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S25FL164K0XMFI011. - 

Flash Memory, NOR, 64 Mbit, 8M x 8bit, 108 MHz, SPI, SOIC, 8 Pins

CYPRESS SEMICONDUCTOR S25FL164K0XMFI011.

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Gyártói cikkszám:
S25FL164K0XMFI011.
Rendelési kód:
2363323
Termékskála
3V Serial NOR Flash Memories
Műszaki adatlap:
(EN)
Az összes technikai dokumentum megtekintése

Termékinformáció

:
-40°C
:
85°C
:
-
:
108MHz
:
8Pins
:
8M x 8bit
:
64Mbit
:
3V Serial NOR Flash Memories
:
SOIC
:
2.7V
:
SPI
:
Each
:
3.6V
:
MSL 3 - 168 hours
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Termékáttekintés

The S25FL164K0XMFI011 is a non-volatile Flash Memory Device, connects to a host system via a serial peripheral interface (SPI). Traditional SPI single bit serial input and output (single I/O or SIO) is supported as well as optional two bit (Dual I/O or DIO) and four bit (Quad I/O or QIO) serial protocols. This multiple width interface is called SPI Multi-I/O or MIO. The SIO protocol uses Serial Input (SI) and Serial Output (SO) for data transfer. The DIO protocols use IO0 and IO1 to input or output two bits of data in each clock cycle. The write protect (WP#) input signal option allows hardware control over data protection. Software controlled commands can also manage data protection.
  • SPI Clock Polarity and Phase Modes 0 and 3
  • Command Subset and Footprint Compatible with S25FL-K
  • Normal Read (Serial), Fast Read (Serial), Dual Read and Quad Read
  • Serial-input Page Program (up to 256 Bytes)
  • Program Suspend and Resume
  • Uniform Sector Erase (4kb)
  • Uniform Block Erase (64kb)
  • Chip Erase
  • Erase Suspend and Resume
  • 100K Program-erase Cycles on Any Sector, Minimum
  • 20-year Typical Data Retention
  • Three 256-byte Security Registers with OTP Protection
  • Low Supply Voltage Protection of Entire Memory
  • Pointer-based Security Protection Feature
  • Top/Bottom Relative Block Protection Range, 4kb to All of Memory
  • 8-byte Unique ID for Each Device
  • Non-volatile Status Register Bits Control Protection Modes
  • 90nm Floating Gate Technology

Alkalmazások

Industrial, Computers & Computer Peripherals

Figyelmeztetések

Exposure to absolute maximum ratings may affect device reliability, exposure beyond absolute maximum ratings may cause permanent damage.

Társított termékek

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