G2BVGL

    MUX DAC 255-Pin CBGA - Trays (Alt: TS86101G2BVGL)
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    Teledyne e2v TS86101G2BCGL

    MUX DAC 255-Pin CBGA - Trays (Alt: TS86101G2BCGL)
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    TS86101G2 Datasheets (7)

    Part ECAD Model Manufacturer Description Curated Type PDF
    TS86101G2 Atmel MUXDAC 10-bit 1.2 Gsps Converter Demonstrator Original PDF
    TS86101G2 Atmel 4:1 10 Bit 1.2 Gsps MUX-DAC Original PDF
    TS86101G2B Atmel 4:1 10-bit 1.2 Gsps MUX-DAC Original PDF
    TS86101G2BC Atmel 4:1 10-bit 1.2 Gsps MUX-DAC. Original PDF
    TS86101G2BCGL Atmel 4:1 10-bit 1.2 Gsps MUXDAC. Original PDF
    TS86101G2BV Atmel 4:1 10-bit 1.2 Gsps MUX-DAC. Original PDF
    TS86101G2BVGL Atmel 4:1 10-bit 1.2 Gsps MUXDAC. Original PDF

    TS86101G2 Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    CI-CGA-255

    Abstract: TS86101G2 CI-CGA255 1 GSPS serial TSEV86101G2
    Text: DESCRIPTION The TSEV86101G2 Evaluation Board EB is a prototype board, which has been designed in order to facilitate the evaluation and characterization of the TS86101G2 MUXDAC device (CI-CGA-255 cavity up packaged device) over an output band of interest of up to


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    PDF TSEV86101G2 TS86101G2 CI-CGA-255 350MHz, CI-CGA-255 CI-CGA255 1 GSPS serial

    transistor A09t

    Abstract: A09T C7f TRANSISTOR transistor A4t 46 transistor A4t 45 DIODE ga
    Text: TS86101G2B 4:1 10-bit 1.2 Gsps MUXDAC Datasheet Main Features • • • • • • • • • • • • 10-bit Resolution 1.2 Gsps Guaranteed Conversion Rate, 1.4 Gsps Typical 4:1 Integrated Parallel MUX PECL/LVDS Differential Data and Clock Inputs 2 Vpp Differential Analog Output Swing


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    PDF TS86101G2B 10-bit TSEV86101G2BGL 0992D transistor A09t A09T C7f TRANSISTOR transistor A4t 46 transistor A4t 45 DIODE ga

    radiation tolerant DSP Atmel

    Abstract: atmel 450
    Text: Main Features • • • • • • • • • • • 10-bit Resolution Conversion Rate Up to 1.2 Gsps 4:1 Integrated Parallel MUX PECL/LVDS Differential Data and Clock Inputs Programmable DSP Clock 2 Vpp Differential Analog Output Swing Output Impedance: 50 Ω Single-ended, 100 Ω Differential


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    PDF 10-bit CI-CGA-255 TSEV86101G2 dBc/-58 dBC/-65 dB/-50 5343AS radiation tolerant DSP Atmel atmel 450

    "Direct Digital Synthesis"

    Abstract: 1 GSPS "waveform generator" cga converter TS86101G2
    Text: MAIN FEATURES 10-bit resolution. Conversion rate up to 1.2 GSPS. 4:1 parallel MUX. PECL/LVDS differential data and clock inputs. Programmable DSP clock Data Ready and Master Clock Inputs Data Ready and Master Clock monitoring Outputs Differential analog output swing 1 Vpp.


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    PDF 10-bit CI-CGA-255 -56dBC. -51dBC. -46dBc 500MHz -18dB TS86101G2 "Direct Digital Synthesis" 1 GSPS "waveform generator" cga converter

    A09T

    Abstract: transistor A09t transistor A6t 75 C7f TRANSISTOR transistor A9t DIODE ga C6f TRANSISTOR A09F transistor A4t 85 D9F SRAM
    Text: Main Features • • • • • • • • • • • 10-bit Resolution 1.2 Gsps Guaranteed Conversion Rate, 1.4 Gsps Typical 4:1 Integrated Parallel MUX PECL/LVDS Differential Data and Clock Inputs 2 Vpp Differential Analog Output Swing Output Impedance: 50Ω Single-ended, 100Ω Differential


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    PDF 10-bit TSEV86101G2BGL A09T transistor A09t transistor A6t 75 C7f TRANSISTOR transistor A9t DIODE ga C6f TRANSISTOR A09F transistor A4t 85 D9F SRAM

    QFP PACKAGE thermal resistance

    Abstract: 017AG QFP PACKAGE thermal resistance die down ceramic QFP Package 100 lead TS83084G0 CQFP68 TS81102G0 TS8308500GL TS83102G0B TS8388BGL
    Text: Packaging of Atmel Data Conversion Circuits Introduction This document aims at highlighting the main issues in thermal management for fast and dense devices such as the Atmel Data Conversion products ADCs and DMUX . It especially deals with packaging, electrical and thermal considerations in order to put


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    PDF TS83xxxxx/ AT84xxx TS81102G0 QFP PACKAGE thermal resistance 017AG QFP PACKAGE thermal resistance die down ceramic QFP Package 100 lead TS83084G0 CQFP68 TS81102G0 TS8308500GL TS83102G0B TS8388BGL

