Category: Integrated Circuits (ICs)
Use: The DS1646P-120 is a non-volatile static RAM (NVSRAM) integrated circuit. It combines the functionality of a standard SRAM with that of an EEPROM, providing both volatile and non-volatile storage capabilities.
Characteristics: - Non-volatile storage - High-speed access - Low power consumption - Reliable data retention - Easy integration into existing systems
Package: The DS1646P-120 is available in a 28-pin DIP (Dual In-line Package) format, which allows for easy installation and replacement.
Essence: The essence of the DS1646P-120 lies in its ability to retain data even when power is removed, making it ideal for applications where data persistence is crucial.
Packaging/Quantity: Each DS1646P-120 unit is packaged individually and is available for purchase as a single unit or in bulk quantities.
The DS1646P-120 features a total of 28 pins, each serving a specific purpose. Here is a detailed pin configuration:
Advantages: - Combines volatile and non-volatile storage capabilities - Fast access time - Low power consumption - Reliable data retention - Easy integration into existing systems
Disadvantages: - Limited memory size (16 kilobits)
The DS1646P-120 utilizes a combination of SRAM and EEPROM technologies. When power is applied, the device operates as a standard SRAM, allowing for high-speed read and write operations. However, when power is removed, the integrated EEPROM ensures that the data is retained.
The non-volatile storage is achieved by utilizing a small internal battery (VBAT) that powers the EEPROM section, enabling it to maintain the stored data even in the absence of the main power supply.
The DS1646P-120 finds applications in various fields where data persistence is crucial. Some potential application areas include:
These alternative models offer different specifications to cater to specific application requirements.
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Sure! Here are 10 common questions and answers related to the application of DS1646P-120 in technical solutions:
Question: What is DS1646P-120?
Answer: DS1646P-120 is a specific model of a digital temperature sensor and real-time clock (RTC) integrated circuit.
Question: What is the purpose of DS1646P-120?
Answer: The purpose of DS1646P-120 is to accurately measure temperature and provide real-time clock functionality in various technical applications.
Question: How does DS1646P-120 measure temperature?
Answer: DS1646P-120 uses an internal temperature sensor to measure ambient temperature and provides the data through its interface.
Question: Can DS1646P-120 be used in battery-powered devices?
Answer: Yes, DS1646P-120 can be used in battery-powered devices as it has low power consumption and supports battery backup for the real-time clock.
Question: What is the communication interface supported by DS1646P-120?
Answer: DS1646P-120 supports I2C (Inter-Integrated Circuit) communication interface for easy integration with microcontrollers or other devices.
Question: Can DS1646P-120 be used in industrial applications?
Answer: Yes, DS1646P-120 is suitable for industrial applications due to its wide operating temperature range and robust design.
Question: Does DS1646P-120 require external components for operation?
Answer: DS1646P-120 requires an external crystal oscillator for accurate timekeeping but doesn't require additional components for basic functionality.
Question: Can DS1646P-120 be used for logging temperature data over time?
Answer: Yes, DS1646P-120 can be used for temperature data logging by periodically reading the temperature values and storing them in a memory device.
Question: Is DS1646P-120 compatible with popular microcontroller platforms?
Answer: Yes, DS1646P-120 is compatible with most microcontroller platforms that support I2C communication.
Question: Can DS1646P-120 be used in medical devices?
Answer: Yes, DS1646P-120 can be used in medical devices where accurate temperature measurement and timekeeping are required.
Please note that these questions and answers are general and may vary depending on specific technical requirements and application scenarios.