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ADT75ARZ
SENSOR DIGITAL -55C-125C 8SOIC
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規格
| Package | Bulk,Tube |
| ProductStatus | Active |
| SensorType | Digital, Local |
| SensingTemperature-Local | -55°C ~ 125°C |
| OutputType | I²C/SMBus |
| Voltage-Supply | 2.7V ~ 5.5V |
| Resolution | 11 b |
| Features | One-Shot, Output Switch, Programmable Limit, Shutdown Mode |
| Accuracy-Highest(Lowest) | ±2°C (±3°C) |
| TestCondition | -25°C ~ 100°C (-55°C ~ 100°C) |
| OperatingTemperature | -55°C ~ 125°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
概述
Description
The ADT75ARZ is a high-precision digital temperature sensor commonly used in various electronic applications. It is typically employed in situations where accurate temperature monitoring is crucial. This sensor operates over a wide temperature range, providing digital temperature readings via an I2C-compatible interface, which facilitates easy integration with microcontrollers and other digital systems. It is known for its low power consumption, making it suitable for battery-operated devices.
The ADT75ARZ also features a robust design that ensures reliable performance, even in challenging environmental conditions. It is capable of delivering high-resolution temperature data, which aids in precise thermal management applications. Additionally, the sensor includes programmable temperature limits for over-temperature detection, enhancing its utility in safety-critical applications.
Overall, the ADT75ARZ is valued for its accuracy, ease of use, and versatility, making it a popular choice in industries ranging from consumer electronics to industrial systems.
The ADT75ARZ also features a robust design that ensures reliable performance, even in challenging environmental conditions. It is capable of delivering high-resolution temperature data, which aids in precise thermal management applications. Additionally, the sensor includes programmable temperature limits for over-temperature detection, enhancing its utility in safety-critical applications.
Overall, the ADT75ARZ is valued for its accuracy, ease of use, and versatility, making it a popular choice in industries ranging from consumer electronics to industrial systems.
Features
The ADT75ARZ is a temperature sensor known for its precision and reliability. Here are its key features:
1. Temperature Range: It typically operates within a temperature range of -55°C to +150°C, making it suitable for a wide variety of applications.
2. Accuracy: The sensor is known for its high accuracy, often around ±0.5°C over a smaller temperature range, which is crucial for applications requiring precise temperature monitoring.
3. Digital Output: It provides a digital output, which simplifies integration with microcontrollers and other digital systems.
4. Low Power Consumption: Designed for efficiency, it consumes minimal power, making it ideal for battery-operated devices.
5. Small Package: The ADT75ARZ comes in a compact package, allowing it to be used in space-constrained environments.
6. I2C Interface: It uses an I2C communication interface, facilitating easy connectivity and data transmission with other devices or systems.
7. Programmable Features: Some versions may offer programmable alert limits and resolution settings, providing flexibility in various applications.
These features make the ADT75ARZ suitable for applications in consumer electronics, industrial systems, and other environments where accurate temperature monitoring is essential.
1. Temperature Range: It typically operates within a temperature range of -55°C to +150°C, making it suitable for a wide variety of applications.
2. Accuracy: The sensor is known for its high accuracy, often around ±0.5°C over a smaller temperature range, which is crucial for applications requiring precise temperature monitoring.
3. Digital Output: It provides a digital output, which simplifies integration with microcontrollers and other digital systems.
4. Low Power Consumption: Designed for efficiency, it consumes minimal power, making it ideal for battery-operated devices.
5. Small Package: The ADT75ARZ comes in a compact package, allowing it to be used in space-constrained environments.
6. I2C Interface: It uses an I2C communication interface, facilitating easy connectivity and data transmission with other devices or systems.
7. Programmable Features: Some versions may offer programmable alert limits and resolution settings, providing flexibility in various applications.
These features make the ADT75ARZ suitable for applications in consumer electronics, industrial systems, and other environments where accurate temperature monitoring is essential.
Package
The ADT75ARZ is available in an 8-lead SOIC (Small Outline Integrated Circuit) package.
Pinout
The ADT75ARZ is a digital temperature sensor IC with an I²C-compatible interface. It is typically housed in an 8-pin SOIC (Small Outline Integrated Circuit) package. Here is a concise breakdown of its pin count and functions:
1. VDD (Pin 8): Power supply pin. This is where the IC receives its operating voltage.
2. GND (Pin 4): Ground pin. It serves as the reference point for the power supply.
3. SDA (Pin 1): Serial Data Line. It is used for data input and output in the I²C communication protocol.
4. SCL (Pin 2): Serial Clock Line. This pin accepts the clock signal for I²C communication.
5. ALERT (Pin 3): This pin functions as an interrupt output and can signal when the temperature exceeds a certain threshold.
6. A0 (Pin 5), A1 (Pin 6), A2 (Pin 7): These are address pins that allow the user to set the I²C address of the device, enabling multiple devices to be used on the same bus.
The ADT75ARZ is used for monitoring temperature in various applications and communicates temperature data digitally using the I²C protocol.
1. VDD (Pin 8): Power supply pin. This is where the IC receives its operating voltage.
2. GND (Pin 4): Ground pin. It serves as the reference point for the power supply.
3. SDA (Pin 1): Serial Data Line. It is used for data input and output in the I²C communication protocol.
4. SCL (Pin 2): Serial Clock Line. This pin accepts the clock signal for I²C communication.
5. ALERT (Pin 3): This pin functions as an interrupt output and can signal when the temperature exceeds a certain threshold.
6. A0 (Pin 5), A1 (Pin 6), A2 (Pin 7): These are address pins that allow the user to set the I²C address of the device, enabling multiple devices to be used on the same bus.
The ADT75ARZ is used for monitoring temperature in various applications and communicates temperature data digitally using the I²C protocol.
Manufacturer
The ADT75ARZ is manufactured by ON Semiconductor, which is a global company specializing in semiconductor components. ON Semiconductor, now known as onsemi, provides a wide range of products including power and signal management, logic, discrete, and custom devices across various industries such as automotive, industrial, communications, computing, and consumer electronics.
Application
The ADT75ARZ is a digital temperature sensor used primarily in applications requiring precise temperature monitoring and control. Common application areas include environmental monitoring systems, HVAC systems, consumer electronics, industrial automation, and telecommunications equipment. Its ability to provide accurate temperature readings makes it suitable for thermal protection and regulation in sensitive equipment and systems.
Equivalent
The ADT75ARZ is a temperature sensor IC manufactured by Analog Devices. Equivalent products from other manufacturers include:
1. LM75 series by Texas Instruments or NXP.
2. TMP75 series by Texas Instruments.
3. MCP9800 by Microchip Technology.
4. STTS75 by STMicroelectronics.
These equivalents typically offer similar functionalities such as digital temperature sensing with I2C interfaces, but always check the datasheets for specific compatibility and performance characteristics.
1. LM75 series by Texas Instruments or NXP.
2. TMP75 series by Texas Instruments.
3. MCP9800 by Microchip Technology.
4. STTS75 by STMicroelectronics.
These equivalents typically offer similar functionalities such as digital temperature sensing with I2C interfaces, but always check the datasheets for specific compatibility and performance characteristics.
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