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6N137Ired Photo IC Degital Logic Isolation Tele Communication Analog Data

Good quality Programmable IC Chips for sales
Good quality Programmable IC Chips for sales
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6N137Ired Photo IC Degital Logic Isolation Tele Communication Analog Data

China 6N137Ired Photo IC Degital Logic Isolation Tele Communication Analog Data supplier
6N137Ired Photo IC Degital Logic Isolation Tele Communication Analog Data supplier 6N137Ired Photo IC Degital Logic Isolation Tele Communication Analog Data supplier

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Product Details:

Place of Origin: Taiwan
Brand Name: T o shiba
Certification: Original Factory Pack
Model Number: 6N137

Payment & Shipping Terms:

Minimum Order Quantity: 50pcs
Price: Negotiation
Packaging Details: please contact me for details
Delivery Time: 1 Day
Payment Terms: T/T, Western Union,PayPal
Supply Ability: 9000PCS
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Detailed Product Description
Features: Very High Speed-10 MBit/s Features2: Superior CMR-10 KV/µs
Features3: Double Working Voltage-480V Features4: Fan-out Of 8 Over -40°C To +85°C
Features5: Logic Gate Output Features6: Strobable Output

6N137Ired Photo IC Degital Logic Isolation Tele Communication Analog Data

 

 

 6N137

 

DESCRIPTION

The 6N137, HCPL-2601/2611 single-channel and HCPL-2630/2631 dual-channel optocouplers consist of a 850 nm AlGaAS LED, optically coupled to a very high speed integrated photodetector logic gate with a strobable output. This output features an open collector, thereby permitting wired OR outputs. The coupled parameters are guaranteed over the temperature range of -40°C to +85°C. A maximum input signal of 5 mA will provide a minimum output sink current of 13 mA (fan out of 8). An internal noise shield provides superior common mode rejection of typically 10 kV/µs. The HCPL- 2601 and HCPL- 2631 has a minimum CMR of 5 kV/µs. The HCPL-2611 has a minimum CMR of 10 kV/µs.

 

FEATURES

• Very high speed-10 MBit/s

• Superior CMR-10 kV/µs

• Double working voltage-480V

• Fan-out of 8 over -40°C to +85°C

• Logic gate output • Strobable output

• Wired OR-open collector

• U.L. recognized (File # E90700)

 

APPLICATIONS

• Ground loop elimination

• LSTTL to TTL, LSTTL or 5-volt CMOS

• Line receiver, data transmission

• Data multiplexing

• Switching power supplies

• Pulse transformer replacement

• Computer-peripheral interface

 

 

TRUTH TABLE

Input Enable Output
H H L
L H H
H L H
L L H
H NC L
L NC H

 

 

Noted:

1. The VCC supply to each optoisolator must be bypassed by a 0.1µF capacitor or larger. This can be either a ceramic or solid tantalum capacitor with good high frequency characteristic and should be connected as close as possible to the package VCC and GND pins of each device.

 

2. Each channel.

 

3. Enable Input - No pull up resistor required as the device has an internal pull up resistor.

 

4. tPLH - Propagation delay is measured from the 3.75 mA level on the HIGH to LOW transition of the input current pulse to the 1.5 V level on the LOW to HIGH transition of the output voltage pulse.

 

5. tPHL - Propagation delay is measured from the 3.75 mA level on the LOW to HIGH transition of the input current pulse to the 1.5 V level on the HIGH to LOW transition of the output voltage pulse.

 

6. tr - Rise time is measured from the 90% to the 10% levels on the LOW to HIGH transition of the output pulse.

 

7. tf - Fall time is measured from the 10% to the 90% levels on the HIGH to LOW transition of the output pulse.

 

8. tELH - Enable input propagation delay is measured from the 1.5 V level on the HIGH to LOW transition of the input voltage pulse to the 1.5 V level on the LOW to HIGH transition of the output voltage pulse.

 

9. tEHL - Enable input propagation delay is measured from the 1.5 V level on the LOW to HIGH transition of the input voltage pulse to the 1.5 V level on the HIGH to LOW transition of the output voltage pulse.

 

10. CMH - The maximum tolerable rate of rise of the common mode voltage to ensure the output will remain in the high state (i.e., VOUT > 2.0 V). Measured in volts per microsecond (V/µs).

 

11. CML - The maximum tolerable rate of rise of the common mode voltage to ensure the output will remain in the low output state (i.e., VOUT < 0.8 V). Measured in volts per microsecond (V/µs).

 

12. Device considered a two-terminal device: Pins 1,2,3 and 4 shorted together, and Pins 5,6,7 and 8 shorted together.

 

 

 

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