Description
The "Introduction to M4T32-BR12SH1" likely refers to a specific model or concept within a technical, scientific, or industrial context. While the exact specifics of M4T32-BR12SH1 are not clear from the name alone, it can be assumed to be a code or designation for a product, project, or technology module. Typically, such identifiers are used in engineering, manufacturing, or IT environments to denote specific versions, components, or protocols. The introduction would generally provide an overview of the M4T32-BR12SH1's purpose, functionality, key features, and applications. This could include its role in a system, how it integrates with other components, and its benefits compared to previous versions or similar items. For more detailed information, consulting specific documentation or technical resources related to M4T32-BR12SH1 would be necessary to understand its full scope and implications.
Equivalent
The M4T32-BR12SH1 is a lithium battery and crystal oscillator package primarily used with STMicroelectronics' timekeeping chips. Equivalent products may include similar battery/oscillator packages from other manufacturers that are compatible with ST's timekeeping chips, such as those from Maxim Integrated or Microchip Technology. However, exact equivalents can vary based on specific use cases and compatibility requirements, so it's crucial to check the specifications and consult with the manufacturer or a distributor for compatible alternatives.
Features
The M4T32-BR12SH1 is a lithium battery and crystal package primarily designed for use in STMicroelectronics' timekeeping devices like the M41T series. Here are its key features:
1. Battery Type: Contains a lithium battery, providing reliable power backup.
2. Battery Voltage: Typically offers a nominal voltage of 2.8 V.
3. Capacity: Offers a capacity sufficient for maintaining timekeeping functions over extended periods.
4. Integrated Crystal: Includes a 32.768 kHz crystal that aids in precise timekeeping.
5. Temperature Range: Operates over a wide temperature range, commonly from -40°C to +85°C.
6. Package: Comes in a compact package, designed to be mounted directly onto a printed circuit board.
7. Application: Used in conjunction with real-time clocks (RTCs) to provide accurate timekeeping in electronic systems.
8. Durability: Ensures long life and stability, crucial for applications requiring consistent time management.
9. Compatibility: Specifically meant for compatibility with select STMicroelectronics RTC devices.
These features make the M4T32-BR12SH1 suitable for consumer electronics, automotive, and industrial applications where maintaining accurate time is critical.
Manufacturer
The M4T32-BR12SH1 is manufactured by STMicroelectronics. STMicroelectronics is a global semiconductor company that designs, develops, manufactures, and markets a broad range of semiconductor products. The company is involved in various segments such as microcontrollers, sensors, power devices, and integrated circuits. STMicroelectronics serves a diverse set of industries including automotive, industrial, personal electronics, and communications equipment. The company is known for its innovation in technology and commitment to sustainability.
Application
The M4T32-BR12SH1 is a battery-backed SRAM supervisor module commonly used in various electronic applications. Its primary function is to maintain data integrity in SRAM by providing backup power during power failures. Key application areas include:
1. Embedded Systems: Ensures data preservation in microcontrollers and embedded designs.
2. Industrial Automation: Maintains critical data logs in PLCs and other industrial equipment.
3. Telecommunications: Preserves configuration data in network devices.
4. Medical Devices: Retains patient data and device settings.
5. Consumer Electronics: Used in devices requiring reliable memory during power interruptions.
These applications benefit from the module’s ability to provide reliable data retention and system stability.
Package
The M4T32-BR12SH1 is a lithium battery and crystal package used to provide backup power for real-time clocks and non-volatile memory. It typically comes in a compact, dual-in-line package designed for easy integration into electronic circuits, ensuring continuous power supply during power outages or system disruptions.