사양
| 속성 | 가치 |
| Package / Case | Tape & Reel (TR),Cut Tape (CT),Bulk |
| Series | Automotive, AEC-Q100 |
| Part Status | Active |
| Sensor Type | Analog, Local |
| Sensing Temperature - Local | -50°C ~ 150°C |
| Output Type | Analog Voltage |
| Voltage - Supply | 2.2V ~ 5.5V |
| Resolution | 10.9mV/°C |
| Accuracy - Highest(Lowest) | ±2.7°C |
| Test Condition | 40°C ~ 150°C |
| Operating Temperature | -50°C ~ 150°C |
| Mounting Type | Surface Mount |
개요
Description
The LMT86QDCKRQ1 is a precision analog temperature sensor produced by Texas Instruments. It is designed to provide accurate temperature readings over a wide operating range, making it suitable for various applications such as automotive, industrial, and consumer electronics. The sensor operates on a simple analog voltage output, which is linearly proportional to the sensed temperature, allowing for easy integration with microcontrollers and other analog-to-digital converters.
Key features of the LMT86QDCKRQ1 include a low power consumption, wide supply voltage range, and high accuracy. The sensor typically operates within a temperature range of -50°C to 150°C, with an accuracy of ±0.4°C at 30°C. Its low quiescent current makes it ideal for battery-powered applications. The sensor is typically packaged in a small and compact SC70-5 surface-mount package, which helps in saving space on printed circuit boards.
Overall, the LMT86QDCKRQ1 is valued for its high precision, reliability, and ease of use in temperature monitoring and control systems.
Key features of the LMT86QDCKRQ1 include a low power consumption, wide supply voltage range, and high accuracy. The sensor typically operates within a temperature range of -50°C to 150°C, with an accuracy of ±0.4°C at 30°C. Its low quiescent current makes it ideal for battery-powered applications. The sensor is typically packaged in a small and compact SC70-5 surface-mount package, which helps in saving space on printed circuit boards.
Overall, the LMT86QDCKRQ1 is valued for its high precision, reliability, and ease of use in temperature monitoring and control systems.
Equivalent
The LMT86QDCKRQ1 is a precision analog temperature sensor. Equivalent products include:
1. LM35: An analog temperature sensor with similar temperature range.
2. TMP36: A low-voltage, precision centigrade temperature sensor.
3. MCP9700/MCP9701: Analog temperature sensors from Microchip.
4. ADT7410: A high accuracy digital temperature sensor (for digital applications).
5. NTC Thermistors: Depending on the application, certain NTC thermistors can be used as alternatives with appropriate circuitry.
Always verify compatibility with your application's specifications.
1. LM35: An analog temperature sensor with similar temperature range.
2. TMP36: A low-voltage, precision centigrade temperature sensor.
3. MCP9700/MCP9701: Analog temperature sensors from Microchip.
4. ADT7410: A high accuracy digital temperature sensor (for digital applications).
5. NTC Thermistors: Depending on the application, certain NTC thermistors can be used as alternatives with appropriate circuitry.
Always verify compatibility with your application's specifications.
Features
The LMT86QDCKRQ1 is a precision analog temperature sensor designed by Texas Instruments. It offers a high level of accuracy with a linear output voltage that is inversely proportional to temperature, making it suitable for a wide range of applications. Key features include:
1. Accuracy and Precision: It provides high accuracy with a typical error of ±0.4°C at 30°C and maintains precision over a wide temperature range from -50°C to 150°C.
2. Low Power Consumption: The sensor operates with a low supply current, typically around 5.4 µA, making it energy-efficient for battery-powered applications.
3. Wide Supply Voltage Range: It functions effectively with a supply voltage range from 2.2V to 5.5V.
4. Fast Response Time: The sensor has a quick thermal response due to its small package size.
5. Compact Package: Available in a small SC70 package, which aids in space-saving designs.
6. Automotive Grade: The LMT86QDCKRQ1 is AEC-Q100 qualified for automotive applications, ensuring reliability under harsh conditions.
These features make it a versatile choice for applications such as automotive, consumer electronics, and industrial temperature monitoring.
1. Accuracy and Precision: It provides high accuracy with a typical error of ±0.4°C at 30°C and maintains precision over a wide temperature range from -50°C to 150°C.
2. Low Power Consumption: The sensor operates with a low supply current, typically around 5.4 µA, making it energy-efficient for battery-powered applications.
3. Wide Supply Voltage Range: It functions effectively with a supply voltage range from 2.2V to 5.5V.
4. Fast Response Time: The sensor has a quick thermal response due to its small package size.
5. Compact Package: Available in a small SC70 package, which aids in space-saving designs.
6. Automotive Grade: The LMT86QDCKRQ1 is AEC-Q100 qualified for automotive applications, ensuring reliability under harsh conditions.
These features make it a versatile choice for applications such as automotive, consumer electronics, and industrial temperature monitoring.
Pinout
The LMT86QDCKRQ1 is a precision analog temperature sensor from Texas Instruments. It comes in a small SOT-23 package with 3 pins. The pin functions are as follows:
1. VOUT (Pin 3): This is the output pin for the analog voltage that varies with temperature. The voltage output is inversely proportional to the temperature, meaning the output decreases as the temperature increases.
2. GND (Pin 2): This is the ground pin and serves as the reference point for the output voltage. It is connected to the negative supply of the circuit.
3. VS (Pin 1): This is the supply voltage pin. It is connected to a positive voltage supply to power the sensor. The typical supply voltage range is from 2.2 V to 5.5 V.
The device is often used in applications that require precise temperature measurements and operates over a wide temperature range, making it suitable for automotive and industrial environments.
1. VOUT (Pin 3): This is the output pin for the analog voltage that varies with temperature. The voltage output is inversely proportional to the temperature, meaning the output decreases as the temperature increases.
2. GND (Pin 2): This is the ground pin and serves as the reference point for the output voltage. It is connected to the negative supply of the circuit.
3. VS (Pin 1): This is the supply voltage pin. It is connected to a positive voltage supply to power the sensor. The typical supply voltage range is from 2.2 V to 5.5 V.
The device is often used in applications that require precise temperature measurements and operates over a wide temperature range, making it suitable for automotive and industrial environments.
Manufacturer
The LMT86QDCKRQ1 is manufactured by Texas Instruments (TI). Texas Instruments is a global semiconductor company that designs and manufactures a range of analog and embedded processing products. It is known for its innovation in the electronics industry and serves a multitude of sectors, including automotive, industrial, personal electronics, communications, and enterprise systems. TI focuses on developing technologies that enhance electronic systems with its broad portfolio of products, which includes amplifiers, data converters, sensors, microcontrollers, and processors, among others.
Application
The LMT86QDCKRQ1, a precision analog temperature sensor, is commonly used in various applications due to its accuracy and low power consumption. Key areas include automotive systems for monitoring engine and cabin temperatures, consumer electronics like smartphones and wearables for thermal management, and industrial applications for process control and safety. It's also employed in healthcare devices for patient monitoring and environmental monitoring systems. Its small size and wide temperature range make it suitable for integration into compact and portable devices.
Package
The LMT86QDCKRQ1 is packaged in a SC70, also known as SOT-323, which is a small, surface-mount package type commonly used for integrated circuits.