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    CRC16-POLYNOMIAL CIRCUIT DESIGN Search Results

    CRC16-POLYNOMIAL CIRCUIT DESIGN Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    DE6B3KJ101KA4BE01J
    Murata Manufacturing Co Ltd Safety Standard Certified Lead Type Disc Ceramic Capacitors for Automotive PDF
    DE6B3KJ331KB4BE01J
    Murata Manufacturing Co Ltd Safety Standard Certified Lead Type Disc Ceramic Capacitors for Automotive PDF
    DE6E3KJ102MN4A
    Murata Manufacturing Co Ltd Safety Standard Certified Lead Type Disc Ceramic Capacitors for Automotive PDF
    DE6E3KJ472MA4B
    Murata Manufacturing Co Ltd Safety Standard Certified Lead Type Disc Ceramic Capacitors for Automotive PDF
    DE6B3KJ331KA4BE01J
    Murata Manufacturing Co Ltd Safety Standard Certified Lead Type Disc Ceramic Capacitors for Automotive PDF

    CRC16-POLYNOMIAL CIRCUIT DESIGN Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    CRC-16 ccitt

    Abstract: CRC-16 codes for -16 bits crc implementation XOR Gates CRC16 AN9701 HFA3824 polynomial calculation
    Contextual Info: CRC-16 Algorithm for Packetized WLAN Protocols on the HFA3824 Application Note October 1998 AN9701.1 Authors: Al Petrick, John Fakatselis Introduction In packetize RF data transmissions systems, transmitted messages are susceptible to various types of bit errors


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    CRC-16 HFA3824 AN9701 CRC-16 ccitt codes for -16 bits crc implementation XOR Gates CRC16 HFA3824 polynomial calculation PDF

    CRC-16 ccitt

    Abstract: CRC-16 codes for -16 bits crc implementation XOR Gates CRC calculator crc-calculator CRC16 crc-16 implementation crc 16 AN9701
    Contextual Info: Harris Semiconductor No. AN9701 Harris Wireless Products February 1997 CRC-16 Algorithm for Packetized WLAN Protocols on the HSP3824 Authors: Al Petrick, John Fakatselis Introduction 2 arithmetic. Only the coefficient taps in the polynomial are used with the XOR gates for modulo 2 arithmetic. The message is shifted in serially MSB first. The resultant 16-bit parallel output is the remainder, inverted and appended as the


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    AN9701 CRC-16 HSP3824 16-bit 1-800-4-HARRIS CRC-16 ccitt codes for -16 bits crc implementation XOR Gates CRC calculator crc-calculator CRC16 crc-16 implementation crc 16 AN9701 PDF

    X3.28 nak

    Contextual Info: Signetics SCN2653/SCN68653 Polynomial Generator Checker PGC Product Specification Microprocessor Products DESCRIPTION FEATURES The Signetics SCN2653/68653 Polyno­ mial Generator Checker (PGC) Is a poly­ nomial generator ch e c k e r/c h a ra c te r comparator circuit that complements a


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    SCN2653/SCN68653 SCN2653/68653 600ns 150pF. X3.28 nak PDF

    CRC-16

    Abstract: CRC-16 ccitt touch memory 041H CRC calculator 50 Ways to TOuch Memory Dallas semiconductor transistor 016h 12TH DS1990A DS1991
    Contextual Info: APPENDIX 1 UNDERSTANDING AND USING CYCLIC REDUNDANCY CHECKS WITH TOUCH MEMORY PRODUCTS INTRODUCTION The Touch Memory products are a family of devices that all communicate over a single wire following a specific command sequence referred to as the one-wire Protocol. A key feature of each device is a unique 8-byte ROM code


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    DS1990A DS1991 ABCDEFGHP01234567 AB01X AB01X CRC-16 CRC-16 ccitt touch memory 041H CRC calculator 50 Ways to TOuch Memory Dallas semiconductor transistor 016h 12TH PDF

    CRC-16

    Abstract: 001H CRC-16 ccitt CRC16 DS18B20 DS18S20 DS1904 DS1990A DS1991 Appnote27
    Contextual Info: Maxim > App Notes > 1-Wire DEVICES BATTERY MANAGEMENT Keywords: 1-wire devices, DOW CRC, CRC-16, 16-bit 8-bit CRC, iButton CRC, cyclic redundancy check, ROM ID, 1-wire bus Mar 29, 2001 APPLICATION NOTE 27 Understanding and Using Cyclic Redundancy Checks with Maxim


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    CRC-16, 16-bit DS2432: DS2433: DS2438: DS2450: DS2502: DS2502-E48: DS2505: CRC-16 001H CRC-16 ccitt CRC16 DS18B20 DS18S20 DS1904 DS1990A DS1991 Appnote27 PDF

