圖片僅供參考
103HT
+物料清單NTC Thermistors 10kohm 2%
-
製造商閃米特
-
製造商部分 #103HT
-
數據表 103HT DataSheet
-
有存貨21887
365 天品質保證
7*24 小時服務保證
90-日售後保障
正品保證
規格
| 屬性 | 價值 |
| Packaging | MouseReel |
| Standard Pack Qty | 3000 |
概述
Description
Key features:
- Temperature Resistance: Withstands up to 180°C (356°F) continuously and short-term peaks of 250°C (482°F).
- Strength: Offers high mechanical strength and chemical resistance, ideal for metal, ceramic, and composite bonding.
- Applications: Used in aerospace, automotive, and electronics for bonding components exposed to high heat (e.g., exhaust systems, circuit boards).
- Curing: Typically requires heat curing for optimal performance.
For precise details, consult the manufacturer’s datasheet, as formulations may vary.
Equivalent
- AD822HT (Analog Devices)
- OPA454 (Texas Instruments)
- LT1013HT (Linear Technology)
- MAX9944 (Maxim Integrated)
These alternatives offer similar high-temperature performance (up to 175°C or higher) and are suitable for harsh environments. Verify specifications for exact compatibility.
Pinout
Pin Functions:
1. VCC (Power Supply): Typically 3.3V or 5V.
2. GND (Ground): Connects to the circuit ground.
3. OUT (Signal Output): Provides an analog voltage proportional to temperature.
It functions as a negative temperature coefficient (NTC) thermistor, meaning resistance decreases as temperature rises. Often used in Arduino and other microcontroller projects for basic temperature monitoring.
Manufacturer
Honeywell is recognized for reliability and innovation, serving industries like aerospace, oil & gas, and manufacturing. Their products often meet stringent industry standards, making them a trusted supplier in critical applications.
Application
1. Automotive – Monitoring exhaust gas, engine, and cabin temperatures.
2. Industrial – Temperature regulation in furnaces, heaters, and machinery.
3. Aerospace – High-temperature monitoring in engines and avionics.
4. Appliances – Ovens, water heaters, and HVAC systems.
5. Energy – Thermal management in power plants and renewable energy systems.
Its stability at high temperatures (typically up to 300°C) makes it ideal for demanding environments.