OIMMA8MBHP01920$ Overview
The OIMMA8MBHP01920$ is a high-performance semiconductor component designed for industrial and commercial electronic applications. Engineered to deliver reliable operation under diverse environmental conditions, it offers a balance of power efficiency, precision, and integration flexibility. Its robust architecture supports demanding workloads, making it ideal for use in complex systems requiring stable and consistent performance. Sourcing specialists and design engineers will appreciate its optimized specifications that enhance system reliability and reduce maintenance needs. For more details, visit the IC Manufacturer website.
OIMMA8MBHP01920$ Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 3.3 V ?? 5% |
| Maximum Operating Temperature | 85??C |
| Package Type | QFN 48-pin |
| Memory Capacity | 8 MB |
| Interface | SPI (Serial Peripheral Interface) |
| Data Transfer Rate | Up to 50 MHz |
| Power Consumption (Active) | 120 mW |
| Retention Time | 10 years |
| Data Endurance | 100,000 cycles |
| ESD Protection | ??4 kV Human Body Model |
OIMMA8MBHP01920$ Key Features
- High memory capacity: Provides 8 MB storage to support complex data handling and reduce the need for external memory components, streamlining system design.
- Optimized SPI interface: Enables fast data communication at up to 50 MHz, improving overall system responsiveness and throughput.
- Low power consumption: Operates efficiently at 120 mW active power, extending device lifespan and reducing thermal management requirements.
- Robust environmental tolerance: Rated for operation up to 85??C, ensuring dependable performance in industrial temperature ranges.
- Long data retention and endurance: Guarantees reliable data storage for up to 10 years with 100,000 write cycles, suitable for long-term applications.
Typical Applications
- Embedded systems in industrial automation requiring stable memory storage and fast interface communication with microcontrollers.
- Data logging modules where extended data retention and endurance are critical for maintaining historical records.
- Consumer electronics designs demanding compact memory with low power consumption for portable devices.
- Networking equipment that benefits from high-speed SPI interfacing for efficient data transfer and minimal latency.
OIMMA8MBHP01920$ Advantages vs Typical Alternatives
This device offers a superior balance of memory size, speed, and power efficiency compared to typical alternatives. Its 8 MB capacity and high-speed SPI interface enable faster data access and reduced system complexity. Enhanced data retention and endurance improve reliability over time, while its tolerance for industrial temperature ranges ensures stable operation in harsh environments. These factors make it a preferred choice for demanding industrial and commercial applications.
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OIMMA8MBHP01920$ Brand Info
The OIMMA8MBHP01920$ is a product developed by a leading semiconductor manufacturer recognized for delivering high-quality memory components optimized for industrial and embedded applications. This brand is well-known in the electronics industry for innovation, robust design, and adherence to strict quality standards. Their products are widely used across sectors such as automation, consumer electronics, and networking, trusted for their reliability and performance.
FAQ
What is the typical operating voltage range for this product?
The product operates at a nominal voltage of 3.3 V with a tolerance of ??5%, ensuring compatibility with most standard logic levels used in embedded systems and industrial controllers.
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How does the SPI interface improve performance?
The SPI interface supports clock speeds up to 50 MHz, enabling rapid data transfer between the memory device and host controller. This reduces communication latency and enhances system throughput.
What environmental conditions can this device withstand?
It is rated to operate reliably at temperatures up to 85??C, making it suitable for industrial environments where elevated temperatures are common and thermal stability is required.
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Can this memory component be used in battery-powered devices?
Yes, its low power consumption of approximately





