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    SRAM 2016 Search Results

    SRAM 2016 Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    MD2114A-5 Rochester Electronics LLC SRAM Visit Rochester Electronics LLC Buy
    DFE2016CKA-1R0M=P2 Murata Manufacturing Co Ltd Fixed IND 1uH 1800mA NONAUTO Visit Murata Manufacturing Co Ltd
    DFE2016CKA-2R2M=P2 Murata Manufacturing Co Ltd Fixed IND 2.2uH 1400mA NONAUTO Visit Murata Manufacturing Co Ltd
    27S03ADM/B Rochester Electronics LLC 27S03A - SRAM Visit Rochester Electronics LLC Buy
    29705/BXA Rochester Electronics LLC 29705 - SRAM Visit Rochester Electronics LLC Buy

    SRAM 2016 Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    QRMM0010

    Abstract: No abstract text available
    Text: QRMM0010 QUALIFICATION REPORT M36DR864CB/DB: 64 Mbit x16, Burst Flash Memory and 8 Mbit (x16) SRAM, 1.8V Multiple Memory Product INTRODUCTION The M36DR864CB/DB is a Multiple Memory Product which combines two memory technologies: a 64 Mbit 1.8V supply Flash memory and an 8 Mbit 1.8V supply Asynchronous SRAM. The Flash and SRAM components have separate power supplies and grounds and are distinguished by three chip enable inputs.


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    PDF QRMM0010 M36DR864CB/DB: M36DR864CB/DB M58CR064C/D QRMM0010

    AS6C2016

    Abstract: 128k x8 SRAM TSOP
    Text: OCTOBER 2007 January 2007 AS6C2016 X8 BIT SRAM LOW POWER CMOS SRAM 256K X 8 BIT LOW512K POWER CMOS FEATURES GENERAL DESCRIPTION Fast access time : 55ns Low power consumption: Operating current : 20/18mA TYP. Standby current : 2µA (TYP.) Single 2.7V ~ 5.5V power supply


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    PDF AS6C2016 20/18mA 44-pin 48-ball AS6C2016 152-bit OCTOBER/2007, 128k x8 SRAM TSOP

    SAMSUNG NOR Flash Qualification Report

    Abstract: BGA48 M29W008A QRMS9901 LGA-48
    Text: QRMS9901 QUALIFICATION REPORT M36W108A T6X-U35: 8 Mbit x8 Flash Memory and 1 Mbit (x8) SRAM Multiple Memory INTRODUCTION The M36W108A is a Multiple Memory device contains an 8 Mbit (3V) Flash memory and a 1 Mbit SRAM, both organized by 8 bits. The two components are distinguishable by use of the three chip enable lines,


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    PDF QRMS9901 M36W108A T6X-U35: M29W008A T6X-U35 SAMSUNG NOR Flash Qualification Report BGA48 QRMS9901 LGA-48

    6116 RAM

    Abstract: ic 6116 TMM2016 6116 SRAM 6116 ram 6116 6116 memory 6116 CMOS RAM 6116 static RAM chip SY2128
    Text: 2016/6116/9128 2K x 8 SRAM Page 1 of 5 2016/6116/9128 - 2048x8 bit Static RAM Description The 2016/6116 series of Static RAMs are 16,384 bit memories organized as 2,048 words by 8 bits and operates on a single +5V supply. 2016's and equivalents are generally NMOS or MOS


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    PDF 2048x8 450ns 10-100mA CY7C128 IDT6116A V61C16 VT20C19 CXK5814P TC2018 MCM2018A 6116 RAM ic 6116 TMM2016 6116 SRAM 6116 ram 6116 6116 memory 6116 CMOS RAM 6116 static RAM chip SY2128

    82497

    Abstract: cache controller intel 82496 BGT Q 900 A18 OE T10 t187 intel 82496 apic s09 290446 82489dx 82496 a82496
    Text: D Pentium Processor Family Developer’s Manual Volume 2: 82496/82497/82498 Cache Controller and 82491/82492/82493 Cache SRAM NOTE: The Pentium® Processor Family Developer’s Manual consists of three books: Pentium® Processor Order Number 241428; the