    A09t

    Abstract: transistor A4t 46 transistor A09t diode A5F C7f TRANSISTOR TS86101G2B AI203 MC100EP17 NBSG16 TS86101G2BCGL
    Text: Main Features • • • • • • • • • • • • 10-bit Resolution 1.2 Gsps Guaranteed Conversion Rate, 1.4 Gsps Typical 4:1 Integrated Parallel MUX PECL/LVDS Differential Data and Clock Inputs 2 Vpp Differential Analog Output Swing Output Impedance: 50Ω Single-ended, 100Ω Differential


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    PDF 10-bit TSEV86101G2BGL 10-bit 5343C A09t transistor A4t 46 transistor A09t diode A5F C7f TRANSISTOR TS86101G2B AI203 MC100EP17 NBSG16 TS86101G2BCGL

    T5757

    Abstract: Microcontroller - AT89s52 connections with lcd Stepper motor control using AT89S52 DC MOTOR SPEED CONTROL SYSTEM USING AT89S52 MICRO AVR voltage regulator schematic using Triac hand dryer circuit using 8051 gsm modem interface AT89s51 mv silicon mp3 player usb sd card STK 439 Stereo amplifier GSM module Interface with At89s52
    Text: ATMEL PRODUCT GUIDE February 2005 Atmel Corporation • 2325 Orchard Parkway • San Jose, CA 95131 TEL: 408 441-0311 • FAX: (408) 487-2600 Web Site: http://www.atmel.com ATMEL’S PRODUCTS Atmel Corporation is a global leader in researching, designing, manufacturing and marketing advanced semiconductors,


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    PDF U2745B U479B U2766B U5020M U2790B U5021M U2793B U6032B U2794B U6043B T5757 Microcontroller - AT89s52 connections with lcd Stepper motor control using AT89S52 DC MOTOR SPEED CONTROL SYSTEM USING AT89S52 MICRO AVR voltage regulator schematic using Triac hand dryer circuit using 8051 gsm modem interface AT89s51 mv silicon mp3 player usb sd card STK 439 Stereo amplifier GSM module Interface with At89s52

    atmel 550

    Abstract: atmel 450 TSEV86101G2BGL TS86101G2B ATMEL 580
    Text: Main Features • • • • • • • • • • • 10-bit Resolution 1.2 Gsps Guaranteed Conversion Rate, 1.4 Gsps Typical 4:1 Integrated Parallel MUX PECL/LVDS Differential Data and Clock Inputs Programmable DSP Clock 2 Vpp Differential Analog Output Swing


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    PDF 10-bit 10-bit TSEV86101G2BGL 5343CS atmel 550 atmel 450 TSEV86101G2BGL TS86101G2B ATMEL 580

    TS86101G2BCGL

    Abstract: TS86101G2B TSX86101G2BGL Differential output dac 315 DIODE
    Text: 4:1 10-bit 1.2 Gsps MUXDAC Evaluation Kit - TSEV86101G2B . User Guide Table of Contents Section 1 Introduction . 1-1


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    PDF 10-bit TSEV86101G2B 2194B TS86101G2BCGL TS86101G2B TSX86101G2BGL Differential output dac 315 DIODE

    A4t transistor

    Abstract: A09T transistor A4t 5343B transistor A09t A6T TRANSISTOR A6F diode transistor A4t 46 transistor A9t AI203
    Text: Main Features • • • • • • • • • • • • 10-bit Resolution 1.2 Gsps Guaranteed Conversion Rate, 1.4 Gsps Typical 4:1 Integrated Parallel MUX PECL/LVDS Differential Data and Clock Inputs 2 Vpp Differential Analog Output Swing Output Impedance: 50Ω Single-ended, 100Ω Differential


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    PDF 10-bit 10-bit TSEV86101G2BGL TS86101G2B 5343B A4t transistor A09T transistor A4t transistor A09t A6T TRANSISTOR A6F diode transistor A4t 46 transistor A9t AI203

    AT90SC7272C

    Abstract: T5757 AVR atmega8515 led matrix AT78C5010 fingerprint scanner circuit ATSAM2193 STK502 voltage regulator Stepper motor control using AT89S52 STK502 voltage regulator ic atr0890
    Text: ATMEL PRODUCT GUIDE August 2004 Atmel Corporation • 2325 Orchard Parkway • San Jose, CA 95131 TEL: 408 441-0311 • FAX: (408) 487-2600 Web Site: http://www.atmel.com ATMEL’S PRODUCTS Atmel Corporation is an industry leader in the design and manufacture of advanced semiconductors, with focus on microcontrollers, nonvolatile memory, logic, radio frequency (RF) components and sensors. These functions are marketed as


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    PDF U6808B U6809B U6812B U6813B U6815BM U6820BM U7004B U7006B U9280M AT90SC7272C T5757 AVR atmega8515 led matrix AT78C5010 fingerprint scanner circuit ATSAM2193 STK502 voltage regulator Stepper motor control using AT89S52 STK502 voltage regulator ic atr0890

    5359a

    Abstract: glsw4m202 GCX2039 GLSB4R5M102 TS86101G2 transformer specification single line diagram balun differential to single AT76CL610 CX2039 TS81102G0
    Text: Single-to-differential Conversion in High-frequency Applications Introduction The aim of this application note is to provide the user with different techniques for single-to-differential conversions in high frequency applications. The first part of this document gives a few techniques to be used in applications where


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