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    MCM 250 Search Results

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    Sauro srl MCM25005

    TERM BLOCK 25POS 5.08MM PCB
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    DigiKey MCM25005 Bulk
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    Sauro srl MCM25001

    TERM BLOCK 25POS 5MM PCB
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    TE Connectivity DMC-M 82 B 25-01

    Rectangular MIL Spec Connectors DMC-M 82 B 25-01
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    Mouser Electronics DMC-M 82 B 25-01
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    TE Connectivity DMC-M 80 B 25-01

    Rectangular MIL Spec Connectors DMC-M 80 B 25-01
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    Mouser Electronics DMC-M 80 B 25-01
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    Cornell Dubilier Electronics Inc MCM01-009DD250A-F

    Mica Capacitors 25uF 500V
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    Mouser Electronics MCM01-009DD250A-F
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    MCM 250 Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    79C2040

    Contextual Info: 79C2040B 20 Megabit 512K x 40-Bit EEPROM MCM FEATURES: DESCRIPTION: 512k x 40-bit EEPROM MCM Maxwell Technologies’ 79C2040B multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79C2040B 40-Bit) 40-bit 79C2040B 20Megabyte 79C2040 PDF

    79C2040

    Abstract: 79C0832
    Contextual Info: 79C2040 20 Megabit 512K x 40-Bit EEPROM MCM FEATURES: DESCRIPTION: 512k x 40-bit EEPROM MCM Maxwell Technologies’ 79C2040 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79C2040 40-Bit) 40-bit 79C2040 79C0832 79C0832 PDF

    79C0832

    Abstract: 79C2040 CE030
    Contextual Info: 79C2040 20 Megabit 512K x 40-Bit EEPROM MCM FEATURES: DESCRIPTION: 512k x 40-bit EEPROM MCM Maxwell Technologies’ 79C2040 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79C2040 40-Bit) 40-bit 79C2040 79C0832 79C0832 CE030 PDF

    Contextual Info: Standard Products UT8ER1M32 32Megabit SRAM MCM UT8ER2M32 64Megabit SRAM MCM UT8ER4M32 128Megabit SRAM MCM Data Sheet January, 2013 www.aeroflex.com/memories INTRODUCTION The UT8ER1M32, UT8ER2M32, and UT8ER4M32 are high performance CMOS static RAM multichip modules MCMs


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    UT8ER1M32 32Megabit UT8ER2M32 64Megabit UT8ER4M32 128Megabit UT8ER1M32, UT8ER2M32, PDF

    SRAM edac

    Contextual Info: Standard Products UT8ER1M32 32Megabit SRAM MCM UT8ER2M32 64Megabit SRAM MCM UT8ER4M32 128Megabit SRAM MCM Preliminary Data Sheet June 8, 2011 www.aeroflex.com/memories INTRODUCTION The UT8ER1M32, UT8ER2M32, and UT8ER4M32 are high performance CMOS static RAM multichip modules MCMs


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    UT8ER1M32 32Megabit UT8ER2M32 64Megabit UT8ER4M32 128Megabit UT8ER1M32: UT8ER2M32: UT8ER4M32: 111MeV-cm2/mg SRAM edac PDF

    Contextual Info: Standard Products UT8ER1M32 32Megabit SRAM MCM UT8ER2M32 64Megabit SRAM MCM UT8ER4M32 128Megabit SRAM MCM Preliminary Data Sheet August 28, 2012 www.aeroflex.com/memories FEATURES  20ns Read, 10ns Write maximum access times available  Functionally compatible with traditional 1M, 2M and 4M


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    UT8ER1M32 32Megabit UT8ER2M32 64Megabit UT8ER4M32 128Megabit UT8ER1M32: UT8ER2M32: UT8ER4M32: x10-16 PDF

    UT8ER2M32

    Contextual Info: Standard Products UT8ER1M32 32Megabit SRAM MCM UT8ER2M32 64Megabit SRAM MCM UT8ER4M32 128Megabit SRAM MCM Preliminary Data Sheet December 8, 2009 FEATURES ‰ 20ns Read, 10ns Write maximum access times available ‰ Functionally compatible with traditional 1M, 2M and 4M


