Product Details
MCT62 Optocoupler DIP-6 – Dual Channel High CTR Phototransistor Opto-Isolator IC
Original price was: ₹14.00.₹12.50Current price is: ₹12.50.
Description
MCT62 Optocoupler DIP-6 – Dual Channel High CTR Phototransistor Opto-Isolator IC
The MCT62 optocoupler is a dual-channel opto-isolator IC designed for applications requiring higher current transfer ratio (CTR) and sensitive signal detection. It integrates two infrared LEDs optically coupled to two independent phototransistor outputs, enabling isolation of two signal paths within a single compact package. Supplied in a DIP-6 through-hole package, the MCT62 is ideal for industrial automation, PLC inputs, SMPS feedback circuits, and reliable microcontroller signal isolation.
| Specification | Details |
|---|---|
| Part Number | MCT62 |
| Device Type | Dual Channel Optocoupler / Opto-Isolator |
| Number of Channels | 2 Independent Channels |
| Output Type | Phototransistor |
| Isolation Voltage | Up to 5000Vrms (Typical) |
| CTR (Current Transfer Ratio) | 50% – 150% (Typical) |
| Collector-Emitter Voltage | 30V |
| Package Type | DIP-6 Through-Hole |
Applications
- PLC and industrial input isolation
- High-sensitivity digital signal isolation
- SMPS feedback and regulation circuits
- Multi-channel microcontroller interfaces
- Noise and ground-loop protection
How to Use
- Use current-limiting resistors for both input LEDs.
- Drive each channel independently from logic signals.
- Connect pull-up resistors on output phototransistors.
- Ensure proper PCB isolation spacing for high-voltage safety.
- Avoid exceeding maximum LED forward current ratings.
Sorry, no reviews match your current selections
The MCT9001 Optocoupler is a high-performance phototransistor-based opto-isolator IC designed to safely isolate microcontrollers, SMPS circuits, PLC inputs, and industrial control systems. With strong 5000Vrms isolation, stable CTR, and a reliable DIP-6 through-hole package, it ensures excellent noise immunity, signal integrity, and long-term durability for professional electronics applications.



