SPEC-883 COLD PLATE METHOD Search Results
SPEC-883 COLD PLATE METHOD Result Highlights (5)
Part | ECAD Model | Manufacturer | Description | Download | Buy |
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CN-ACPRREDAA0 |
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RCA Male Plug Cable Connector (Red) - Amphenol ACPR-RED - Gold Plated Diecast Shell | |||
TDC1044AR4C |
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TDC1044A - ADC, Proprietary Method, 4-Bit, 1 Func, 1 Channel, Parallel, 4 Bits Access, Bipolar, PQCC20 |
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TDC1044AN9C |
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TDC1044A - ADC, Proprietary Method, 4-Bit, 1 Func, 1 Channel, Parallel, 4 Bits Access, Bipolar, PDIP16 |
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CA3306D/B |
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CA3306 - ADC, Flash Method, 6-Bit, 1 Func, 1 Channel, Parallel, Word Access, CMOS, CDIP18 |
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9513ADC-SPECIAL |
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9513A - Rochester Manufactured 9513, System Timing Controller |
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SPEC-883 COLD PLATE METHOD Datasheets Context Search
Catalog Datasheet | Type | Document Tags | |
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Mil-Std-883 Wire Bond Pull Method 2011
Abstract: 82440 82440LX 82430TX 82440FX
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CY2273 82430TX CY2274 82440FX CY2275 82440LX CY2276 CY2277 Mil-Std-883 Wire Bond Pull Method 2011 82440 | |
cy2071
Abstract: 8361H CY2291 EME-6300 CY2081
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CY2291/CY2292/CY2295/CY2071/CY2081 CY2291 85C/85 CY2273APVC cy2071 8361H CY2291 EME-6300 CY2081 | |
140C
Abstract: 8361H
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CY2280PVC* 7C83760A CY2280PVC 100-MHz 85C/85 CY2273APVC 140C 8361H | |
8361H
Abstract: CY2907 EME-6300
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CY2907 85C/85 CY2273APVC 8361H CY2907 EME-6300 | |
FDC9268
Abstract: FSA2501M FSA2510 fsa2501 FSA2510M smd diode marking code TO3 FSA3130M TRANSISTOR SMD MARKING CODE QA lmc64841 CB0239W-MSP
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MCM69P819
Abstract: MCM69P819TQ4 MCM69P819TQ4R MCM69P819ZP4 MCM69P819ZP4R
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MCM69P819 MCM69P819 MCM69P819/D MCM69P819TQ4 MCM69P819TQ4R MCM69P819ZP4 MCM69P819ZP4R | |
MCM69F737
Abstract: MCM69F737TQ8 MCM69F737TQ8R MCM69F737ZP11 MCM69F737ZP8 MCM69F737ZP8R
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MCM69F737 MCM69F737 MCM69F737/D MCM69F737TQ8 MCM69F737TQ8R MCM69F737ZP11 MCM69F737ZP8 MCM69F737ZP8R | |
K2218
Abstract: SPEC-883 SPEC-883 cold plate method MCM69F819 MCM69F819TQ8 MCM69F819TQ8R MCM69F819ZP11 MCM69F819ZP8 MCM69F819ZP8R
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MCM69F819 MCM69F819 MCM69F819/D K2218 SPEC-883 SPEC-883 cold plate method MCM69F819TQ8 MCM69F819TQ8R MCM69F819ZP11 MCM69F819ZP8 MCM69F819ZP8R | |
MCM69F819
Abstract: MCM69F819TQ8 MCM69F819TQ8R MCM69F819ZP11 MCM69F819ZP8 MCM69F819ZP8R
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MCM69F819 MCM69F819 MCM69F819/D MCM69F819TQ8 MCM69F819TQ8R MCM69F819ZP11 MCM69F819ZP8 MCM69F819ZP8R | |
MCM69P819ZP4
Abstract: MCM69P819ZP4R MCM69P819TQ4 MCM69P819TQ4R MCM69P819
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MCM69P819 MCM69P819 MCM69P819/D MCM69P819ZP4 MCM69P819ZP4R MCM69P819TQ4 MCM69P819TQ4R | |
MCM69P737
Abstract: MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R
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MCM69P737 MCM69P737 MCM69P737/D MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R | |
SPEC-883 cold plate method
Abstract: MCM69F737ZP8R MCM69F737 MCM69F737TQ8 MCM69F737TQ8R MCM69F737ZP11 MCM69F737ZP8
