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TCN75-3.3MOA
SENSOR DIGITAL -55C-125C 8SOIC
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規格
| Part Status | Active |
| Sensor Type | Digital, Local |
| Sensing Temperature - Local | -55°C ~ 125°C |
| Output Type | I2C |
| Voltage - Supply | 2.7V ~ 5.5V |
| Resolution | 8 b |
| Features | Output Switch, Programmable Limit, Shutdown Mode, Standby Mode |
| Accuracy - Highest (Lowest) | ±3°C |
| Test Condition | 25°C ~ 100°C |
| Operating Temperature | -55°C ~ 125°C |
| Mounting Type | Surface Mount |
| Package / Case | 8-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 8-SOIC |
| Base Product Number | TCN75 |
概述
Description
The TCN75-3.3MOA is a digital temperature sensor manufactured by Microchip Technology. It falls under the TCN75 series, which is known for precision temperature sensing and digital output. This specific model, TCN75-3.3MOA, operates with a fixed power supply voltage of 3.3V. It communicates via an I2C interface, making it compatible with microcontroller systems for easy integration into various applications.
Key features include:
- Temperature range: Typically from -40°C to +125°C, suitable for a wide range of industrial and consumer applications.
- Accuracy: Offers precise temperature readings, usually within ±1°C.
- Low power consumption: Designed for energy-efficient operation, ideal for battery-powered devices.
- Programmable: Includes options for setting the temperature resolution and alert features for specific applications.
Common applications include environmental monitoring, HVAC systems, and consumer electronics, where efficient temperature measurement is crucial. Its compact size and ease of use make it a versatile choice for designers seeking reliable thermal management solutions.
Key features include:
- Temperature range: Typically from -40°C to +125°C, suitable for a wide range of industrial and consumer applications.
- Accuracy: Offers precise temperature readings, usually within ±1°C.
- Low power consumption: Designed for energy-efficient operation, ideal for battery-powered devices.
- Programmable: Includes options for setting the temperature resolution and alert features for specific applications.
Common applications include environmental monitoring, HVAC systems, and consumer electronics, where efficient temperature measurement is crucial. Its compact size and ease of use make it a versatile choice for designers seeking reliable thermal management solutions.
Features
The TCN75-3.3MOA is a digital temperature sensor featuring a 2-wire I²C interface, which makes it suitable for applications requiring precise temperature monitoring and control. Key features include:
1. Temperature Range: Operates effectively from -40°C to +125°C, catering to both industrial and consumer applications.
2. Accuracy: Offers high accuracy, typically ±1°C over the range of -25°C to +100°C.
3. Resolution: Provides a resolution of 0.5°C, which is sufficient for most temperature sensing needs.
4. Supply Voltage: Optimized for a supply voltage of 3.3V, allowing integration with low-voltage systems.
5. Low Power Consumption: Designed for low power operation, making it suitable for battery-powered devices.
6. Programmable Features: Includes a programmable thermostat functionality with user-defined upper and lower temperature limits.
7. Compact Package: Available in a small SOT-23-5 package, facilitating space-efficient designs.
8. RoHS Compliant: Environmentally friendly with compliance to RoHS standards.
These features make the TCN75-3.3MOA an ideal choice for embedded systems requiring reliable temperature measurement with minimal power usage.
1. Temperature Range: Operates effectively from -40°C to +125°C, catering to both industrial and consumer applications.
2. Accuracy: Offers high accuracy, typically ±1°C over the range of -25°C to +100°C.
3. Resolution: Provides a resolution of 0.5°C, which is sufficient for most temperature sensing needs.
4. Supply Voltage: Optimized for a supply voltage of 3.3V, allowing integration with low-voltage systems.
5. Low Power Consumption: Designed for low power operation, making it suitable for battery-powered devices.
6. Programmable Features: Includes a programmable thermostat functionality with user-defined upper and lower temperature limits.
