CYDMX128C16-65BVXI Overview
The CYDMX128C16-65BVXI is a high-performance memory component designed for demanding industrial and computing applications. Offering a 128Mb density with a 16-bit data width, this device operates at a fast 65ns access time, ensuring reliable and efficient data handling. Its low-voltage operation and extended temperature range make it suitable for harsh environments, while the package type supports easy integration into compact system designs. Engineered for durability and precision, it meets stringent quality standards expected in industrial electronics. For more detailed information and purchasing options, visit IC Manufacturer.
CYDMX128C16-65BVXI Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Density | 128 Megabits |
| Data Width | 16 bits |
| Access Time | 65 ns |
| Operating Voltage | 3.3 V ?? 0.3 V |
| Package Type | TSOP (Thin Small Outline Package) |
| Temperature Range | -40??C to +85??C |
| Interface | Asynchronous SRAM |
| Power Consumption | Low Power Standby Mode Supported |
| Pin Count | 48 |
CYDMX128C16-65BVXI Key Features
- High-Speed Access: 65ns access time enables rapid data retrieval, reducing system latency and improving overall processing efficiency.
- Wide Data Bus: 16-bit data width supports higher throughput, beneficial in applications requiring fast data transfers and parallel processing.
- Low Voltage Operation: Designed to operate at 3.3 V, the device ensures lower power consumption and compatibility with modern low-voltage systems.
- Extended Temperature Range: Reliable performance between -40??C and +85??C makes it ideal for industrial environments with varying thermal conditions.
- Compact TSOP Package: The thin small outline package aids in space-constrained PCB designs, facilitating integration into compact industrial equipment.
- Asynchronous SRAM Interface: Simplifies timing requirements for system designers, making the device easier to incorporate into diverse control and processing architectures.
- Low Power Standby Mode: Enhances energy efficiency by minimizing power draw during idle states, extending system life and reducing cooling needs.
CYDMX128C16-65BVXI Advantages vs Typical Alternatives
This memory component offers a balanced combination of fast 65ns access time and 16-bit data width, providing superior performance compared to slower or narrower alternatives. Its low-voltage 3.3 V design reduces power consumption while maintaining industrial-grade temperature tolerance, ensuring both energy efficiency and reliability. The TSOP packaging facilitates easy integration in space-limited systems, giving it an edge over bulkier counterparts. Overall, it delivers enhanced speed, efficiency, and robustness for industrial memory applications.
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Typical Applications
- Industrial control systems requiring fast, reliable SRAM for real-time data processing and temporary storage under harsh temperature conditions.
- Embedded computing devices where low voltage and quick access memory support efficient system operation and power savings.
- Networking equipment that demands high throughput and stable memory performance to maintain data packet buffering and routing.
- Automotive electronics with stringent temperature and power requirements benefiting from robust and compact memory modules.
CYDMX128C16-65BVXI Brand Info
The CYDMX128C16-65BVXI is part of a product line designed by a reputable semiconductor manufacturer specializing in industrial-grade memory solutions. This product reflects the brand??s commitment to delivering reliable, high-performance components tailored for demanding applications. With extensive quality control and support, the brand ensures that each unit meets rigorous standards for durability and consistency, making it a preferred choice for system designers and sourcing specialists in industrial electronics.
FAQ
What is the primary use case for this memory device?
This memory device is primarily used in industrial and embedded systems requiring fast, reliable SRAM with low power consumption and wide operating temperature ranges. Its asynchronous interface and 16-bit data width make it well-suited for control systems, networking equipment, and automotive electronics.
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