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    PDF Intel486TM 1-55512-237-X 1-55512-240-X 82497 cache controller intel 82496 BGT Q 900 A18 OE T10 t187 intel 82496 apic s09 290446 82489dx 82496 a82496

    spi flash programmer schematic

    Abstract: micro usb 8pin schematic NexFlash nx25p serial flash VHDL code for slave SPI with FPGA sample code read and write flash memory spansion ispDOWNLOAD Cable jtag cable lattice Schematic M25P S25FL
    Text: SPI Serial Flash Programming Using ispJTAG on LatticeECP/EC FPGAs October 2005 Technical Note TN1078 Introduction Like all SRAM FPGAs the LatticeECP and LatticeEC™ devices need to be configured at power-up. This configuration can be done via: 1. 2. 3.


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    PDF TN1078 1-800-LATTICE spi flash programmer schematic micro usb 8pin schematic NexFlash nx25p serial flash VHDL code for slave SPI with FPGA sample code read and write flash memory spansion ispDOWNLOAD Cable jtag cable lattice Schematic M25P S25FL

    AS6C2016

    Abstract: AS6C2016-55ZIN SRAM-128K
    Text: FEBRUARY 2008 January 2007 AS6C2016 512K X 8CMOS BIT LOW 128K X 16 BIT LOW POWER SRAMPOWER CMOS SRAM FEATURES GENERAL DESCRIPTION Fast access time : 55ns Low power consumption: Operating current : 20/18mA TYP. Standby current : 2µA (TYP.) Single 2.7V ~ 5.5V power supply


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    PDF AS6C2016 20/18mA 44-pin 48-ball AS6C2016 152-bit FEBRUARY/2008, AS6C2016-55ZIN SRAM-128K

    CY62148E

    Abstract: R1LP0108ESA-7SR
    Text: Selection Guide Low Power SRAM www.renesas.eu 2014.03 About Renesas Electronics Corporation Renesas Electronics Corporation TSE: 6723 , the world’s number one supplier of microcontrollers, is a premier supplier of advanced semiconductor solutions including microcontrollers, SoC solutions and a broad range of analog and power devices.


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    PDF R1WV6416RSD-5SI R1WV6416RSD-7SI HM6216514LTTI-5SL R10PF0003ED0700 CY62148E R1LP0108ESA-7SR

    LH51V2016

    Abstract: Pager transistor A16
    Text: PRODUCT INFORMATION LH51V2016 128K x 16 SRAM 52-BALL CSP PINOUT 52-BALL CSP DESCRIPTION The LH51V2016 is a static RAM organized as 131,072 × 16-bit which provides low-power standby mode. It is fabricated using silicon-gate CMOS process technology. TOP VIEW


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    PDF LH51V2016 52-BALL FBGA052-P-0610) I/O16) LH51V2016 16-bit I/O16 MS-J10105; Pager transistor A16

    DS60001120

    Abstract: DS60001124 DS60001130 DS60001112 DS60001108 DS60001126
    Text: PIC32MX330/350/370/430/450/470 32-bit Microcontrollers up to 512 KB Flash and 128 KB SRAM with Audio/Graphics/Touch (HMI), USB, and Advanced Analog Operating Conditions Timers/Output Compare/Input Capture • 2.3V to 3.6V, -40ºC to +105ºC, DC to 80 MHz


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    PDF PIC32MX330/350/370/430/450/470 32-bit Hz/105 MIPS32 MIPS16e 32x16 32x32 16-bit DS60001185B-page DS60001120 DS60001124 DS60001130 DS60001112 DS60001108 DS60001126

    ht8972

    Abstract: echo sound ic HT8972 PCB SURROUND ht8972 equivalent karaoke echo chip 16pin dip 5.1 surround sound diagrams audio echo ic 907-375 holtek echo h a 431 transistor
    Text: HT8972 Voice Echo Features • Operating voltage: 4.5V~5.5V · Low distortion rate - Echo mode: 1% - Surround mode: 0.2% · ADM algorithm · Low noise - Echo mode: -85dB - Surround mode: -90dB · Built-in 40Kb SRAM · Automatic reset function · 16-pin DIP/SOP package


