onsemi_NM93CS06EN
original

onsemi
NM93CS06EN

774-NM93CS06EN
PDF Datasheet
IC EEPROM 256 Bit 1MHZ 8DIP

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Tech Specifications

Package/Case
DIP
Frequency
1MHz
Lead Free
Contains Lead
Max Operating Temperature
85°C
Memory Size
256b
Memory Type
Non-Volatile, , EEPROM
Min Operating Temperature
-40°C
Mount
Through Hole
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NM93CS06EN Description

NM93CS06EN Description

The NM93CS06EN is an EEPROM memory IC chip manufactured by onsemi, designed for applications requiring reliable and efficient data storage. This 256-bit EEPROM device is organized as 16 words of 16 bits each and features a Microwire memory interface, making it suitable for various embedded systems and industrial applications. The NM93CS06EN operates within a supply voltage range of 4.5V to 5.5V and supports a clock frequency of 1 MHz, ensuring fast and stable data transfer. It is housed in a through-hole package, specifically an 8DIP tube, and is rated for a moisture sensitivity level (MSL) of 1, indicating it is unaffected by moisture and suitable for a wide range of environmental conditions.

NM93CS06EN Features

  • Memory Size and Organization: The NM93CS06EN offers a 256-bit EEPROM memory size, organized as 16 words of 16 bits each. This configuration provides a compact and efficient memory solution for applications with limited memory requirements.
  • Microwire Interface: The Microwire memory interface allows for simple and efficient communication with the host system, reducing the complexity and cost of the overall design.
  • Fast Write Cycle Time: With a write cycle time of 10ms per word or page, the NM93CS06EN ensures quick data storage and retrieval, enhancing the performance of systems that require frequent data updates.
  • Wide Operating Voltage Range: The NM93CS06EN operates within a supply voltage range of 4.5V to 5.5V, making it compatible with a variety of power supply configurations and ensuring reliable performance across different operating conditions.
  • Through-Hole Mounting: The through-hole mounting type provides robust mechanical stability and is ideal for applications where physical durability and reliability are critical.
  • Moisture Sensitivity Level: Rated at MSL 1 (Unlimited), the NM93CS06EN is unaffected by moisture, making it suitable for use in a wide range of environments, including those with high humidity.
  • Obsolete Status: While the NM93CS06EN is marked as obsolete, it remains a reliable and cost-effective solution for legacy systems and applications where its specific features are required.

NM93CS06EN Applications

The NM93CS06EN is well-suited for a variety of applications that require non-volatile memory storage with a simple and efficient interface. Some specific use cases include:

  • Embedded Systems: Ideal for embedded systems where compact memory solutions are needed, such as microcontroller-based applications, IoT devices, and industrial control systems.
  • Data Logging: Suitable for data logging applications where frequent data updates and reliable storage are essential, such as environmental monitoring systems and industrial sensors.
  • Configuration Storage: Can be used to store configuration data in systems that require persistent memory, ensuring that critical settings are retained even during power loss.
  • Firmware Storage: Provides a reliable storage solution for firmware in embedded devices, ensuring that the device's operational code is securely stored and easily accessible.

Conclusion of NM93CS06EN

The NM93CS06EN is a robust and reliable EEPROM memory IC chip that offers a compact and efficient memory solution for various applications. Its Microwire interface, fast write cycle time, and wide operating voltage range make it an ideal choice for embedded systems, data logging, and configuration storage. Despite its obsolete status, the NM93CS06EN remains a cost-effective and dependable option for legacy systems and applications where its specific features are required. With its through-hole mounting and moisture sensitivity level of 1, the NM93CS06EN ensures durability and reliability in a wide range of environmental conditions, making it a valuable component in the electronics industry.

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