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8-WDFN
Integrated Circuits (ICs)

SST26VF016BA-104I/MF

Obsolete
Microchip Technology

IC FLASH 16MBIT SPI/QUAD 8WDFN

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8-WDFN
Integrated Circuits (ICs)

SST26VF016BA-104I/MF

Obsolete
Microchip Technology

IC FLASH 16MBIT SPI/QUAD 8WDFN

Deep-Dive with AI

DocumentsDatasheet

Technical Specifications

Parameters and characteristics for this part

SpecificationSST26VF016BA-104I/MF
Clock Frequency104 MHz
Memory FormatFLASH
Memory InterfaceSPI - Quad I/O
Memory Organization2 M
Memory Size16 Mb
Memory TypeNon-Volatile
Mounting TypeSurface Mount
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Package / Case8-WDFN Exposed Pad
Supplier Device Package8-WDFN (5x6)
TechnologyFLASH
Voltage - Supply [Max]3.6 V
Voltage - Supply [Min]2.7 V
Write Cycle Time - Word, Page [custom]1.5 ms
Write Cycle Time - Word, Page [custom]1.5 ms

SST26VF016BEUI Series

16Mbit 2.3-3.6V Serial Quad I/O (SQI) Flash

PartMemory SizeClock FrequencyTechnologySupplier Device PackageMemory FormatMemory OrganizationVoltage - Supply [Min]Voltage - Supply [Max]Memory TypeMounting TypeOperating Temperature [Max]Operating Temperature [Min]Package / Case [y]Package / CasePackage / Case [x]Write Cycle Time - Word, Page [custom]Write Cycle Time - Word, Page [custom]Memory InterfaceGradeQualification
SOIJ / 8
Microchip Technology
16 Mb
104 MHz
FLASH
8-SOIJ
FLASH
2 M
2.7 V
3.6 V
Non-Volatile
Surface Mount
105 °C
-40 °C
5.3 mm
8-SOIC
0.209 "
1.5 ms
1.5 ms
SPI - Quad I/O
Microchip Technology
16 Mb
104 MHz
FLASH
Wafer
FLASH
2 M
2.7 V
3.6 V
Non-Volatile
85 °C
-40 °C
Die
1.5 ms
1.5 ms
SPI - Quad I/O
8-SOIC
Microchip Technology
16 Mb
104 MHz
FLASH
8-SOIC
FLASH
2 M
2.7 V
3.6 V
Non-Volatile
Surface Mount
85 °C
-40 °C
3.9 mm
8-SOIC
0.154 in
1.5 ms
1.5 ms
SPI - Quad I/O
Automotive
AEC-Q100
8-SOIC Top View
Microchip Technology
16 Mb
104 MHz
FLASH
8-SOIJ
FLASH
2 M
2.7 V
3.6 V
Non-Volatile
Surface Mount
85 °C
-40 °C
5.3 mm
8-SOIC
0.209 "
1.5 ms
1.5 ms
SPI - Quad I/O
Automotive
AEC-Q100
SOIC / 8
Microchip Technology
16 Mb
80 MHz
FLASH
8-SOIC
FLASH
2 M
2.3 V
3.6 V
Non-Volatile
Surface Mount
125 °C
-40 °C
3.9 mm
8-SOIC
0.154 in
1.5 ms
1.5 ms
SPI - Quad I/O
8-SOIC
Microchip Technology
16 Mb
80 MHz
FLASH
8-SOIC
FLASH
2 M
2.7 V
3.6 V
Non-Volatile
Surface Mount
70 °C
0 °C
5.3 mm
8-SOIC
0.209 "
1.5 ms
1.5 ms
SPI - Quad I/O
8-WDFN
Microchip Technology
16 Mb
104 MHz
FLASH
8-WDFN (5x6)
FLASH
2 M
2.7 V
3.6 V
Non-Volatile
Surface Mount
85 °C
-40 °C
8-WDFN Exposed Pad
1.5 ms
1.5 ms
SPI - Quad I/O
8-SOIC Top View
Microchip Technology
16 Mb
80 MHz
FLASH
8-SOIJ
FLASH
2 M
2.3 V
3.6 V
Non-Volatile
Surface Mount
125 °C
-40 °C
5.3 mm
8-SOIC
0.209 "
1.5 ms
1.5 ms
SPI - Quad I/O
8 USON
Microchip Technology
16 Mb
104 MHz
FLASH
8-USON (4x3)
FLASH
2 M
2.7 V
3.6 V
Non-Volatile
Surface Mount
85 °C
-40 °C
8-UDFN Exposed Pad
1.5 ms
1.5 ms
SPI - Quad I/O
8-SOIC
Microchip Technology
16 Mb
80 MHz
FLASH
8-SOIC
FLASH
2 M
2.3 V
3.6 V
Non-Volatile
Surface Mount
125 °C
-40 °C
3.9 mm
8-SOIC
0.154 in
1.5 ms
1.5 ms
SPI - Quad I/O

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$

Description

General part information

SST26VF016BEUI Series

The SST26VF016BEUI Serial Quad I/O (SQI) flash device is factory-programmed with EUI-48™ and EUI-64™ identifier and utilizes a 4-bit multiplexed I/O serial interface to boost performance while maintaining the compact form factor of standard serial flash devices. SST26VF016BEUI also support full command-set compatibility to traditional Serial Peripheral Interface (SPI) protocol. Operating at frequencies reaching 104 MHz, the SST26VF016BEUI enables minimum latency execute-in-place (XIP) capability without the need for code shadowing on an SRAM. The device’s high performance and reliability make it the ideal choice for Network Appliance, Smart Home, Wireless Connectivity, Computing, Digital TV, Smart Meter, Datacenter, \ Automotive and other Industrial applications. Further benefits are achieved with SST’s proprietary, high-performance CMOS SuperFlash® technology, which significantly improves performance and reliability, and lowers power consumption for high bandwidth, compact designs.

Documents

Technical documentation and resources