The SST41Z-800B is a versatile product that belongs to the category of static random-access memory (SRAM) chips. This high-performance SRAM chip is designed for various applications and offers unique characteristics, making it suitable for a wide range of uses.
The specifications of the SST41Z-800B include: - Capacity: 8 Megabits (1M x 8-bit organization) - Voltage: 2.7V to 3.6V operation - Speed: Fast access time as low as 10ns - Low Standby Current: 5mA maximum - Operating Temperature: -40°C to +85°C - Interface: Parallel
The detailed pin configuration of the SST41Z-800B includes the following pins: 1. Chip Enable (CE) 2. Output Enable (OE) 3. Write Enable (WE) 4. Address Inputs (A0-A19) 5. Data Inputs/Outputs (DQ0-DQ7)
The functional features of the SST41Z-800B include: - High-speed access - Low power consumption - Non-volatile data retention - Easy interfacing with microcontrollers and other digital systems
The SST41Z-800B operates based on the principles of volatile memory storage, utilizing a combination of semiconductor technology and low-power design to achieve fast and reliable data access.
The SST41Z-800B is well-suited for various application fields, including: - Industrial automation systems - Automotive electronics - Medical devices - Networking equipment - Consumer electronics
Some alternative models to the SST41Z-800B include: - SST39SF040 (4 Megabit Flash) - CY62167EV30LL (16 Megabit Low-Power SRAM) - AS6C1008 (1 Megabit Asynchronous SRAM)
In conclusion, the SST41Z-800B stands as a reliable and high-performance SRAM chip with a wide range of applications and functional features. Its specifications, advantages, and working principles make it a valuable component in various electronic systems.
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What is the SST41Z-800B?
What are the key features of the SST41Z-800B?
What are the typical applications for the SST41Z-800B?
What are the operating voltage ranges for the SST41Z-800B?
What is the maximum clock frequency supported by the SST41Z-800B?
Can the SST41Z-800B be used in automotive applications?
Does the SST41Z-800B support software and hardware protection features?
What are the temperature ranges for operation and storage of the SST41Z-800B?
Is the SST41Z-800B compatible with standard SPI interfaces?
Are there any development tools or evaluation kits available for the SST41Z-800B?