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    0A5H PART Search Results

    0A5H PART Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    65197-001LF
    Amphenol Communications Solutions Din Accessory Coding Part PDF
    70275-001LF
    Amphenol Communications Solutions 70275-001LF-METRAL FEM CODING PART PDF
    65164-033LF
    Amphenol Communications Solutions BP DR CBL CNR SHROUD LF

    For more information about this part number, please contact Amphenol FCI.
    PDF
    REF102AU/2K5
    Texas Instruments 2.5-ppm/°C drift, 10-V precision voltage reference 8-SOIC Visit Texas Instruments Buy
    LM4040CIM3-2.5
    Texas Instruments 100-ppm/°C precision micropower shunt voltage reference 3-SOT-23 Visit Texas Instruments

    0A5H PART Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    6 PIN EEPROM

    Abstract: EEPROM Infineon communication 240R C868 i2c and spi communication program AP08006 eeprom 4 pin
    Contextual Info: App lica tion No te , V 1 .1 , A p r. 2005 AP08006 C868 Interfacing SPI/I2C Serial EEPROM with C868 Microcontroller Mic r ocont rollers N e v e r s t o p t h i n k i n g . Edition 2005-04-01 Published by Infineon Technologies AG 81726 München, Germany Infineon Technologies AG 2006.


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    AP08006 0FF00H 6 PIN EEPROM EEPROM Infineon communication 240R C868 i2c and spi communication program AP08006 eeprom 4 pin PDF

    Migrating from Philips P89LPC913 to Atmel AT89LP214

    Abstract: p1m21 3617A 0a5h part P89LPC913 P3M10 AT89LP BUT12
    Contextual Info: Migrating from Philips P89LPC913 to Atmel AT89LP214 1. Introduction The Atmel AT89LP214 can replace the Philips® P89LPC913 directly in an existing application provided that the following software differences are taken into consideration. 2. Pin Mapping


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    P89LPC913 AT89LP214 AT89LP214 P89LPC913 AT89LP214. Migrating from Philips P89LPC913 to Atmel AT89LP214 p1m21 3617A 0a5h part P3M10 AT89LP BUT12 PDF

    SBAA076

    Abstract: MSC1210 application note Y44K MSC1210 programming MSC1210 F800H 1MHZ crystal
    Contextual Info: Application Report SBAA076 - April 2002 PROGRAMMING THE MSC1210 By Russell Anderson SERIAL FLASH PROGRAMMING AUTOBAUD AND SETUP The BootROM start address is F800H for User Application Mode UAM , and 0000H for Flash Programming Mode (FPM). Since the 2kB BootROM code is using only an 11-bit address


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    SBAA076 MSC1210 F800H 0000H 11-bit 0000H 8000H, MSC1210 application note Y44K MSC1210 programming MSC1210 1MHZ crystal PDF

    Migrating from AT89S52 to AT89LP52

    Abstract: AT89S52 INSTRUCTION SET crystal oscillator 11.0592 mhz in at89s52 AT89S52 specification flash programmer circuit for AT89s52 AT89S52 specification microcontroller Microcontroller AT89s52 counter time pin of Atmel AT89s52 AT89S52 circuit xtal 11.0592
    Contextual Info: Migrating from AT89S52 to AT89LP52 New Features • • • • • • • • • • • • • • • • • • • • • SIngle Clock Cycle per Byte Fetch with 20 MIPS Throughput at 20MHz Clock Frequency 12 Clock Instruction Compatibility Mode 4-level Interrupt Priority


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    AT89S52 AT89LP52 20MHz Migrating from AT89S52 to AT89LP52 AT89S52 INSTRUCTION SET crystal oscillator 11.0592 mhz in at89s52 AT89S52 specification flash programmer circuit for AT89s52 AT89S52 specification microcontroller Microcontroller AT89s52 counter time pin of Atmel AT89s52 AT89S52 circuit xtal 11.0592 PDF

    SBAA076A

    Abstract: msc1210 flash programming F800H MSC1210
    Contextual Info: Application Report SBAA076A - April 2002 PROGRAMMING THE MSC1210 By Russell Anderson SERIAL FLASH PROGRAMMING AUTOBAUD AND SETUP The BootROM start address is F800H for User Application Mode UAM , and 0000H for Flash Programming Mode (FPM). Since the 2kB BootROM code is using only an 11-bit address


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    SBAA076A MSC1210 F800H 0000H 11-bit 0000H 8000H, msc1210 flash programming MSC1210 PDF

    24810

    Abstract: 240R C868 8K10
    Contextual Info: Application Note, V 0.1, July 2003 AP08009 C868P Data Scrambling Feature in C868P Microcontroller Microcontrollers N e v e r s t o p t h i n k i n g . Edition 2003-07-01 Published by Infineon Technologies AG 81726 München, Germany Infineon Technologies AG 2006.


