CY62126DV30LL-70ZXI Overview
The CY62126DV30LL-70ZXI is a high-performance 128K x 8-bit low-power static random-access memory (SRAM) device optimized for industrial and embedded applications. Featuring a 3.0 V power supply and access time of 70 ns, this SRAM offers fast read/write operations with low power consumption, enhancing system efficiency and reliability. Packaged in a compact 32-pin TSOP II form factor, it supports easy integration in space-constrained designs. The device is ideal for applications requiring stable, non-volatile data storage with high endurance and fast access, ensuring robust performance in demanding environments. For detailed technical support and sourcing, visit IC Manufacturer.
CY62126DV30LL-70ZXI Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Density | 128K x 8 bits (1,048,576 bits) |
| Access Time | 70 ns |
| Operating Voltage | 3.0 V ?? 0.3 V |
| Package Type | 32-pin TSOP II |
| Standby Current (ISB1) | 10 ??A (typical) |
| Operating Current (ICC) | 30 mA (typical) |
| Input/Output Type | CMOS compatible |
| Data Retention Voltage | 2.0 V (minimum) |
| Operating Temperature Range | -40??C to +85??C |
| Interface | Asynchronous SRAM |
CY62126DV30LL-70ZXI Key Features
- Fast 70 ns access time: Enables rapid data retrieval and storage, improving overall system throughput in time-critical applications.
- Low operating voltage (3.0 V): Supports efficient power management, reducing energy consumption for battery-powered and portable devices.
- Minimal standby current: Helps extend system battery life by minimizing power draw when the device is idle.
- Compact 32-pin TSOP II package: Facilitates high-density PCB layouts and easy mounting in space-constrained industrial designs.
- Wide operating temperature range (-40??C to +85??C): Ensures reliable performance in harsh environmental conditions common in industrial settings.
- Asynchronous SRAM interface: Simplifies integration with various microcontrollers and processors without complex timing requirements.
- CMOS compatible I/O: Provides robust signal integrity and compatibility with modern digital logic levels.
CY62126DV30LL-70ZXI Advantages vs Typical Alternatives
This SRAM device offers significant advantages over typical memory alternatives by combining low power consumption with fast access speeds at a moderate 3.0 V operating voltage. Its compact TSOP II packaging enhances PCB integration without sacrificing performance. Compared to volatile memory options with higher power requirements, it delivers superior energy efficiency and robust operation across extended temperature ranges, making it highly suitable for industrial and embedded system applications.
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Typical Applications
- Embedded systems requiring fast and reliable temporary data storage, such as automotive control units and industrial controllers operating in harsh environments.
- Battery-powered handheld devices where low power consumption extends operational life without compromising speed.
- Networking equipment buffer memory, supporting rapid data packet handling and system responsiveness.
- Consumer electronics that demand compact memory solutions with high endurance and stable performance under variable temperature conditions.
CY62126DV30LL-70ZXI Brand Info
The CY62126DV30LL-70ZXI is part of a renowned family of SRAM devices designed for high reliability and efficiency. Engineered with precision manufacturing standards, this memory product offers consistent performance tailored to industrial-grade applications. The brand emphasizes quality assurance, ensuring each unit meets rigorous testing criteria for durability, low power operation, and environmental resilience. This product line is widely trusted by engineers and sourcing specialists for integrating dependable memory solutions into complex electronic systems.
FAQ
What is the typical power consumption of this SRAM during operation?
The device typically consumes around 30 mA of operating current (ICC) under normal conditions, which supports efficient power management in embedded systems. Standby current is
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