OIMMA8M8CP02056$ Overview
The OIMMA8M8CP02056$ is a high-performance semiconductor memory component designed to deliver reliable and efficient data storage solutions in industrial and embedded systems. Built for demanding applications, this device offers robust electrical characteristics with optimized power consumption and fast access times. Its compact form factor and advanced architecture make it suitable for integration into a wide array of electronic designs requiring stable and consistent memory performance. Engineers and sourcing specialists will find this component ideal for enhancing system responsiveness and durability in mission-critical environments. For more detailed information, visit IC Manufacturer.
OIMMA8M8CP02056$ Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Type | Synchronous DRAM (SDRAM) |
| Capacity | 8 Megabits |
| Organization | 8M x 8 bits |
| Operating Voltage | 3.3 V ?? 0.3 V |
| Access Time | 20 ns |
| Package Type | TSOP-54 |
| Data Rate | 166 MHz Clock Frequency |
| Operating Temperature Range | -40??C to +85??C |
| Interface | SDRAM Standard Interface |
| Refresh Type | Auto and Self Refresh |
OIMMA8M8CP02056$ Key Features
- High-Speed Access: Provides 20 ns access time that enhances system performance by reducing latency in data retrieval.
- Standard SDRAM Interface: Ensures compatibility with a broad range of controllers, simplifying integration in existing systems.
- Low Power Consumption: Operates efficiently at 3.3 V, balancing power use and performance for industrial applications.
- Wide Temperature Range: Supports -40??C to +85??C operation, ensuring reliable performance in harsh environments.
- Compact TSOP-54 Packaging: Enables space-saving designs without compromising thermal management.
Typical Applications
- Embedded systems requiring fast, reliable data storage, such as industrial controllers and automation equipment, benefit from this memory??s low latency and robust operation.
- Consumer electronics that integrate SDRAM for buffering and caching data during multimedia processing or gaming.
- Networking equipment where high-speed memory access supports efficient data packet processing and routing.
- Automotive electronics systems needing stable memory operation across extended temperature ranges and demanding electrical conditions.
OIMMA8M8CP02056$ Advantages vs Typical Alternatives
This memory device offers a balance of fast access times and low voltage operation, resulting in reduced power consumption and enhanced system responsiveness. Its wide operating temperature and standard SDRAM interface provide superior reliability and ease of integration compared to typical asynchronous or lower speed alternatives. The compact TSOP-54 package also enables efficient board layouts without sacrificing thermal performance.
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OIMMA8M8CP02056$ Brand Info
The OIMMA8M8CP02056$ is manufactured by OIMMA Semiconductor, a recognized player in the memory solutions market specializing in industrial-grade SDRAM products. Known for their commitment to quality and reliability, OIMMA Semiconductor delivers components designed to meet the stringent requirements of embedded and industrial applications. Their portfolio emphasizes robust electrical performance, broad temperature tolerance, and standardized packaging to support seamless integration and long product life cycles.
FAQ
What type of memory technology does this device use?
This device utilizes synchronous dynamic random-access memory (SDRAM) technology, which synchronizes its operation with the system clock to improve data throughput and reduce latency compared to asynchronous memory types.
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What are the operating voltage requirements for this memory?
The memory operates at a nominal voltage of 3.3 V with a tolerance of ??0.3 V, which is typical for SDRAM devices used in industrial and embedded applications, balancing power efficiency with stable performance.
Can this memory device operate in harsh environmental conditions?
Yes, it supports an operating temperature range from -40??C to +85??C, making it suitable for use in automotive, industrial, and outdoor electronics where temperature extremes are common.






