TMP64-Q1
- Automotive Qualifications
- Temperature Options:
- AEC-Q100 Grade 1: –40 °C to 125 °C
- AEC-Q100 Grade 0 (DYA): –40 °C to 150 °C
- Silicon-based thermistor with a positive temperature coefficient (PTC)
- Linear resistance change across temperature
- 47-kΩ nominal resistance at 25 °C (R25)
- ±1% maximum (0 °C to 70 °C)
- Consistent sensitivity across temperature
- 6400 ppm/°C TCR (25 °C)
- 0.2% typical TCR tolerance across temperature range
- Fast thermal response time of 0.6 s (DEC)
- Long lifetime and robust performance
- Built-in fail-safe in case of short-circuit failures
- 0.5% typical long term sensor drift
Get started today with the Thermistor Design Tool, offering complete resistance vs temperature table (R-T table) computation, other helpful methods to derive temperature and example C-code.
Linear thermistors offer linearity and consistent sensitivity across temperature to enable simple and accurate methods for temperature conversion. Low power consumption and a small thermal mass minimize the impact of self-heating. With built-in failsafe behavior at high temperatures and powerful immunity to environmental variation, these devices are designed for a long lifetime of high performance. The small size of the TMP6 series also allows for close placement to heat sources and quick response times.
Take advantage of benefits over NTC thermistors such as no extra linearization circuitry, minimized calibration, less resistance tolerance variation, larger sensitivity at high temperatures, and simplified conversion methods to save time and memory in the processor.
The TMP64-Q1 is currently available in a 0402 footprint-compatible X1SON package and a 0603 footprint-compatible SOT-5X3 package.
기술 자료
| 상위 문서 | 유형 | 직함 | 형식 옵션 | 최신 영어 버전 다운로드 | 날짜 |
|---|---|---|---|---|---|
| * | 데이터 시트 | TMP64-Q1 ±1% 47-kΩ Automotive Grade Linear Thermistor with 0402 and 0603 Package Options datasheet (Rev. B) | PDF | HTML | 2020. 11. 2 | |
| 애플리케이션 노트 | Achieve ±1°C Accuracy or Better Across Temp. W/Low-Cost TMP6x Linear Thermistors | PDF | HTML | 2022. 11. 30 | ||
| 애플리케이션 노트 | Creating a Polynomial for TMP6 Temperature Measurements | PDF | HTML | 2022. 3. 23 | ||
| 사용 설명서 | NTC Thermistor to TMP6 Linear Thermistor Replacement Guide | PDF | HTML | 2022. 1. 10 | ||
| 애플리케이션 노트 | Component Temperature Monitoring Using Differential Temperature Measurements | PDF | HTML | 2021. 11. 10 | ||
| Application brief | How to Protect Displays with the Latest Temperature Sensing Technology | PDF | HTML | 2021. 7. 26 | ||
| Circuit design | Wide temperature range linear negative temperature coefficient (NTC) output | PDF | HTML | 2020. 12. 22 | ||
| Circuit design | Wide temperature range linear positive temperature coefficient (PTC) output | PDF | HTML | 2020. 12. 18 | ||
| 애플리케이션 노트 | TMP6X Oversampling | PDF | HTML | 2020. 10. 14 |
설계 및 개발
추가 조건 또는 필수 리소스는 사용 가능한 경우 아래 제목을 클릭하여 세부 정보 페이지를 확인하세요.
TMP6EVM — 선형 실리콘 TMP6 서미스터 평가 모듈
TMP6EVM-GUI-WINDOWS — TMP6EVM GUI WINDOWS
TMP6-THERMISTOR-DESIGN — Thermistor Design Tool
| 패키지 | 핀 | CAD 기호, 풋프린트 및 3D 모델 |
|---|---|---|
| X1SON (DEC) | 2 | Ultra Librarian |
| SOT-5X3 (DYA) | 2 | Ultra Librarian |