Manufacturer Part Number
IS43R16160D-6TL
Manufacturer
integrated-silicon-solution
Introduction
This is a high-performance SDRAM (Synchronous Dynamic Random Access Memory) module designed for a wide range of applications that require reliable and efficient memory solutions. The IS43R16160D-6TL offers a memory capacity of 256Mbit, organized as 16M x 16, with a parallel memory interface and a clock frequency of 166 MHz.
Product Features and Performance
Volatile memory type
DRAM (Dynamic Random Access Memory) memory format
SDRAM (Synchronous Dynamic Random Access Memory) technology
256Mbit memory size
16M x 16 memory organization
Parallel memory interface
166 MHz clock frequency
15ns write cycle time (word, page)
700 ps access time
3V ~ 2.7V supply voltage
0°C ~ 70°C (TA) operating temperature range
Surface mount package with 66-TSSOP (0.400", 10.16mm Width) form factor
Product Advantages
High-performance SDRAM solution
Reliable and efficient memory module
Wide range of application suitability
Complies with industry standards
Key Reasons to Choose This Product
Exceptional performance and reliability
Compatibility with a wide range of systems and devices
Cost-effective solution for memory requirements
Proven track record of quality and durability
Quality and Safety Features
Rigorous quality control and testing procedures
Adherence to industry safety and compliance standards
Compatibility
This SDRAM module is designed to be compatible with a wide range of systems and devices that require high-performance memory solutions.
Application Areas
The IS43R16160D-6TL SDRAM module is suitable for a variety of applications, including:
Embedded systems
Industrial automation
Telecommunications equipment
Consumer electronics
and other applications that require reliable and efficient memory solutions.
Product Lifecycle
The IS43R16160D-6TL is currently not recommended for new designs, as it may be nearing discontinuation. Customers are advised to contact our website's sales team for information on any available equivalent or alternative models.