7. Compact Package: Available in a small SOT-23-5 package, facilitating space-efficient designs.
8. RoHS Compliant: Environmentally friendly with compliance to RoHS standards.
These features make the TCN75-3.3MOA an ideal choice for embedded systems requiring reliable temperature measurement with minimal power usage.
Package
The TCN75-3.3MOA is a temperature sensor IC from Microchip Technology. It typically comes in an 8-pin small-outline IC (SOIC) package, which is a surface-mount package. This package type is designed for efficient heat dissipation and compact circuit board usage.
Pinout
The TCN75-3.3MOA is a digital temperature sensor IC. It typically comes in an 8-pin SOIC package. Here's the pin configuration and their functions:
1. VDD (Pin 1): Power supply pin. Connect to the positive supply voltage (3.3V for this variant).
2. GND (Pin 2): Ground pin. Connect to the system ground.
3. SDA (Pin 3): Serial Data Line. Used for I2C communication; it is an open-drain input/output.
4. SCL (Pin 4): Serial Clock Line. Used for I2C communication; it is an input for the clock signal.
5. OS/ALERT (Pin 5): Overtemperature Shutdown/Alert. This pin functions as an output for an overtemperature alert, which can be configured as a comparator or an interrupt.
6. A2 (Pin 6): Address Bit 2. Used to set the I2C address.
7. A1 (Pin 7): Address Bit 1. Used to set the I2C address.
8. A0 (Pin 8): Address Bit 0. Used to set the I2C address.
These pins are used for power, ground, I2C communication, temperature alert, and device addressing.
1. VDD (Pin 1): Power supply pin. Connect to the positive supply voltage (3.3V for this variant).
2. GND (Pin 2): Ground pin. Connect to the system ground.
3. SDA (Pin 3): Serial Data Line. Used for I2C communication; it is an open-drain input/output.
4. SCL (Pin 4): Serial Clock Line. Used for I2C communication; it is an input for the clock signal.
5. OS/ALERT (Pin 5): Overtemperature Shutdown/Alert. This pin functions as an output for an overtemperature alert, which can be configured as a comparator or an interrupt.
6. A2 (Pin 6): Address Bit 2. Used to set the I2C address.
7. A1 (Pin 7): Address Bit 1. Used to set the I2C address.
8. A0 (Pin 8): Address Bit 0. Used to set the I2C address.
These pins are used for power, ground, I2C communication, temperature alert, and device addressing.
Manufacturer
The TCN75-3.3MOA is manufactured by Microchip Technology Inc. Microchip Technology is a leading semiconductor company that develops and produces microcontrollers, mixed-signal, analog devices, and Flash-IP solutions. The company's products are used in a wide array of applications, providing critical components for various sectors including automotive, industrial, consumer electronics, and telecommunications. Microchip is known for its focus on innovation and quality, aiming to provide comprehensive solutions that help design engineers create optimized, efficient, and reliable electronic products.
Application
The TCN75-3.3MOA is a temperature sensor IC primarily used for temperature monitoring and control applications. Its key application areas include electronic devices requiring thermal management, HVAC systems, consumer electronics, industrial temperature control, and battery management systems. The sensor's accuracy and digital interface make it suitable for use in systems that require precise temperature readings and efficient thermal regulation.
Equivalent
The TCN75-3.3MOA is a temperature sensor. Equivalent products include:
1. LM75A from NXP
2. MCP9800 from Microchip Technology
3. DS75 from Maxim Integrated
4. TMP75 from Texas Instruments
These alternatives offer similar temperature sensing capabilities and interface options. Always verify the specifications to ensure compatibility with your application.
1. LM75A from NXP
2. MCP9800 from Microchip Technology
3. DS75 from Maxim Integrated
4. TMP75 from Texas Instruments
These alternatives offer similar temperature sensing capabilities and interface options. Always verify the specifications to ensure compatibility with your application.
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