Manufacturer Part Number
LC35256FM-70UQ-TLM-E
Manufacturer
onsemi
Introduction
The onsemi LC35256FM-70UQ-TLM-E is a high-performance, low-power 256Kbit SRAM (Static Random Access Memory) device designed for a wide range of applications. It offers fast access times, low power consumption, and reliable data storage, making it a versatile choice for embedded systems, industrial automation, and consumer electronics.
Product Features and Performance
256Kbit (32K x 8) of static RAM storage
Low power consumption with standby and active modes
Fast access time of 70ns (maximum)
Wide operating voltage range of 4.5V to 5.5V
Simple and easy-to-use parallel interface
Wide operating temperature range from -40°C to +85°C
Latch-up protection and electrostatic discharge (ESD) immunity
Product Advantages
Reliable and stable data storage
Efficient power management for extended battery life
Versatile for a wide range of applications
Robust design with protection features
Key Reasons to Choose This Product
Proven reliability and long-term stability
High-performance memory solution for demanding applications
Low power consumption for energy-efficient designs
Seamless integration into various embedded systems
Quality and Safety Features
Rigorous quality control and testing
Compliance with industry standards
RoHS-compliant and lead-free manufacturing
Compatibility
The onsemi LC35256FM-70UQ-TLM-E is designed to be compatible with a wide range of microcontrollers, processors, and other digital devices that require high-performance, low-power SRAM memory.
Application Areas
Industrial automation and control systems
Embedded systems and IoT devices
Consumer electronics
Telecommunication equipment
Medical devices
Military and aerospace applications
Product Lifecycle
The onsemi LC35256FM-70UQ-TLM-E is an active product, and there are no immediate plans for its discontinuation. However, as technology evolves, customers are advised to contact our website's sales team for the latest information on availability and potential alternative or equivalent models.