Images à titre indicatif uniquement
TCN75-3.3MOA
+NomenclatureSENSOR DIGITAL -55C-125C 8SOIC
-
FabricantTechnologie de micropuce
-
Pièce fabricant #TCN75-3.3MOA
-
En stock4924
365 Garantie qualité 24h/24
7*24 Garantie de service 24h/24
90-Garantie après-vente 24h/24
Garantie produit authentique
Spécifications
| Attribut | Valeur |
| PartStatus | Active |
| SensorType | Digital, Local |
| SensingTemperature-Local | -55°C ~ 125°C |
| OutputType | I2C |
| Voltage-Supply | 2.7V ~ 5.5V |
| Resolution | 8 b |
| Features | Output Switch, Programmable Limit, Shutdown Mode, Standby Mode |
| Accuracy-Highest(Lowest) | ±3°C |
| TestCondition | 25°C ~ 100°C |
| OperatingTemperature | -55°C ~ 125°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154", 3.90mm Width) |
| SupplierDevicePackage | 8-SOIC |
| BaseProductNumber | TCN75 |
Présentation
Description
This sensor is capable of measuring temperatures in a specified range and provides the data in a digital format, making it suitable for applications that require precise temperature monitoring, such as consumer electronics, industrial controls, and environmental monitoring systems. The TCN75-3.3MOA is known for its low power consumption and ease of use, given its digital communication protocol. It is often chosen for its balance of performance, cost-effectiveness, and ease of integration into existing systems.
Equivalent
1. Microchip Technology MCP9801: Offers similar temperature sensing capabilities.
2. Texas Instruments LM75A: Compatible with I²C interface and similar temperature range.
3. NXP Semiconductors LM75: Another I²C temperature sensor with similar specifications.
4. Analog Devices ADT75: Also provides digital temperature sensing capabilities.
Ensure to check specific datasheets for compatibility in your application.
Features
1. Temperature Range: It typically measures temperatures from -40°C to +125°C, making it suitable for various applications.
2. Accuracy: Offers a precise temperature reading with an accuracy of ±1°C from -25°C to +100°C.
3. Output: Provides digital output via an I²C interface, which simplifies integration with microcontrollers and processors.
4. Supply Voltage: Operates with a 3.3V supply voltage, which aligns with low-power applications.
5. Low Power Consumption: Designed for energy efficiency, it is suitable for battery-operated devices.
6. Small Package: Comes in a compact SOT-23 package, facilitating easy incorporation into small electronic devices.
7. Programmability: Features programmable resolution and alert output for over-temperature conditions, enhancing its versatility.
8. Applications: Commonly used in consumer electronics, industrial controls, and environmental monitoring systems.
These features make the TCN75-3.3MOA a reliable choice for precise and efficient temperature measurement in a range of applications.
Pinout
1. VDD: Power supply voltage input.
2. GND: Ground.
3. SDA: Serial Data line, used for I2C communication.
4. SCL: Serial Clock line, used for I2C communication.
5. OS/ALERT: Overtemperature Shutdown or ALERT output, configurable to be used as an interrupt when a temperature limit is exceeded.
6. A0: Address pin, used to set the least significant bit of the I2C address.
7. A1: Address pin, used to set the second least significant bit of the I2C address.
8. A2: Address pin, used to set the third least significant bit of the I2C address.
This device is used in temperature monitoring applications, utilizing I2C communication for data exchange with a microcontroller or other control unit.
Manufacturer
Application
1. Consumer electronics, such as smartphones and computers, for thermal management.
2. Industrial equipment for process control and environmental monitoring.
3. HVAC systems for temperature regulation and efficiency improvement.
4. Battery management systems in electric vehicles for thermal protection.
5. Data centers for server temperature monitoring to prevent overheating.
The sensor's compact size and digital interface make it suitable for integration into a variety of applications where precise temperature measurement is crucial.