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    PDF HT8972 -85dB -90dB 16-pin HT8972 echo sound ic HT8972 PCB SURROUND ht8972 equivalent karaoke echo chip 16pin dip 5.1 surround sound diagrams audio echo ic 907-375 holtek echo h a 431 transistor

    echo sound ic HT8972

    Abstract: HT8972
    Text: HT8972 Voice Echo Features • Low distortion rate - Echo mode: 1% - Surround mode: 0.2% · Operating voltage: 4.5V~5.5V · ADM algorithm · Low noise - Echo mode: -85dB - Surround mode: -90dB · Built-in 40Kb SRAM · Automatic reset function · 16-pin DIP/SOP package


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    PDF HT8972 -85dB -90dB 16-pin HT8972 echo sound ic HT8972

    Untitled

    Abstract: No abstract text available
    Text: PIC32MX1XX/2XX 32-bit Microcontrollers up to 128 KB Flash and 32 KB SRAM with Audio and Graphics Interfaces, USB, and Advanced Analog Operating Conditions Timers/Output Compare/Input Capture • 2.3V to 3.6V, -40ºC to +105ºC, DC to 40 MHz • Five General Purpose Timers:


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    PDF PIC32MX1XX/2XX 32-bit 16-bit MIPS32 MIPS16e 32x16 DS61168B-page

    DS61112

    Abstract: DS61121 DS61104 DS61125 DS61107 PIC32MX250F128B DS61106 DS61105 DS61124 DS61129
    Text: PIC32MX1XX/2XX 32-bit Microcontrollers up to 128 KB Flash and 32 KB SRAM with Audio and Graphics Interfaces, USB, and Advanced Analog Operating Conditions Timers/Output Compare/Input Capture • 2.3V to 3.6V, -40ºC to +105ºC, DC to 40 MHz • Five General Purpose Timers:


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    PDF PIC32MX1XX/2XX 32-bit 16-bit MIPS32® MIPS16e® 32x16 32x32 DS61168D-page DS61112 DS61121 DS61104 DS61125 DS61107 PIC32MX250F128B DS61106 DS61105 DS61124 DS61129

    Untitled

    Abstract: No abstract text available
    Text: PIC32MX1XX/2XX 32-bit Microcontrollers up to 128 KB Flash and 32 KB SRAM with Audio and Graphics Interfaces, USB, and Advanced Analog Operating Conditions Timers/Output Compare/Input Capture • 2.3V to 3.6V, -40ºC to +105ºC, DC to 40 MHz • Five General Purpose Timers:


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    PDF PIC32MX1XX/2XX 32-bit 16-bit MIPS32 MIPS16e 32x16 DS61168D-page

    DS60001194

    Abstract: PIC32MZ2048ECG124 DS60001128 DS60001232
    Text: PIC32MZ Embedded Connectivity EC Family 32-bit MCUs (up to 2 MB Live-Update Flash and 512 KB SRAM) with Audio and Graphics Interfaces, HS USB, Ethernet, and Advanced Analog Operating Conditions Advanced Analog Features • 2.2V to 3.6V, -40ºC to +85ºC, DC to 200 MHz


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    PDF PIC32MZ 32-bit 12-bit DS60001194 PIC32MZ2048ECG124 DS60001128 DS60001232

    DS60001112

    Abstract: No abstract text available
    Text: PIC32MX330/350/370/430/450/470 32-bit Microcontrollers up to 512 KB Flash and 128 KB SRAM with Audio/Graphics/Touch (HMI), USB, and Advanced Analog Operating Conditions Timers/Output Compare/Input Capture • 2.3V to 3.6V, -40ºC to +105ºC (DC to 80 MHz),


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    PDF PIC32MX330/350/370/430/450/470 32-bit 16-bit Hz/131 MIPS32 MIPS16e 32x16 a1-9859 DS60001185C-page DS60001112