    6ap3

    Contextual Info: 54F 74F402 Serial Data Polynomial Generator Checker General Description Features The ’F402 expandable Serial Data Polynomial generator checker is an expandable version of the ’F401 It provides an advanced tool for the implementation of the most widely


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    74F402 CRC-16 54F402 59629059301M2A 5962-9059301M2A 5962-9059301MEA 1-Sep-2000] 54F402DMQB 5962-9059301MEA 6ap3 PDF

    Maxim date code DS2431

    Contextual Info: Rev 1; 3/08 1024-Bit, 1-Wire EEPROM for Automotive Applications The DS2431-A1 is an AEC-Q100 Grade 1 qualified version of the DS2431. The logical behavior of both versions is identical. The DS2431-A1 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256


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    1024-Bit, DS2431-A1 AEC-Q100 DS2431. 64-bit DS2431-A1 Maxim date code DS2431 PDF

    74ls1801

    Contextual Info: Signetics 74LS1802 Bit Stream Manager Serializer/Deserializer Product Specification Logic Products DESCRIPTION FEATURES The 74LS1802 Serializer/Deserializer Figure 1 incorporates speed, flexibility, and proven ISL technology into a gener­ al-purpose device that performs many of


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    74LS1802 74LS1802 16-bit 74ls1801 PDF

    Maxim date code DS2431

    Contextual Info: Rev 1; 3/08 1024-Bit, 1-Wire EEPROM for Automotive Applications The DS2431-A1 is an AEC-Q100 Grade 1 qualified version of the DS2431. The logical behavior of both versions is identical. The DS2431-A1 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256


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    1024-Bit, DS2431-A1 AEC-Q100 DS2431. 64-bit DS2431-A1 Maxim date code DS2431 PDF

    28EC20

    Abstract: eeprom ink logic 0a07h 0A21H 0A23H
    Contextual Info: DS28EC20 20Kb 1-Wire EEPROM www.maxim-ic.com GENERAL DESCRIPTION FEATURES The DS28EC20 is a 20480-bit, 1-Wire EEPROM organized as 80 memory pages of 256 bits each. An additional page is set aside for control functions. Data is written to a 32-byte scratchpad, verified, and


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    DS28EC20 20480-bit, 32-byte 64-bit CRC16\ CRC16\ 28EC20 eeprom ink logic 0a07h 0A21H 0A23H PDF

    AN9616

    Abstract: RSSI energy CR10 CR14 CR16 CRC16 HSP3824 RXCRC16
    Contextual Info: Harris Semiconductor No. AN9616 Harris Wireless Products August 1996 Programming the HSP3824 Author: John Fakatselis TM Introduction Test Port Configuration This application note serves as a firmware designers manual for the PRISM HSP3824 baseband processor. The note


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    AN9616 HSP3824 HSP3824 CRC16 CRC16 AN9616 RSSI energy CR10 CR14 CR16 RXCRC16 PDF

    28EC20

    Contextual Info: 19-6067; Rev 3; 11/11 DS28EC20 20Kb 1-Wire EEPROM GENERAL DESCRIPTION FEATURES The DS28EC20 is a 20480-bit, 1-Wire EEPROM organized as 80 memory pages of 256 bits each. An additional page is set aside for control functions. Data is written to a 32-byte scratchpad, verified, and


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    DS28EC20 20480-bit, 32-byte 64-bit 28EC20 PDF

    Contextual Info: 19-6067; Rev 4; 3/12 DS28EC20 20Kb 1-Wire EEPROM GENERAL DESCRIPTION FEATURES • The DS28EC20 is a 20480-bit, 1-Wire EEPROM organized as 80 memory pages of 256 bits each. An additional page is set aside for control functions. Data is written to a 32-byte scratchpad, verified, and


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    DS28EC20 DS28EC20 20480-bit, 32-byte 64-bit PDF

    ink cartridge electrical pinout

    Abstract: ink cartridge chip
    Contextual Info: DS2431 1024-Bit 1-Wire EEPROM www.maxim-ic.com GENERAL DESCRIPTION FEATURES The DS2431 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256 bits each. Data is written to an 8-byte scratchpad, verified, and then copied to the EEPROM memory. As a special


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    DS2431 1024-Bit DS2431 1024-bit, 64bit ink cartridge electrical pinout ink cartridge chip PDF

