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TCN75AVOA713
+Lista de MateriaisSENSOR DIGITAL -40C-125C 8SOIC
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FabricanteTecnologia Microchip
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Peça do Fabricante #TCN75AVOA713
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Ficha Técnica TCN75AVOA713 DataSheet
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Especificações
| Atributo | Valor |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| SensorType | Digital, Local |
| SensingTemperature-Local | -40°C ~ 125°C |
| OutputType | I²C |
| Voltage-Supply | 2.7V ~ 5.5V |
| Resolution | 11 b |
| Features | Output Switch, Programmable Resolution, Shutdown Mode, Programmable Limit |
| Accuracy-Highest(Lowest) | ±2°C |
| TestCondition | -40°C ~ 125°C |
| OperatingTemperature | -40°C ~ 125°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
Visão Geral
Description
Key features of the TCN75AVOA713 include its I2C/SMBus-compatible interface, allowing easy integration with microcontrollers and other digital systems. It offers a resolution of 9 to 12 bits, which can be configured to balance between measurement precision and power consumption. The sensor features an adjustable thermostat setpoint and supports both one-shot and continuous temperature conversion modes.
With low power consumption, the TCN75AVOA713 is ideal for battery-operated devices. It comes in a small, compact package, making it suitable for space-constrained applications. Its reliability and ease of use make it a popular choice for temperature monitoring tasks in various electronic systems.
Equivalent
1. LM75 series by Texas Instruments
2. MCP9808 by Microchip Technology
3. TMP75 series by Texas Instruments
4. DS75 series by Maxim Integrated
5. STTS75 by STMicroelectronics
These alternatives generally offer similar I²C interface functionality and temperature sensing capabilities. Always check the datasheets to ensure compatibility with your specific application requirements.
Features
1. Temperature Range: Operates from -40°C to +125°C, suitable for a wide range of applications.
2. Accuracy: Provides high accuracy, typically ±1°C from 0°C to +100°C.
3. Resolution: Offers a temperature resolution of 9-bit to 12-bit, providing precision in temperature readings.
4. Interface: Uses an I²C interface for communication, allowing for easy integration with microcontrollers and other devices.
5. Supply Voltage: Operates on a supply voltage range of 2.7V to 5.5V, making it compatible with most digital systems.
6. Low Power: Designed for low power consumption, making it suitable for battery-powered devices.
7. Programmable Features: Includes programmable features like temperature alert limits, which can be used for system protection and control.
8. Package: Available in small, space-saving packages, ideal for applications with limited space.
9. Compliance: RoHS compliant, ensuring it meets environmental and safety standards.
These features make the TCN75AVOA713 a versatile component for monitoring and managing temperature in various electronic systems.
Pinout
- Pin Count: 8 pins.
- Functions:
1. VDD: Power supply pin.
2. GND: Ground pin.
3. SDA: Serial Data Line. Used for I2C communication to transfer data between the sensor and the microcontroller.
4. SCL: Serial Clock Line. Used to synchronize the communication between the sensor and the microcontroller.
5. OS: Overtemperature Shutdown (Interrupt) output pin. It can be used as an alert for overtemperature conditions based on user-defined limits.
6. A0, A1, A2: Device address pins. These are used to set the I2C address of the device, allowing multiple sensors to be used on the same bus without address conflict.
The TCN75AVOA713 is commonly used for temperature monitoring in various electronic applications due to its accuracy and ease of interfacing with microcontrollers via the I2C protocol.
Manufacturer
Application
1. Consumer Electronics: Ensures temperature regulation in devices like laptops and smartphones.
2. Industrial Control: Monitors and manages temperatures in machinery and processes.
3. HVAC Systems: Optimizes heating, ventilation, and air conditioning performance.
4. Automotive: Monitors engine and cabin temperatures.
5. Medical Devices: Provides temperature readings for patient monitoring and diagnostics.
6. Data Centers: Ensures optimal performance and prevents overheating of servers and equipment.
Its versatility makes it ideal for any application requiring precise temperature monitoring and control.