    DS60001192

    Abstract: mac 3021 vt-s PIC32MZ
    Text: PIC32MZ Embedded Connectivity EC Family 32-bit MCUs (up to 2 MB Live-Update Flash and 512 KB SRAM) with Audio and Graphics Interfaces, HS USB, Ethernet, and Advanced Analog Operating Conditions Advanced Analog Features • 2.2V to 3.6V, -40ºC to +85ºC, DC to 200 MHz


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    PDF PIC32MZ 32-bit 12-bit DS60001192 mac 3021 vt-s

    LPC1778FET

    Abstract: LPC1778
    Text: LPC178x/7x 32-bit ARM Cortex-M3 microcontroller; up to 512 kB flash and 96 kB SRAM; USB Device/Host/OTG; Ethernet; LCD; EMC Rev. 2 — 27 May 2011 Objective data sheet 1. General description The LPC178x/7x is an ARM Cortex-M3 based microcontroller for embedded applications


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    PDF LPC178x/7x 32-bit LPC178x/7x LPC178X LPC1778FET LPC1778

    PIC32MX250F128B

    Abstract: DS61112 DS61107 DS61106 DS61108 DS61125 22-pin picmicro information DS61117 pic32mx220f032b DS61121
    Text: PIC32MX1XX/2XX 32-bit Microcontrollers up to 128 KB Flash and 32 KB SRAM with Audio and Graphics Interfaces, USB, and Advanced Analog Operating Conditions Timers/Output Compare/Input Capture • 2.3V to 3.6V, -40ºC to +105ºC, DC to 40 MHz ® Core: 40 MHz MIPS32 M4K


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    PDF PIC32MX1XX/2XX 32-bit 16-bit MIPS32® MIPS16e® 32x16 32x32 DS61168C-page PIC32MX250F128B DS61112 DS61107 DS61106 DS61108 DS61125 22-pin picmicro information DS61117 pic32mx220f032b DS61121

    DS60001154

    Abstract: No abstract text available
    Text: PIC32MX5XX/6XX/7XX 32-bit Microcontrollers up to 512 KB Flash and 128 KB SRAM with Graphics Interface, USB, CAN, and Ethernet Operating Conditions Timers/Output Compare/Input Capture • 2.3V to 3.6V, -40ºC to +105ºC, DC to 80 MHz Core: 80 MHz/105 DMIPS MIPS32 M4K


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    PDF PIC32MX5XX/6XX/7XX 32-bit Hz/105 MIPS32 16-bit MIPS16e 32x16 32x32 DS60001156H-page DS60001154

    transistor 2002b

    Abstract: No abstract text available
    Text: Configuration Elements & Reliability Introduction Altera's broad range of program m able logic devices incorporates four types of configuration elements: EPRO M , EEPROM , FLASH, and SRAM . To ensure the highest level of device perform ance and reliability, Altera


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    IMS B404

    Abstract: T800 sRAM 2116 imsb404 2016 RAM
    Text: Chapter 21 173 IMS B404 TRAM 32—bit transputer 2 Mbytes Size 2 mos Engineering Data Reset Analyse NotError Subsystem _ PAL SSReset SSAnalyse notSSError FEATURES GENERAL DESCRIPTION • IMST800 Transputer • 32 Kbytes of zero wait-state SRAM • 2 Mbytes of single wait-state DRAM


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    PDF 32--bit IMST800 B404-3 T800-20 B404-8 T425-25 B404-5 T800-25 IMS B404 T800 sRAM 2116 imsb404 2016 RAM

    Untitled

    Abstract: No abstract text available
    Text: IBM2520L8767 IBM Processor for ATM Resources Features pendent: one can use SRAM devices while the other uses DRAM devices. A single array of memory can be used in systems whose sus­ tained full-duplex total bandwidth requirement is less than 102Mb/s. • Optimized for server applications.


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    PDF IBM2520L8767 102Mb/s. 400Mb/s chapt07