Infineon NOR 64 MB QPI, Parallel, SPI Flash Memory 8-Pin USON, S25FL064LABNFV040

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58,023 kr

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RS-artikelnummer:
181-8386
Tillv. art.nr:
S25FL064LABNFV040
Tillverkare / varumärke:
Infineon
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Brand

Infineon

Memory Size

64MB

Product Type

Flash Memory

Interface Type

QPI, Parallel, SPI

Package Type

USON

Pin Count

8

Organisation

8M x 8 Bit

Mount Type

Surface

Cell Type

NOR

Maximum Supply Voltage

3.6V

Minimum Supply Voltage

2.7V

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

105°C

Length

4mm

Width

4 mm

Standards/Approvals

RoHS

Height

0.55mm

Number of Words

8K

Number of Bits per Word

8

Automotive Standard

AEC-Q100

Series

S25FL064L

The Cypress FL-L Family devices are Flash Nonvolatile Memory products using: Floating Gate technology,65-nm process lithography The FL-L family 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 wide Quad I/O (QIO), and Quad Peripheral Interface (QPI) commands. In addition, there are Double Data Rate (DDR) read commands for QIO and QPI that transfer address and read data on both edges of the clock. The architecture features a Page Programming Buffer that allows up to 256-bytes to be programmed in one operation and provides individual 4 KB sector, 32 KB half block sector, 64 KB block sector, or entire chip erase. By using FL-L family devices at the higher clock rates supported, with Quad commands, the instruction read transfer rate can match or exceed traditional parallel interface, asynchronous, NOR Flash memories, while reducing signal count dramatically. The FL-L family products offer high densities coupled with the flexibility and fast performance required by a variety of mobile or embedded applications. Provides an ideal storage solution for systems with limited space, signal connections, and power. These memories offer flexibility and performance well beyond ordinary serial flash devices. They are ideal for code shadowing to RAM, executing code directly (XIP), and storing re-programmable data.

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