Manufacturer Part Number
CY7C1620KV18-333BZXI
Manufacturer
Infineon Technologies
Introduction
The CY7C1620KV18-333BZXI is a high-speed Synchronous DDR II SRAM designed by Infineon Technologies, intended for advanced memory solutions requiring high bandwidth and reliability.
Product Features and Performance
Volatile Memory Type
Synchronous DDR II SRAM Technology
High Memory Size of 144Mbit, organized as 4M x 36
Parallel Memory Interface
High Clock Frequency of 333 MHz
Operates on a Supply Voltage of 1.7V to 1.9V
Designed for temperatures ranging from -40°C to 85°C
Surface Mount 165-LBGA Package
Provides high bandwidth and low latency
Product Advantages
Increased system performance due to high clock speed
Flexible voltage operations enhance compatibility
Large memory size suitable for complex applications
Low latency for faster data access
Enhanced durability for industrial temperature ranges
Key Technical Parameters
Memory Format: SRAM
Memory Size: 144Mbit
Clock Frequency: 333 MHz
Supply Voltage: 1.7V ~ 1.9V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package: 165-LBGA
Quality and Safety Features
Manufactured by Infineon Technologies, a leader in semiconductor solutions
Rigorous quality control and compliance with industry safety standards
Compatibility
Compatible with high-speed digital systems requiring parallel memory interface
Adaptable to various supply voltages for greater system integration
Application Areas
High-performance computing
Telecommunications
Networking equipment
Industrial systems
Advanced embedded systems
Product Lifecycle
Currently in Active product status
Not nearing discontinuation, ensuring long-term availability
Upgrades and replacements available within Infineon's extensive SRAM product line
Several Key Reasons to Choose This Product
High-speed memory improves overall system performance
Large memory capacity suitable for data-intensive applications
Operates efficiently across a wide range of temperatures
Renowned manufacturer guarantees quality and reliability
Versatile compatibility and application potential