Allicdata Part #: | DS1706REUA-ND |
Manufacturer Part#: |
DS1706REUA |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC MICROMONITOR 3.3V 20% 8-USOP |
More Detail: | Supervisor Push-Pull, Totem Pole 1 Channel 8-uMAX |
DataSheet: | DS1706REUA Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | MicroMonitor™ |
Packaging: | Tube |
Part Status: | Obsolete |
Type: | Simple Reset/Power-On Reset |
Number of Voltages Monitored: | 1 |
Output: | Push-Pull, Totem Pole |
Reset: | Active Low |
Reset Timeout: | 130 ms Minimum |
Voltage - Threshold: | 2.63V |
Operating Temperature: | -40°C ~ 85°C (TA) |
Mounting Type: | Surface Mount |
Package / Case: | 8-TSSOP, 8-MSOP (0.118", 3.00mm Width) |
Supplier Device Package: | 8-uMAX |
Base Part Number: | DS1706 |
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The PMIC-Supervisors category of components refers to a class of integrated circuits that are designed specifically for system monitoring, power management, and power-on reset functionality. The DS1706REUA device from Maxim Integrated is a typical example of such components, and provides a robust feature set in a vastly versatile form. In this article, we will discuss the DS1706REUA’s application field and working principle.
The DS1706REUA is designed for applications that require basic power-on reset and monitoring functions. It provides users with a safe, reliable way to monitor power supply voltages and conditions in order to guard against unexpected or out of range levels. The device includes an integrated voltage-output comparator, a differential amplifier, and a power-on reset signal to signal when the supply voltage is out of range of the prescribed limits. It also features a user-programmable trip-point voltage reference, which is used to accurately measure supply voltage levels and provide an output signal when the system’s power supply reaches an unexpected level. Additionally, the device provides advanced features such as precision temperature compensation for improved accuracy and ease-of-use in hot and variable temperature environments.
To facilitate system monitoring, the DS1706REUA includes a rich set of I/O pins that can be used to interface with a wide variety of external control and input signals. The pinout includes four general-purpose I/O signals, four dedicated dual-gate drive pins, and three dedicated single-gate drive signals. In addition, the device features a dedicated push-button reset input that allows manual reset of the supply voltage, as well as an open-drain output signal to indicate when the voltage is out of range. This flexible I/O architecture supports a wide range of applications and allows for a high level of integration and operational flexibility.
On the inside, the DS1706REUA leverages a combination of on-chip charge pumps and an innovative analog control system to provide advanced performance and power saving features. The device’s charge pumps reduce the power consumption of the external voltage regulator, while the integrated analog control system serves to regulate the power supply voltages and maintain system stability. The DS1706REUA also includes an advanced power-on reset detection circuit that is designed to detect and respond to sudden voltage drops. This circuit works by monitoring the external voltage levels and then issuing a reset command when the voltage drops below a certain threshold level, thus minimizing the risk of unexpected hardware events caused by sudden voltage drops.
To sum up, the DS1706REUA is a versatile and capable integrated circuit that is ideally suited for system monitoring, power management, and power-on reset applications. It provides excellent performance, robust features, low power consumption, and a versatile I/O architecture that make it an excellent choice for a wide range of applications and system designs. Beyond simply monitoring and regulating the power supply voltages, this device can also be used to generate reset signals due to voltage fluctuations, maintain system stability, and offer enhanced protection and reliability in even the most demanding environments.
The specific data is subject to PDF, and the above content is for reference
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