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  • TechBrief: Using SRAM with a PIC16CXX
    There are applications where a significant amount of data memory is required beyond what is in the micro-controller. For example, buffering communications data, creating large volatile tables and arrays. One interesting application is voice storage and playback. Some applications require relatively
  • Using External RAM with PIC17CXX Devices
    This Technical Brief shows how to connect a PIC17CXX device to external memory. It also provides instructions and calculations to help determine which speeds of SRAM work with which frequency crystal.
  • | Electronics Industry News for EEs & Engineering Managers
    for Quad Data Rate SRAM IBM to disclose details of new photoresist for 0.10-micron processing Cambridge Silicon Radio demonstrates single-chip Bluetooth radio IC Chip capacity is so tight 'overshooting' isn't likely in 2000 ST Micro teams with Rise Technology to tackle Internet appliance market Japanese
  • ADC1000-USB A/D Converter: Serial Port Interface Communications and Control Information
    of external SRAM. Due to memory mapping and paging constraints, only 96K of the external SRAM is useable. The list of commands and the microcode version number used when each was introduced are show in the table on the following page. All commands consist of an ADCII character passed over the serial
  • Downloading HEX Files to PIC16F87X PICmicro (R) Microcontrollers
    The release of the PIC16F87X devices introduces the first mid-range family of devices from Microchip Technology that has the capability to read and write to internal program memory. This family has FLASH-based program memory, SRAM data memory and EEPROM data memory. The FLASH program memory allows
  • ADC1000 OEM Data Sheet
    speed 8051, combined with an USB ASIC. Program code and data coefficients are stored in external E2PROM, which are loaded at boot-up via the I2C bus. The microcontroller has 8K of internal SRAM and 128K of external SRAM. Due to memory mapping and paging constraints, only 96K of the external SRAM
  • MSP430 TM FRAM Technology - How To and Best Practices
    FRAM is a non-volatile memory technology that behaves similar to SRAM while enabling a whole host of new applications, but also changing the way firmware should be designed. This application report outlines the how to and best practices of using FRAM technology in MSP430 from an embedded software
  • | Electronics Industry News for EEs & Engineering Managers
    Micron decides to exit SRAM and TCAM markets Micron Technology Inc. on Friday confirmed that the memory chipmaker is suspending further production of SRAMs and Ternary Content Addressable Memories (TCAMs) as part of its cost reduction effort. DAC to concentrate on low power issues MANHASSET, N.Y.

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