Tehniskie dokumenti
Specifikācija
Brand
MicrochipMemory Size
16Mbit
Interface Type
SPI
Package Type
SOIC
Pin Count
8
Organisation
2M x 8 bit
Mounting Type
Surface Mount
Cell Type
Split Gate
Minimum Operating Supply Voltage
1.65 V
Maximum Operating Supply Voltage
1.95 V
Block Organisation
Symmetrical
Length
4.9mm
Height
1.25mm
Width
3.9mm
Dimensions
4.9 x 3.9 x 1.25mm
Series
SST26
Number of Words
2M
Minimum Operating Temperature
-40 °C
Number of Bits per Word
8bit
Maximum Operating Temperature
+85 °C
Maximum Random Access Time
3ns
Produkta apraksts
SST26WF040B/080B/016B Serial Quad I/O (SQI) SuperFlash® Flash Memory
From Microchip the SST26WFxxxB family of products are Serial Quad I/O (SQI) Flash Memory devices available in 4-, 8- and 16-bit variants. These devices support full command-set compatibility with Serial Peripheral Interface (SPI) protocol and enable minimum latency Execute-in-Place (XIP) capability without the need for code shadowing on an SRAM. The SST26WFxxxB devices exhibit low power consumption, making them suitable for portable battery powered applications.
Flash Memory, Microchip
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Katrs (tiek piegadats Tubina) (bez PVN)
€ 2,299
Katrs (tiek piegadats Tubina) (Ieskaitot PVN)
5
Tehniskie dokumenti
Specifikācija
Brand
MicrochipMemory Size
16Mbit
Interface Type
SPI
Package Type
SOIC
Pin Count
8
Organisation
2M x 8 bit
Mounting Type
Surface Mount
Cell Type
Split Gate
Minimum Operating Supply Voltage
1.65 V
Maximum Operating Supply Voltage
1.95 V
Block Organisation
Symmetrical
Length
4.9mm
Height
1.25mm
Width
3.9mm
Dimensions
4.9 x 3.9 x 1.25mm
Series
SST26
Number of Words
2M
Minimum Operating Temperature
-40 °C
Number of Bits per Word
8bit
Maximum Operating Temperature
+85 °C
Maximum Random Access Time
3ns
Produkta apraksts
SST26WF040B/080B/016B Serial Quad I/O (SQI) SuperFlash® Flash Memory
From Microchip the SST26WFxxxB family of products are Serial Quad I/O (SQI) Flash Memory devices available in 4-, 8- and 16-bit variants. These devices support full command-set compatibility with Serial Peripheral Interface (SPI) protocol and enable minimum latency Execute-in-Place (XIP) capability without the need for code shadowing on an SRAM. The SST26WFxxxB devices exhibit low power consumption, making them suitable for portable battery powered applications.