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    AP08009 C868P C868P 0000H 24810 240R C868 8K10 PDF

    M33 63

    Abstract: PTR 80 AP-930 245045 3x3 matrix c1b24 m6636 matrix multiplication M-128 EDX20
    Contextual Info: AP-930 Streaming SIMD Extensions Matrix Multiplication June 1999 Order Number: 245045-001 Information in this document is provided in connection with Intel products. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document. Except as provided in Intel's Terms and Conditions of Sale for such products, Intel


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    AP-930 M33 63 PTR 80 AP-930 245045 3x3 matrix c1b24 m6636 matrix multiplication M-128 EDX20 PDF

    89lp51

    Abstract: FC51 at89lp programmer p2m0 TPS30 atmel AT89C51RD2 PROGRAMMER FC516 at89lp51ed2 AT89LP51RC2 AT89LP51
    Contextual Info: Migrating from AT89C51RB2/RC2/RD2/ED2/IC2/ID2 to AT89LP51RB2/RC2/RD2/ED2/IC2/ID2 New Features • • • • • • • • • • • • • • • • • • • • • • • • SIngle Clock Cycle per Byte Fetch with 20 MIPS Throughput at 20MHz Clock Frequency


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    AT89C51RB2/RC2/RD2/ED2/IC2/ID2 AT89LP51RB2/RC2/RD2/ED2/IC2/ID2 20MHz 40-bit 16x16 32-byte AT89LP51ED2 AT89LP51ID2 AT89LP51RB2/RC2/RD2/ED2 89lp51 FC51 at89lp programmer p2m0 TPS30 atmel AT89C51RD2 PROGRAMMER FC516 at89lp51ed2 AT89LP51RC2 AT89LP51 PDF

    AN431

    Contextual Info:  APPLICATION NOTE USING ST6 ANALOG INPUTS FOR MULTIPLE KEY DECODING J.Stockinger INTRODUCTION The ST6 on-chip Analog to Digital Converter ADC is a useful peripheral integrated into the silicon of the ST6 family members. The flexibility of the I/O port structure allows


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    ST6210/15 ST6220/25 AN431 PDF

    ADC and analog keyboard configuration

    Abstract: AN431 S11078
    Contextual Info: AN431 Application note Using ST6 analog inputs for multiple key decoding INTRODUCTION The ST6 on-chip Analog to Digital Converter ADC is a useful peripheral integrated into the silicon of the ST6 family members. The flexibility of the I/O port structure allows the multiplexing of


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    AN431 ST6210/15 ST6220/25 ADC and analog keyboard configuration AN431 S11078 PDF

    om02

    Abstract: boot loader code serial port msp430 20-PIN MSP430 MSP430F110 MSP430F110IDW MSP430F110IPW MSP430F112 MSP430F112IDW 0C00h
    Contextual Info: MSP430F11x MIXED SIGNAL MICROCONTROLLER SLAS256B – NOVEMBER 1999 – REVISED JUNE 2000 D D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption Low Operation Current, 1.6 µA at 4 kHz, 2.2 V 200 µA at 1 MHz, 2.2 V Five Power Saving Modes:


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    MSP430F11x SLAS256B 16-Bit om02 boot loader code serial port msp430 20-PIN MSP430 MSP430F110 MSP430F110IDW MSP430F110IPW MSP430F112 MSP430F112IDW 0C00h PDF

    MSP430 Manual

    Abstract: MSP430 pin diagram MSP430 SN74AHC244 SLAU038
    Contextual Info: MSP430 Family Architectural Guide and Module Library User’s Guide VOLUME 2 2000 Mixed Signal Products SLAU038 IMPORTANT NOTICE Texas Instruments and its subsidiaries TI reserve the right to make changes to their products or to discontinue any product or service without notice, and advise customers to obtain the latest version of relevant information


