Vishay IL300-X009T AC/DC Input Optocoupler, Surface, 8-Pin Surface Mount
- RS 제품 번호:
- 230-8327
- 제조사 부품 번호:
- IL300-X009T
- 제조업체:
- Vishay
대량 구매 할인 기용 가능
Subtotal (1 pack of 2 units)*
₩13,829.28
마지막 RS 재고
- 최종적인 746 개 unit(s)이 배송 준비 됨
수량 | 한팩당 | 한팩당* |
|---|---|---|
| 2 - 48 | ₩6,914.64 | ₩13,831.16 |
| 50 - 98 | ₩6,790.56 | ₩13,581.12 |
| 100 - 248 | ₩6,668.36 | ₩13,336.72 |
| 250 - 498 | ₩6,548.04 | ₩13,096.08 |
| 500 + | ₩6,429.60 | ₩12,859.20 |
* 참고 가격: 실제 구매가격과 다를 수 있습니다
- RS 제품 번호:
- 230-8327
- 제조사 부품 번호:
- IL300-X009T
- 제조업체:
- Vishay
사양
참조 문서
제정법과 컴플라이언스
제품 세부 사항
제품 정보를 선택해 유사 제품을 찾기
모두 선택 | 제품 정보 | 값 |
|---|---|---|
| 브랜드 | Vishay | |
| Mount Type | Surface | |
| Product Type | Optocoupler | |
| Maximum Forward Voltage | 1.5V | |
| Number of Channels | 1 | |
| Packaging | Tape & Reel | |
| Number of Pins | 8 | |
| Package Type | Surface Mount | |
| Input Current Type | AC/DC | |
| Typical Rise Time | 1.75μs | |
| Maximum Input Current | 60mA | |
| Isolation Voltage | 4420Vrms | |
| Minimum Operating Temperature | -55°C | |
| Maximum Operating Temperature | 100°C | |
| Typical Fall Time | 1.75μs | |
| Standards/Approvals | RoHS, CQC, DIN EN 60747-5-5 (VDE 0884-5), cUL, UL, BSI | |
| Series | IL300 | |
| Automotive Standard | No | |
| 모두 선택 | ||
|---|---|---|
브랜드 Vishay | ||
Mount Type Surface | ||
Product Type Optocoupler | ||
Maximum Forward Voltage 1.5V | ||
Number of Channels 1 | ||
Packaging Tape & Reel | ||
Number of Pins 8 | ||
Package Type Surface Mount | ||
Input Current Type AC/DC | ||
Typical Rise Time 1.75μs | ||
Maximum Input Current 60mA | ||
Isolation Voltage 4420Vrms | ||
Minimum Operating Temperature -55°C | ||
Maximum Operating Temperature 100°C | ||
Typical Fall Time 1.75μs | ||
Standards/Approvals RoHS, CQC, DIN EN 60747-5-5 (VDE 0884-5), cUL, UL, BSI | ||
Series IL300 | ||
Automotive Standard No | ||
The Vishay linear optocoupler consists of an AlGaAs IRLED irradiating an isolated feedback and an output PIN photodiode in a bifurcated arrangement. The feedback photodiode captures a percentage of the LEDs flux and generates a control signal (IP1) that can be used to servo the LED drive current. This technique compensates for the LEDs non-linear, time, and temperature characteristics. The output PIN photodiode produces an output signal (IP2) that is linearly related to the servo optical flux created by the LED.
It has high gain stability and wide bandwidth
It couples AC and DC signals
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