

Winbond Electronics Corporation W25Q32FVSSIP/REEL
Manufacturer No:
W25Q32FVSSIP/REEL
Tiny WHSLManufacturer:
Utmel No:
2736-W25Q32FVSSIP/REEL
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W25Q32FVSSIP/REEL datasheet pdf and USB Flash Drives product details from Winbond Electronics Corporation stock available at Utmel
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- TypeParameter
- EU RoHSCompliant
- ECCN (US)3A991.b.1.a
- AutomotiveNo
- PPAPNo
- Cell TypeNOR
- Chip Density (bit)32M
- Block OrganizationSymmetrical
- Location of Boot BlockTop|Bottom
- Address Bus Width (bit)24
- Number of Bits/Word (bit)8
- Number of Words4M
- ProgrammabilityYes
- Timing TypeSynchronous
- Max. Access Time (ns)8.5
- Maximum Erase Time (S)50/Chip
- Maximum Programming Time (ms)3/Page
- Interface TypeSerial (SPI, Dual SPI, Quad SPI)
- Minimum Operating Supply Voltage (V)2.7
- Typical Operating Supply Voltage (V)3|3.3
- Maximum Operating Supply Voltage (V)3.6
- Programming Voltage (V)2.7 to 3.6
- Operating Current (mA)20
- Program Current (mA)25
- Minimum Operating Temperature (°C)-40
- Maximum Operating Temperature (°C)85
- Supplier Temperature GradeIndustrial
- Command CompatibleYes
- ECC SupportNo
- Support of Page ModeNo
- MountingSurface Mount
- Package Height1.8
- Package Width5.28
- Package Length5.28
- PCB changed8
- Standard Package NameSOP
- Supplier PackageSOIC
- Lead ShapeGull-wing
- Part Status
Parts can have many statuses as they progress through the configuration, analysis, review, and approval stages.
Obsolete - Pin Count
a count of all of the component leads (or pins)
8 - Architecture
In electronic components, the parameter "Architecture" refers to the overall design and structure of the component. It encompasses the arrangement of internal components, the layout of circuitry, and the physical form of the component. The architecture of an electronic component plays a crucial role in determining its functionality, performance, and compatibility with other components in a system. Different architectures can result in variations in power consumption, speed, size, and other key characteristics of the component. Designers often consider the architecture of electronic components carefully to ensure optimal performance and integration within a larger system.
Sectored - Sector Size
Sector size in electronic components refers to the minimum unit of data that can be read or written to the storage device, such as a hard drive or solid-state drive. It represents the smallest amount of data that can be accessed at a time within a storage device. The sector size is typically measured in bytes, with common sizes being 512 bytes or 4 kilobytes.Having a larger sector size can improve the efficiency of data storage and retrieval processes, as it reduces the overhead associated with accessing and managing smaller units of data. However, the choice of sector size can also impact the overall performance and compatibility of the storage device with different systems and applications. It is important to consider the sector size when configuring storage devices and optimizing data access speeds.
4Kbyte x 1024 - Page Size
In electronic components, "Page Size" refers to the amount of data that can be stored or accessed in a single page of memory. It is a crucial parameter in memory devices such as flash memory, where data is organized into pages for efficient reading and writing operations. The page size determines the granularity at which data can be written or read from the memory, impacting the speed and efficiency of data transfers. Choosing the appropriate page size is important for optimizing performance and storage capacity in electronic devices.
256byte - Boot Block
The "Boot Block" in electronic components refers to a specific section of memory that is typically used in flash memory devices. It is a small portion of memory that contains essential code and data required for the device to boot up or initialize properly. The Boot Block is usually located at the beginning of the memory space and is designed to be read-only to ensure its integrity and prevent accidental corruption.During the boot-up process, the microcontroller or processor accesses the Boot Block to execute the initial instructions needed to start the device. This section often contains bootloader code, configuration settings, and other critical information necessary for the device to function correctly. By isolating this essential data in a dedicated Boot Block, manufacturers can ensure the reliability and security of the boot process in electronic components.
Yes