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    MSP430 SLAU038 MSP430 Manual MSP430 pin diagram SN74AHC244 SLAU038 PDF

    boot loader code serial port msp430

    Abstract: 20-PIN MSP430 MSP430F110 MSP430F110IDW MSP430F112 MSP430F112IDW SLAS256
    Contextual Info: MSP430F11x MIXED SIGNAL MICROCONTROLLER SLAS256 – NOVEMBER 1999 D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultra-Low Power Consumption Low Operation Current, 1.6 µA at 4 kHz, 2.2 V 250 µA at 1 MHz, 2.2 V Five Power Saving Modes: Standby Mode: 0.8 µA,


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    MSP430F11x SLAS256 16-Bit boot loader code serial port msp430 20-PIN MSP430 MSP430F110 MSP430F110IDW MSP430F112 MSP430F112IDW SLAS256 PDF

    code bootstrap loader MSP430

    Abstract: msp430f112
    Contextual Info: MSP430F11x MIXED SIGNAL MICROCONTROLLER SLAS256B – NOVEMBER 1999 – REVISED JUNE 2000 D D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption Low Operation Current, 1.6 µA at 4 kHz, 2.2 V 200 µA at 1 MHz, 2.2 V Five Power Saving Modes:


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    MSP430F11x SLAS256B 16-Bit MSP-FET430X110 MSP-PRGS430 MSP430FREETOOLS MSP430 code bootstrap loader MSP430 msp430f112 PDF

    RF sensor

    Abstract: OM02 optical SLAU049 OM01 optical msp430 pwm dc motor control on watchdog timer
    Contextual Info: MSP430F11x MIXED SIGNAL MICROCONTROLLER SLAS256B – NOVEMBER 1999 – REVISED JUNE 2000 D D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption Low Operation Current, 1.6 µA at 4 kHz, 2.2 V 200 µA at 1 MHz, 2.2 V Five Power Saving Modes:


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    MSP430F11x SLAS256B 16-Bit MSP4MSP-FET430X110 MSP-PRGS430 MSP-US-TRF6900 MSP430FREETOOLS RF sensor OM02 optical SLAU049 OM01 optical msp430 pwm dc motor control on watchdog timer PDF

    AT89LP828

    Abstract: AT89LP6440 1000H-2FFFH AT89LP
    Contextual Info: Emulating EEPROM Using AT89LP On-Chip Flash Data Memory 1. Introduction Many embedded systems rely on nonvolatile parameters that are preserved across reset or power-loss events. In some systems this static information is used to initialize the system to a correct state at start-up. In other systems it is used to log system history or accumulated data. Traditionally these tasks have been implemented using


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    AT89LP AT89LP828 AT89LP6440 1000H-2FFFH PDF

    cmos oscillator clock 16MHZ 5v MSP430

    Abstract: slas241d MSP430 General Purpose Subroutines msp430f11x1a OM01 om02 MSP430 MSP430C1111 MSP430C1121 MSP430F1101A
    Contextual Info: MSP430C11x1, MSP430F11x1A MIXED SIGNAL MICROCONTROLLER SLAS241D – SEPTEMBER 1999 – REVISED JANUARY 2002 D D D D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption – Active Mode: 160 µA at 1 MHz, 2.2 V – Standby Mode: 0.7 µA


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    MSP430C11x1, MSP430F11x1A SLAS241D 16-Bit 32-kHz cmos oscillator clock 16MHZ 5v MSP430 slas241d MSP430 General Purpose Subroutines msp430f11x1a OM01 om02 MSP430 MSP430C1111 MSP430C1121 MSP430F1101A PDF

    MSP430 application note division

    Contextual Info: MSP430x11x1 MIXED SIGNAL MICROCONTROLLER SLAS241C – SEPTEMBER 1999 – REVISED JUNE 2000 D D D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption Low Operation Current, 1.3 µA at 4 kHz, 2.2 V 160 µA at 1 MHz, 2.2 V Five Power Saving Modes:


