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    Fairchild Semiconductor Corporation NDS8839H

    COMPLEMENTARY MOSFET HALF BRIDGE Small Signal Field-Effect Transistor, 5.7A I(D), 30V, 2-Element, N-Channel and P-Channel, Silicon, Metal-oxide Semiconductor FET
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    ComSIT USA NDS8839H 2,500
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    Pasternack Enterprises PE3W08839/HS

    Key Specifications, Connector Series 1: N, Connector Gender 1: Male, Connector Polarity 1: Standard, Connector Angle 1: Straight, Connector Mount Method 1: None, Connector Impedance 1: 50 Ohm, Connector Series 2: TNC, Connector Gender 2: Male, Connector Polarity 2: Standard, Connector Angle 2: Right Angle, Connector Mount Method 2: None, Connector Impedance 2: 50 Ohm, RF Cable Part Number: LMR-400-DB, RF Cable Type: LMR-400-DB, RF Cable Impedance: 50 Ohm. N Male to TNC Male Right Angle Cable Using LMR-400-DB Coax with HeatShrink. PE3W08839/HS is a N male to TNC male right angle cable using LMR-400-DB coax. This Pasternack N male to TNC male right angle cable assembly uses a 50 Ohm N for connector 1 and a 50 Ohm TNC for connector 2. N to TNC right angle coaxial cable assembly uses 90 degree right angle coax cable connector. Our male N to male TNC right angle cable assembly uses a flexible cable type that is 50 Ohm. Pasternack PE3W08839/HS N male to TNC male right angle cable assembly is constructed with LMR-400-DB coax, * LMR™ is a trademark of Times Microwave Systems.
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    Pasternack Enterprises US PE3W08839/HS 1
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    Pasternack Enterprises PE3W18839/HS

    Key Specifications, Connector Series 1: TNC, Connector Gender 1: Female, Connector Polarity 1: Standard, Connector Angle 1: Straight, Connector Mount Method 1: Bulkhead, Connector Impedance 1: 50 Ohm, Connector Series 2: TNC, Connector Gender 2: Male, Connector Polarity 2: Standard, Connector Angle 2: Straight, Connector Mount Method 2: None, Connector Impedance 2: 50 Ohm, RF Cable Part Number: RG188A/U, RF Cable Type: RG188, RF Cable Impedance: 50 Ohm. TNC Female Bulkhead to TNC Male Cable Using RG188 Coax with HeatShrink. PE3W18839/HS is a TNC female bulkhead to TNC male cable using RG188 coax. This Pasternack TNC female bulkhead to TNC male cable assembly uses a 50 Ohm TNC for connector 1 and a 50 Ohm TNC for connector 2. Our female TNC bulkhead to male TNC cable assembly uses a flexible cable type that is 50 Ohm. Pasternack PE3W18839/HS TNC female bulkhead to TNC male cable assembly is constructed with RG188 coax.
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    Pasternack Enterprises US PE3W18839/HS 1
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    8839H Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    Z80 CPU

    Abstract: Z80 instruction set Z80 PROCESSOR Zilog Z80 family scf 4242 Z80 BASIC datasheet z80 Z80 CPU Instruction Set Z80 instruction z80 pio
    Text: Z80 Family CPU User Manual User Manual UM008003-1202 ZiLOG Worldwide Headquarters • 532 Race Street • San Jose, CA 95126-3432 Telephone: 408.558.8500 • Fax: 408.558.8300 • www.ZiLOG.com Z80 CPU User’s Manual This publication is subject to replacement by a later edition. To determine whether a later


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    UM008003-1202 1000H, 1000H Z80 CPU Z80 instruction set Z80 PROCESSOR Zilog Z80 family scf 4242 Z80 BASIC datasheet z80 Z80 CPU Instruction Set Z80 instruction z80 pio PDF

    M58BW32FB

    Abstract: Q002 PQFP80 M58BW16F M58BW16FT M58BW32F M58BW32FT
    Text: M58BW16F M58BW32F 16 or 32 Mbit x32, Boot Block, Burst 3.3V supply Flash memories Preliminary Data Features summary • Supply voltage – VDD = 2.7V to 3.6V (45ns) or VDD = 2.5V to 3.3V (55ns) – VDDQ = VDDQIN = 2.4V to 3.6V for I/O Buffers ■ High performance


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    M58BW16F M58BW32F 75MHz PQFP80 M58BW32F M58BW16F M58BW32FB Q002 PQFP80 M58BW16FT M58BW32FT PDF

    Untitled

    Abstract: No abstract text available
    Text: M58BW16F M58BW32F 16 or 32 Mbit x 32, boot block, burst 3.3 V supply Flash memories Preliminary Data Features • Supply voltage – VDD = 2.7 V to 3.6 V (45 ns) or VDD = 2.5 V to 3.3 V (55 ns) – VDDQ = VDDQIN = 2.4 V to 3.6 V for I/O buffers ■ High performance


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    M58BW16F M58BW32F M58BW32F PDF

    F8800h-F8FFFh

    Abstract: M58BW32FB
    Text: M58BW16F M58BW32F 16 or 32 Mbit x 32, boot block, burst 3.3 V supply Flash memories Features „ Supply voltage – VDD = 2.7 V to 3.6 V (45 ns) or VDD = 2.5 V to 3.3 V (55 ns) – VDDQ = VDDQIN = 2.4 V to 3.6 V for I/O buffers „ High performance – Access times: 45 and 55 ns