    CRC-16 ccitt

    Abstract: transistor 016h AB01X Hexing Test Dallas iButton DS1990A Dallas Semiconductor exor 001H 041H CRC 103
    Contextual Info: APPLICATION NOTE 27 Application Note 27 Understanding and Using Cyclic Redundancy Checks with Dallas Semiconductor iButtonTM Products INTRODUCTION The Dallas Semiconductor iButton products are a family of devices that all communicate over a single wire following a specific command sequence referred to as the


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    DS1990A DS1991 AB01X ABCDEFG0123456 ABCDEFGH01234567 CRC-16 ccitt transistor 016h AB01X Hexing Test Dallas iButton DS1990A Dallas Semiconductor exor 001H 041H CRC 103 PDF

    Contextual Info: 19-4675; Rev 9; 12/10 1024-Bit, 1-Wire EEPROM The DS2431 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256 bits each. Data is written to an 8-byte scratchpad, verified, and then copied to the EEPROM memory. As a special feature, the


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    1024-Bit, DS2431 64-bit PDF

    ink cartridge electrical pinout

    Contextual Info: DS2431 1024-Bit 1-Wire EEPROM www.maxim-ic.com GENERAL DESCRIPTION FEATURES The DS2431 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256 bits each. Data is written to an 8-byte scratchpad, verified, and then copied to the EEPROM memory. As a special


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    DS2431 1024-Bit 1024-bit, 64bit ink cartridge electrical pinout PDF

    Contextual Info: Rev 6; 8/08 1024-Bit, 1-Wire EEPROM The DS2431 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256 bits each. Data is written to an 8-byte scratchpad, verified, and then copied to the EEPROM memory. As a special feature, the four memory pages can individually be write protected or


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    1024-Bit, DS2431 64-bit DS2431 PDF

    Contextual Info: 19-5759; Rev 2; 3/12 1-Wire 4Kb EEPROM The DS24B33 is a 4096-bit, 1-Wire EEPROM organized as 16 memory pages of 256 bits each. Data is written to a 32-byte scratchpad, verified, and then copied to the EEPROM memory. The DS24B33 communicates over a single-conductor 1-Wire bus. The communication follows the standard 1-Wire protocol. Each


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    DS24B33 4096-bit, 32-byte 64-bit DS2433. 256-Bit PDF

    DS24B33

    Abstract: DS2433
    Contextual Info: 19-5759; Rev 0; 2/11 4Kb 1-Wire EEPROM with 200k Write/Erase Cycles The DS24B33 is a 4096-bit, 1-Wire EEPROM organized as 16 memory pages of 256 bits each. Data is written to a 32-byte scratchpad, verified, and then copied to the EEPROM memory. The DS24B33 communicates over a single-conductor 1-Wire bus. The communication follows the standard 1-Wire protocol. Each


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    DS24B33 4096-bit, 32-byte 64-bit DS2433. DS24B33 DS2433 PDF

    ink cartridge chip

    Abstract: AEC-Q100 DS2431 DS2431-A1 DS2431P DS2431X DS2480B P1451 polynomial TSOC 6
    Contextual Info: 19-4675; Rev 10; 3/11 1024-Bit, 1-Wire EEPROM The DS2431 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256 bits each. Data is written to an 8-byte scratchpad, verified, and then copied to the EEPROM memory. As a special feature, the


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    1024-Bit, DS2431 64-bit ink cartridge chip AEC-Q100 DS2431-A1 DS2431P DS2431X DS2480B P1451 polynomial TSOC 6 PDF

    DS2431

    Contextual Info: Rev 6; 8/08 1024-Bit, 1-Wire EEPROM The DS2431 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256 bits each. Data is written to an 8-byte scratchpad, verified, and then copied to the EEPROM memory. As a special feature, the four memory pages can individually be write protected or


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    1024-Bit, DS2431 64-bit 100-mil DS2431 PDF

    24B33

    Abstract: DS24B33
    Contextual Info: 19-5759; Rev 3; 5/12 1-Wire 4Kb EEPROM The DS24B33 is a 4096-bit, 1-Wire EEPROM organized as 16 memory pages of 256 bits each. Data is written to a 32-byte scratchpad, verified, and then copied to the EEPROM memory. The DS24B33 communicates over a single-conductor 1-Wire bus. The communication follows the standard 1-Wire protocol. Each


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    DS24B33 4096-bit, 32-byte 64-bit DS2433. 256-Bit DS24B33 24B33 PDF

    Contextual Info: DS2431 1024-Bit, 1-Wire EEPROM General Description The DS2431 is a 1024-bit, 1-Wire EEPROM chip organized as four memory pages of 256 bits each. Data is written to an 8-byte scratchpad, verified, and then copied to the EEPROM memory. As a special feature, the


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    DS2431 1024-Bit, DS2431 64-bit PDF