Model No: W25Q80DVSNIG
Winbond Electronics W25Q80DVSNIG
Manufacturer: Winbond Electronics
SEMICON NO.: W25Q80DVSNIG
Package: 8-SOIC
Stock: In stock
Description: Memory NOR FLASH 8Mbit SPI-Quad I/O 104 MHz
SEMICON NO.: W25Q80DVSNIG
Package: 8-SOIC
Stock: In stock
Description: Memory NOR FLASH 8Mbit SPI-Quad I/O 104 MHz
Quantity :
| Mfr | Winbond Electronics |
| Product Series | SpiFlash® |
| Device Type | Serial NOR Flash Memory |
| Memory Size / Density | 8 Mbit (1 MByte) |
| Memory Organization | 1M x 8 |
| Interface Type | SPI - Quad I/O |
| Supply Voltage (VCC) | 2.7 V to 3.6 V |
| Active Read Current (Max) | 25 mA |
| Standby Current (Max) | 10 µA |
| Power-Down Current | As low as 1 µA |
| Security Features | 64-bit Unique Serial Number, OTP Security Registers |
| Architecture | Uniform 4KB sectors |
| Operating Temperature | -40°C to +85°C |
| Package | 8-SOIC |
| Mounting Type | Surface Mount |
| Compliance | RoHS Compliant |
W25Q80DVSNIG NOR Flash memory chip 8Mbit Serial
The W25Q80DVSNIG, an 8Mbit (1M x 8) Serial NOR Flash memory chip from Winbond's SpiFlash® family, is housed in a compact 8-pin SOIC surface-mount package, purpose-built to deliver optimal storage performance for space-constrained, low-power embedded systems. Supporting a 2.7V to 3.6V single-supply operating voltage, it features a standard SPI interface alongside high-performance Dual/Quad Output and Dual/Quad I/O SPI modes, with a maximum 104MHz SPI clock frequency that pushes the equivalent data transfer rate up to 208MHz in Dual I/O mode and 416MHz in Quad I/O mode, enabling fast code execution directly from flash (XIP), rapid code shadowing to RAM, and efficient storage of voice, text and parameter data. Its 4KB uniform sector architecture organizes the 8Mbit storage array into 4096 programmable 256-byte pages, supporting 4KB sector erase, 32KB block erase, 64KB block erase and full chip erase operations, with a typical 3ms page program time, over 100,000 program-erase cycles and more than 20 years of non-volatile data retention to ensure long-term data integrity.
Equipped with comprehensive write protection mechanisms including hardware write protection via the /WP pin, software write protection, top/bottom 4KB array protection, power-on reset protection and a 64-bit unique ID for device authentication, it also integrates a /HOLD pin to pause ongoing data transmission without resetting the serial communication sequence. Rated for an extended -40°C to 85°C industrial operating temperature range, it draws only 10μA in active standby mode and as low as 1μA in full power-down mode, making it a highly reliable, power-efficient storage solution for IoT edge nodes, smart home devices, automotive infotainment systems, industrial control panels, wearable electronics and consumer embedded products that demand robust, high-speed non-volatile memory performance.
Alternative SPI NOR Flash IC Chips
● GD25Q80CSIG by GigaDevice: An 8Mbit 2.7V-3.6V SPI NOR Flash in 8-SOIC package with 104MHz clock frequency, 100,000 program-erase cycles and 20-year data retention, offering direct pin-to-pin compatibility for Winbond W25Q80 drop-in replacement.
● SST25VF080B-50-4C-SAE-T by Microchip: An 8Mbit SPI NOR Flash with 50MHz clock, ultra-fast 1.5µS/Sector erase speed and 2.7V-3.6V operating voltage, optimized for low-latency embedded firmware update applications.
● MX25V8006E by Macronix: An 8Mbit low-voltage SPI NOR Flash supporting 2.3V-3.6V wide operating range, 86MHz clock frequency and industrial temperature grade, ideal for battery-powered portable and wearable embedded systems.
The W25Q80DVSNIG, an 8Mbit (1M x 8) Serial NOR Flash memory chip from Winbond's SpiFlash® family, is housed in a compact 8-pin SOIC surface-mount package, purpose-built to deliver optimal storage performance for space-constrained, low-power embedded systems. Supporting a 2.7V to 3.6V single-supply operating voltage, it features a standard SPI interface alongside high-performance Dual/Quad Output and Dual/Quad I/O SPI modes, with a maximum 104MHz SPI clock frequency that pushes the equivalent data transfer rate up to 208MHz in Dual I/O mode and 416MHz in Quad I/O mode, enabling fast code execution directly from flash (XIP), rapid code shadowing to RAM, and efficient storage of voice, text and parameter data. Its 4KB uniform sector architecture organizes the 8Mbit storage array into 4096 programmable 256-byte pages, supporting 4KB sector erase, 32KB block erase, 64KB block erase and full chip erase operations, with a typical 3ms page program time, over 100,000 program-erase cycles and more than 20 years of non-volatile data retention to ensure long-term data integrity.
Equipped with comprehensive write protection mechanisms including hardware write protection via the /WP pin, software write protection, top/bottom 4KB array protection, power-on reset protection and a 64-bit unique ID for device authentication, it also integrates a /HOLD pin to pause ongoing data transmission without resetting the serial communication sequence. Rated for an extended -40°C to 85°C industrial operating temperature range, it draws only 10μA in active standby mode and as low as 1μA in full power-down mode, making it a highly reliable, power-efficient storage solution for IoT edge nodes, smart home devices, automotive infotainment systems, industrial control panels, wearable electronics and consumer embedded products that demand robust, high-speed non-volatile memory performance.
Alternative SPI NOR Flash IC Chips
● GD25Q80CSIG by GigaDevice: An 8Mbit 2.7V-3.6V SPI NOR Flash in 8-SOIC package with 104MHz clock frequency, 100,000 program-erase cycles and 20-year data retention, offering direct pin-to-pin compatibility for Winbond W25Q80 drop-in replacement.
● SST25VF080B-50-4C-SAE-T by Microchip: An 8Mbit SPI NOR Flash with 50MHz clock, ultra-fast 1.5µS/Sector erase speed and 2.7V-3.6V operating voltage, optimized for low-latency embedded firmware update applications.
● MX25V8006E by Macronix: An 8Mbit low-voltage SPI NOR Flash supporting 2.3V-3.6V wide operating range, 86MHz clock frequency and industrial temperature grade, ideal for battery-powered portable and wearable embedded systems.