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    M58BW16F M58BW32F M58BW32F F8800h-F8FFFh M58BW32FB PDF

    Z80 CPU User Manual

    Abstract: LQ 425 B8 ND3N Z80382
    Text: Z80 Family CPU User Manual User Manual 80 =L/2* :RUOGZLGH +HDGTXDUWHUV ‡  5DFH 6WUHHW ‡ 6DQ -RVH &$  7HOHSKRQH  ‡ D[  ‡ ZZZ=L/2*FRP = &38 8VHU¶V 0DQXDO This publication is subject to replacement by a later edition. To determine whether a later


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    1000H 1000H Z80 CPU User Manual LQ 425 B8 ND3N Z80382 PDF

    scf 4242

    Abstract: Z80 CPU ld-3141 Z80 instruction set Z80 PROCESSOR Z80-CPU programming z80 z80 timing diagram Z80 mapped techniques z80 microprocessor
    Text: Z80 Family CPU User Manual User Manual UM008005-0205 ZiLOG Worldwide Headquarters • 532 Race Street • San Jose, CA 95126-3432 Telephone: 408.558.8500 • Fax: 408.558.8300 • www.ZiLOG.com Z80 CPU User’s Manual This publication is subject to replacement by a later edition. To determine whether a later


    Original
    UM008005-0205 1000H, 1000H scf 4242 Z80 CPU ld-3141 Z80 instruction set Z80 PROCESSOR Z80-CPU programming z80 z80 timing diagram Z80 mapped techniques z80 microprocessor PDF

    M58BW32FB

    Abstract: M58BW32F Q002 M58BW16FB M58BW16F M58BW16FT M58BW32FT PQFP80
    Text: M58BW16F M58BW32F 16 or 32 Mbit x 32, boot block, burst 3.3 V supply Flash memories Preliminary Data Features • Supply voltage – VDD = 2.7 V to 3.6 V (45 ns) or VDD = 2.5 V to 3.3 V (55 ns) – VDDQ = VDDQIN = 2.4 V to 3.6 V for I/O buffers ■ High performance


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    M58BW16F M58BW32F PQFP80 M58BW32F M58BW16F M58BW32FB Q002 M58BW16FB M58BW16FT M58BW32FT PQFP80 PDF

    F9800h-F9FFFh

    Abstract: M58BW32FB
    Text: M58BW16F M58BW32F 16 or 32 Mbit x 32, boot block, burst 3.3 V supply Flash memories Preliminary Data Features • Supply voltage – VDD = 2.7 V to 3.6 V (45 ns) or VDD = 2.5 V to 3.3 V (55 ns) – VDDQ = VDDQIN = 2.4 V to 3.6 V for I/O buffers ■ High performance


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    M58BW16F M58BW32F M58BW32F F9800h-F9FFFh M58BW32FB PDF

    M58BW16FB

    Abstract: M58BW32FT M58BW32FB V/B/512
    Text: M58BW16F, M58BW32F Features M58BW16F, M58BW32F 16Mb or 32Mb x32, Boot Block, Burst 3.3V Supply Flash Memory Features • Security – 64-bit unique device identifier (UID) • Fast programming – Write to buffer and program capability (8 double words) • Optimized for FDI drivers


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    M58BW16F, M58BW32F M58BW32F M58BW16F 09005aef8457ee46 16-32f M58BW16FB M58BW32FT M58BW32FB V/B/512 PDF

    Q002

    Abstract: M58BW32FB 8839H 6C000h-6FFFFh M58BW16FT M58BW32F M58BW32FT PQFP80 M58BW16F F9800h-F9FFFh
    Text: M58BW16F M58BW32F 16 or 32 Mbit x32, Boot Block, Burst 3.3V supply Flash memories Preliminary Data Features • Supply voltage – VDD = 2.7V to 3.6V (45ns) or VDD = 2.5V to 3.3V (55ns) – VDDQ = VDDQIN = 2.4V to 3.6V for I/O Buffers ■ High performance


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    M58BW16F M58BW32F 75MHz PQFP80 M58BW32F M58BW16F Q002 M58BW32FB 8839H 6C000h-6FFFFh M58BW16FT M58BW32FT PQFP80 F9800h-F9FFFh PDF

    Untitled

    Abstract: No abstract text available
    Text: AT30TS75A 9- to 12-bit Selectable, ±0.5°C Accurate Digital Temperature Sensor DATASHEET See Errata in Section 12. Features  Single 1.7V – 5.5V supply  Measures temperature from -55C to +125C  Highly accurate temperature measurements requiring no external components


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    AT30TS75A 12-bit PDF

    Z80A CPU

    Abstract: Z80A Z80A/B
    Text: C P U U s e r 's Ma n u a l <£3 L £ E Ch apter 5 Z 8 0 In s t r u c t io n D e s c r ip t io n 5.0 INTRODUCTION: Z80 ASSEMBLY LANGUAGE The assembly language provides a means for writing a program without having to be concerned with actual memory addresses or machine instruction formats. It al­


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    1000H, 1000H 003717b Z80A CPU Z80A Z80A/B PDF

    Z80A CPU

    Abstract: Z80A
    Text: CPU Us e r ’s Manual <S*2iL0E Chapter 5 _ Z 8 0 In s t r u c t io n D e s c r ip t io n 5.0 INTRODUCTION: Z80 ASSEMBLY LANGUAGE The assembly language provides a means for writing a program without having to be concerned with actual


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    1000H, 1000H Z80A CPU Z80A PDF