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MCM69F737 MCM69F737 MCM69F737/D SPEC-883 cold plate method MCM69F737ZP8R MCM69F737TQ8 MCM69F737TQ8R MCM69F737ZP11 MCM69F737ZP8 | |
MCM69P819
Abstract: MCM69P819TQ4 MCM69P819TQ4R MCM69P819ZP4 MCM69P819ZP4R
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MCM69P819 MCM69P819 MCM69P819/D MCM69P819TQ4 MCM69P819TQ4R MCM69P819ZP4 MCM69P819ZP4R | |
MCM69P737
Abstract: MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R
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MCM69P737 MCM69P737 MCM69P737/D MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R | |
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MCM69F819
Abstract: MCM69F819TQ8 MCM69F819TQ8R MCM69F819ZP11 MCM69F819ZP8 MCM69F819ZP8R
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MCM69F819/D MCM69F819 MCM69F819 MCM69F819TQ8 MCM69F819TQ8R MCM69F819ZP11 MCM69F819ZP8 MCM69F819ZP8R | |
SPEC-883 cold plate method
Abstract: MCM69P819 MCM69P819TQ4 MCM69P819TQ4R MCM69P819ZP4 MCM69P819ZP4R
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MCM69P819/D MCM69P819 MCM69P819 SPEC-883 cold plate method MCM69P819TQ4 MCM69P819TQ4R MCM69P819ZP4 MCM69P819ZP4R | |
MCM69P737
Abstract: MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R
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MCM69P737 MCM69P737 MCM69P737/D MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R | |
DQY27Contextual Info: MOTOROLA Order this document by MCM63D736/D SEMICONDUCTOR TECHNICAL DATA MCM63V736 Product Preview 128K x 36 Bit Synchronous Dual Port SRAM The MCM63V736 is a 4M–bit static random access memory, organized as 128K words of 36 bits. It features common data input and data output buffers and |
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MCM63D736/D MCM63V736 MCM63V736 MCM63V736/D DQY27 | |
ay16Contextual Info: MOTOROLA Order this document by MCM63D736/D SEMICONDUCTOR TECHNICAL DATA MCM63V736 Product Preview 128K x 36 Bit Synchronous Dual Port SRAM The MCM63V736 is a 4M–bit static random access memory, organized as 128K words of 36 bits. It features common data input and data output buffers and |
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MCM63D736/D MCM63V736 MCM63V736 MCM63V736/D ay16 | |
EM 210
Abstract: MCM69P737 MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R
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MCM69P737/D MCM69P737 MCM69P737 EM 210 MCM69P737TQ4 MCM69P737TQ4R MCM69P737ZP4 MCM69P737ZP4R | |
MCM67Q909
Abstract: MCM69D536 MCM69D618 MCM69Q536 MCM69Q618 MCM69Q618TQ10 MCM69Q618TQ6 MCM69Q618TQ8
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MCM69Q618/D MCM69Q618 MCM69Q618 MCM67Q909 MCM69D536 MCM69D618 MCM69Q536 MCM69Q618TQ10 MCM69Q618TQ6 MCM69Q618TQ8 | |
MCM69T618Contextual Info: MOTOROLA SEMICONDUCTOR TECHNICAL DATA 64K x 18 Bit Synchronous Pipelined Cache Tag RAM The MCM69T618 is a 1M–bit synchronous fast static RAM with integrated tag compare function. It is designed to address tag RAM for 512KB, 1MB, or 2MB secondary cache as well as to be used as a data RAM for 512KB caches. This |
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MCM69T618 512KB, 512KB MCM69T618 MCM69T618/D | |
Contextual Info: MOTOROLA Freescale Semiconductor, Inc. Order this document by MCM72F10/D SEMICONDUCTOR TECHNICAL DATA Freescale Semiconductor, Inc. 8MB Synchronous Fast Static RAM Module The MCM72F10 2MB is configured as 1M x 72 bits. It is packaged in a 168–pin dual–in–line memory module DIMM. The module uses Motorola’s 3.3 V, |
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MCM72F10/D MCM72F10 | |
Contextual Info: Freescale Semiconductor, Inc. MOTOROLA SEMICONDUCTOR TECHNICAL DATA Order this document by MCM63D736/D MCM63V736 Product Preview Freescale Semiconductor, Inc. 128K x 36 Bit Synchronous Dual Port SRAM The MCM63V736 is a 4M–bit static random access memory, organized as |
Original |
MCM63D736/D MCM63V736 MCM63V736 MCM63V736/D |