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    MSP430x11x1 SLAS241C 16-Bit /DMSP-FET430X110 MSP-PRGS430 MSP-US-TRF6900 MSP430FREETOOLS MSP430F11X MSP430 application note division PDF

    MSP430F1101 SLAU049

    Abstract: SLAS241C
    Contextual Info: MSP430x11x1 MIXED SIGNAL MICROCONTROLLER SLAS241C – SEPTEMBER 1999 – REVISED JUNE 2000 D D D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption Low Operation Current, 1.3 µA at 4 kHz, 2.2 V 160 µA at 1 MHz, 2.2 V Five Power Saving Modes:


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    MSP430x11x1 SLAS241C 16-Bit MSP-FET430X110 MSP-PRGS430 MSP430FREETOOLS MSP430F11X MSP430 MSP430F1101 SLAU049 SLAS241C PDF

    slas241d

    Contextual Info: MSP430C11x1, MSP430F11x1A MIXED SIGNAL MICROCONTROLLER SLAS241D – SEPTEMBER 1999 – REVISED JANUARY 2002 D Low Supply Voltage Range 1.8 V – 3.6 V D Ultralow-Power Consumption D D D D – Active Mode: 160 µA at 1 MHz, 2.2 V – Standby Mode: 0.7 µA – Off Mode RAM Retention : 0.1 µA


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    MSP430C11x1, MSP430F11x1A SLAS241D MSP430C1111: MSP430C1121: MSP430F1101A: MSP430F1111A: MSP430F1121A: 20-Pin slas241d PDF

    Atmel 8051 Microcontrollers

    Abstract: 89C51CC01 T89C51CC01 8051 sfr registers 4347A CAN Program Examples
    Contextual Info: Marcom Nantes Technical Document Release Document Identification Datasheet ✔ Manual Lit.# / Rev.letter Application note Doc. Date Errata Sheet 4347A 06/02/2004 Other technical Part Number Product Description CAN Program Examples Distribution Target ⌧


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    2000TM Atmel 8051 Microcontrollers 89C51CC01 T89C51CC01 8051 sfr registers 4347A CAN Program Examples PDF

    msp430f11x1a

    Abstract: om02 MSP430C1101 MSP430C1111 MSP430C1121 MSP430F1101A MSP430F1111A MSP430F1121A SLAS241E
    Contextual Info: MSP430C11x1, MSP430F11x1A MIXED SIGNAL MICROCONTROLLER SLAS241E – SEPTEMBER 1999 – REVISED JULY 2002 D D D D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption – Active Mode: 160 µA at 1 MHz, 2.2 V – Standby Mode: 0.7 µA


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    MSP430C11x1, MSP430F11x1A SLAS241E 16-Bit 32-kHz msp430f11x1a om02 MSP430C1101 MSP430C1111 MSP430C1121 MSP430F1101A MSP430F1111A MSP430F1121A SLAS241E PDF

    MSP430x12x

    Abstract: SLAS312 om02 MSP430 MSP430F122 MSP430F122IDW MSP430F122IPW MSP430F123 MSP430F123IDW MSP430F123IPW
    Contextual Info: MSP430x12x MIXED SIGNAL MICROCONTROLLER SLAS312 – JULY 2001 D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption: – Active Mode: 200 µA at 1 MHz, 2.2 V – Standby Mode: 0.7 µA – Off Mode RAM Retention : 0.1 µA Five Power Saving Modes


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    MSP430x12x SLAS312 16-Bit MSP430x12x SLAS312 om02 MSP430 MSP430F122 MSP430F122IDW MSP430F122IPW MSP430F123 MSP430F123IDW MSP430F123IPW PDF

    Contextual Info: MSP430x12x MIXED SIGNAL MICROCONTROLLER SLAS312 – JULY 2001 D D D D D D D Low Supply Voltage Range 1.8 V – 3.6 V Ultralow-Power Consumption: – Active Mode: 200 µA at 1 MHz, 2.2 V – Standby Mode: 0.7 µA – Off Mode RAM Retention : 0.1 µA Five Power Saving Modes


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    MSP430x12x SLAS312 16-Bit MSP-FET430P120 MSP-PRGS430 MSP430FREETOOLS MSP430F12X/F11X2/F12X2 MSP430 PDF