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    UT8ER1M32 32Megabit UT8ER2M32 64Megabit UT8ER4M32 128Megabit UT8ER1M32: UT8ER2M32: UT8ER4M32: 111MeV-cm2/mg PDF

    aeroflex sram edac

    Abstract: SRAM edac
    Contextual Info: Standard Products UT8ER1M32 32Megabit SRAM MCM UT8ER2M32 64Megabit SRAM MCM UT8ER4M32 128Megabit SRAM MCM Preliminary Data Sheet June 25, 2010 FEATURES ‰ 20ns Read, 10ns Write maximum access times available ‰ Functionally compatible with traditional 1M, 2M and 4M


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    UT8ER1M32 32Megabit UT8ER2M32 64Megabit UT8ER4M32 128Megabit UT8ER1M32: UT8ER2M32: UT8ER4M32: 111MeV-cm2/mg aeroflex sram edac SRAM edac PDF

    UT8ER4M32

    Abstract: SRAM edac UT8ER4M32M 20820h ut8er1m32m EN 10204 3.1 aeroflex sram edac UT8ER2M32
    Contextual Info: Standard Products UT8ER1M32 32Megabit SRAM MCM UT8ER2M32 64Megabit SRAM MCM UT8ER4M32 128Megabit SRAM MCM Preliminary Data Sheet December 9, 2010 www.aeroflex.com/memories FEATURES ‰ 20ns Read, 10ns Write maximum access times available ‰ Functionally compatible with traditional 1M, 2M and 4M


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    UT8ER1M32 32Megabit UT8ER2M32 64Megabit UT8ER4M32 128Megabit UT8ER1M32: UT8ER2M32: UT8ER4M32: UT8ER1M32, SRAM edac UT8ER4M32M 20820h ut8er1m32m EN 10204 3.1 aeroflex sram edac PDF

    961-003-T-B-0

    Abstract: 961-002-T-G-0
    Contextual Info: TurboFlex TurboFlex Ultra-Flexible Power Distribution Cable Product Showcase • Voltage Rating Data Ultra flexible rope lay construction Available in a broad range of gages, 12 AWG to 450 MCM Voltage Rating AWG 600 V 12 10 8 6 4 2 2/0 3/0 4/0 250 MCM 450 MCM


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    961-003-T-A-0 961-003-T-B-0 961-002-T-C-0 961-002-T-D-0 961-002-T-I-0 961-002-T-J-0 961-002-T-K-0 961-002-T-L-0 961-003-T-B-0 961-002-T-G-0 PDF

    zo 107

    Contextual Info: Standard Products UT8ER1M32 32Megabit SRAM MCM UT8ER2M32 64Megabit SRAM MCM UT8ER4M32 128Megabit SRAM MCM Preliminary Data Sheet June 8, 2011 www.aeroflex.com/memories FEATURES  20ns Read, 10ns Write maximum access times available  Functionally compatible with traditional 1M, 2M and 4M


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    UT8ER1M32 32Megabit UT8ER2M32 64Megabit UT8ER4M32 128Megabit UT8ER1M32: UT8ER2M32: UT8ER4M32: 111MeV-cm2/mg zo 107 PDF

    79C0832

    Contextual Info: 79C0832 8 Megabit 256K x 32-Bit EEPROM MCM DESCRIPTION: • • • • Maxwell Technologies’ 79C0832 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79C0832 32-Bit) 79C0832 PDF

    Contextual Info: 79C0832 8 Megabit 256K x 32-Bit EEPROM MCM DESCRIPTION: • • • • Maxwell Technologies’ 79C0832 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79C0832 32-Bit) 32-bit 79C0832 PDF

    8X128

    Contextual Info: 79C0832 8 Megabit 256K x 32-Bit EEPROM MCM DESCRIPTION: • • • • Maxwell Technologies’ 79C0832 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79C0832 32-Bit) 32-bit 79C0832 8X128 PDF

