제품 카테고리
- 서미스터 18
- PCB 마운트 퓨즈 홀더 27
- 배선 하니스 4
- 블레이드 퓨즈 홀더 17
- 온도 조절기 46
- 전기 퓨즈 14
- 열 회로 차단기 20
- 퓨즈 박스 홀더 36
- 온도 센서 59
- 열 스위치 64
- 자동차 퓨즈 19
- 퓨즈를 볼트로 낮추십시오 7
- 온도 퓨즈 32
- 표면 마운트 퓨즈 12
제품 태그
알루미늄 쉘 PTC 히터
기갑 열전대 센서
블레이드 퓨즈 홀더
자동차 블레이드 퓨즈
자동차 퓨즈
세라믹 PTC 히터
세라믹 튜브 퓨즈
회로 차단기
디스크 온도 조절 장치
Ds18b20 온도 센서
전기 퓨즈
고속/지속형 퓨즈
퓨즈 박스 홀더
유리관 퓨즈
인라인 퓨즈 홀더
스냅 디스크 온도 조절 장치 제한
미니 회로 차단기
모터 과부하 보호 장치
모터 열 보호
NTC 센서
NTC 서미스터 센서
PCB 마운트 퓨즈 홀더
PPTC 재 정착성 퓨즈
PT100 온도 센서
PTC 히터
PTC 서미스터
센서 커넥터 하네스
센서 프로브 & 케이블
단일 단계 모세관 온도 조절기
슬로우 블로우 마이크로 퓨즈
스마트 온도조절기
표면 마운트 퓨즈
온도 컷오프 링크
온도 조절 스위치
온도 퓨즈
온도 센서
온도 센서 케이블
온도 센서 프로브
온도 스위치
열 차단
열 차단 스위치
온도 퓨즈
열 보호기
열 스위치
서미스터 센서 프로브
Energy Storage CCS PT100 / PT1000 Sensor & Cable Assembly Solution
Pt100 and Pt1000 are the most widely used RTD sensors Cable. Although similar, their different nominal resistances determine which applications they will suit. Available in two versions: as a thin film sensor and as a wire sensor, which differ in the permissible measurement current and the operating temperature range.
범주: 온도 센서
태그: PT100 온도 센서, 온도 센서, 온도 센서 케이블, 온도 센서 프로브
Advantages of Energy Storage CCS PT100/PT1000 Sensor Cable:
Harness Cable: stable signal transmission;
Structure: support design changes;
After-sales: easy to repair;
Temperature acquisition: excellent moisture resistance.
Product parameters:
1. Isolation board: fire retardant. Material is PC+ABS or PA66, 등.
2. Collection end shell: pure nickel shell, thin shell wall, fast heat conduction, good welding penetration effect.
3. 1060 aluminum bar: light structure, low impedance, fast heat dissipation.
4. Connection and fixation: laser welding, firm and beautiful, high degree of automation.
5. High sensitivity and rapid response (resistance value and B value accuracy can reach ±1% respectively).
6. The finished product withstands voltage up to 4200VDC.
7. Built-in high-reliability single-ended resistor, equipped with patented internal structure process, life up to 20 연령.
For the bracket, you can choose injection molding or blister isolation board + wire trough;
For the collection component, you can choose wire harness, FPC, PCB, FFC;
For the temperature collection line, you can choose epoxy head, OT terminal, nickel terminal (all including NTC);
For the connection method, you can choose glue, screw, ultrasonic welding or laser welding.
Application scenarios:
Industrial and commercial energy storage, communication energy storage, household energy storage, portable energy storage
Design of Pt100/Pt1000 sensor
In industrial use, Pt100/Pt1000 sensor usually exist as a measuring insert which is installed in a connection head and an appropriate protective fitting. The electrical connection is made within the connection head. As a measuring insert the easily replaceable unit of the thermometer is referred to, which consists of a conduit or cable from suitable material and whose sensitive end contains one or more Pt100/Pt1000 platinum sensor. Protected by a thermowell, a temperature measuring point can be constructed that enables the exchange of the thermometer in the event of repair or calibration without interfering with the process.
A further industrial design of Pt100/Pt1000 sensor are those known as cable probes. In these cases, the connection cable is assembled directly with the metallic part of the thermometer.
Applications for resistance thermometers with Pt100 or Pt1000 sensors
Whether a Pt100 or a Pt1000 , Pt500 sensor is used depends on the respective application. In the process industry, Pt100 sensors represent the most frequently used and the most common type of resistance sensor worldwide. 하지만, there are applications where the use of Pt1000 Pt500 sensors makes sense. Thus, 예를 들어, with a two-wire connection, the use of Pt1000 , Pt500 sensors has the advantage over Pt100 sensors, since here the influence of the cable length in the overall measuring error is only a fraction of that of Pt100 sensors. Also with battery-operated thermometers the higher nominal resistance of the Pt1000 , Pt500 sensor has a positive effect on the energy balance of the instrument. 이러한 이유로, batteries have a longer service life, meaning longer maintenance intervals and with that reduced service costs. When using Pt1000 , Pt500 sensors, it should be ensured that the downstream evaluation electronics can actually process the Pt1000 signal. In modern temperature controllers or display instruments this is usually the case, as the sensor input can be freely configured.
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