    79C0832

    Contextual Info: 79C0832 8 Megabit 256K x 32-Bit EEPROM MCM DESCRIPTION: • • • • Maxwell Technologies’ 79C0832 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79C0832 32-Bit) 79C0832 PDF

    79LV0832

    Contextual Info: 79LV0832 8 Megabit 256K x 32-Bit Low Voltage EEPROM MCM DESCRIPTION: • • • • Maxwell Technologies’ 79LV0832 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79LV0832 32-Bit) 32-bit 79LV0832 10rdering PDF

    79LV2040

    Contextual Info: 79LV2040 20 Megabit 512K x 40-Bit Low Low Voltage EEPROM MCM FEATURES: DESCRIPTION: • • • • Maxwell Technologies’ 79LV2040 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79LV2040 40-Bit) 79LV2040 79C0832 PDF

    79LV2040

    Contextual Info: 79LV2040 20 Megabit 512K x 40-Bit Low Low Voltage EEPROM MCM FEATURES: DESCRIPTION: • • • • Maxwell Technologies’ 79LV2040 multi-chip module (MCM) memory features a greater than 100 krad (Si) total dose tolerance, dependent upon orbit. Using Maxwell Technologies’ patented radiation-hardened RAD-PAK MCM packaging


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    79LV2040 40-Bit) 79LV2040 79C0832 PDF

    63125

    Abstract: 250MCM HT1000 HTAP
    Contextual Info: 403030.01CK 3/11/02 3:29 PM Page 51 Insulating Covers for H-Taps and C-Taps H-Tap Insulating Covers Soft Cover Wire Range Cat. No. HT20C HT40C HT600C HT1000C HT1000C-L Min. Max. Installs on “H” Tap Cat. No. 6 6 2 1/0 1/0 2/0 4/0 500 MCM 750 MCM 1000 MCM


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    HT20C HT40C HT600C HT1000C HT1000C-L HT1000C-L 63125 250MCM HT1000 HTAP PDF

    Contextual Info: Types MCM and MIN SMT Clad RF Capacitors Multilayer High Power, High Temperature Mica and PTFE Capacitors Types MCM and MIN SMT clad PTFE and mica capacitors are top performers for high power applications requiring low inductance at high frequencies and can


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    PDF

    mica Cornell

    Contextual Info: Types MCM and MIN SMT Clad RF Capacitors Multilayer High Power, High Temperature Mica and PTFE Capacitors Types MCM and MIN SMT clad PTFE and mica capacitors are top performers for high power applications requiring low inductance at high frequencies and can


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    MCM01-009 MCM01-004 mica Cornell PDF

    MicroMetrics

    Abstract: MCM500 MCM501 MCM502 MCM503 MCM504 MCM505
    Contextual Info: Schottky Diodes: MCM 500 Series Medium Barrier Schottky Ring Quads Description The MicroMetrics MCM 500 series of Medium Barrier Ring Quads consists of four closely matched diodes connected in a ring configuration. The diodes are formed monolithically providing close matching of capacitance,


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    MCM500 MCM501 MCM502 MCM503 MCM504 MCM505 250mW MicroMetrics MCM500 MCM501 MCM502 MCM503 MCM504 MCM505 PDF

    79LV0832

    Contextual Info: 79LV0832 8 Megabit 256K x 32-Bit Low Voltage EEPROM MCM DESCRIPTION: • 256k x 32-bit EEPROM MCM • RAD-PAK radiation-hardened against natural space radiation • Total dose hardness: - >100 krad (Si) - Dependent upon orbit • Excellent Single event effects


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    79LV0832 32-Bit) 32-bit 79LV0832 PDF

    MicroMetrics

    Contextual Info: Schottky Diodes 58 Schottky Diodes: MCM 500 Series Medium Barrier Schottky Ring Quads Description The MicroMetrics MCM 500 series of Medium Barrier Ring Quads consists of four closely matched diodes connected in a ring configuration. The diodes are formed monolithically providing close matching of capacitance,


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    MCM500 MCM501 MCM502 MCM503 MCM504 MCM505 250mW MicroMetrics PDF