Tin (Sn) Optocoupler Circuit Outputs 109

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Part RoHS Manufacturer Optoelectronic Type Mounting Feature No. of Terminals Terminal Finish Configuration Size Maximum Dark Current Maximum Supply Voltage No. of Functions Infrared (IR) Range Maximum Forward Current No. of Elements Maximum Supply Current Nominal Hysteresis Ratio Nominal Supply Voltage Packing Method Maximum Response Time Sub-Category Minimum Supply Voltage Maximum Operating Temperature Application Shape Nominal Response Time Minimum Operating Temperature Minimum Collector-emitter Breakdown Voltage Nominal Current Transfer Ratio Maximum Isolation Voltage Maximum Power Dissipation Nominal Data Rate Additional Features Minimum Current Transfer Ratio JESD-609 Code Maximum Forward Voltage Maximum On State Current

ACPL-K44T-560E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

Tin (Sn)

SEPARATE, 2 CHANNELS

2

.02 A

2

125 Cel

-40 Cel

5000 V

1 MBps

UL RECOGNIZED, HIGH RELIABILITY, VDE APPROVED

e3

.008 A

ACPL-W349-560E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

COMPLEX

1

.025 A

1

TR

15 V

105 Cel

RECTANGULAR

-40 Cel

5000 V

IEC, UL RECOGNIZED

e3

ACPL-W347-060E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

Tin (Sn)

COMPLEX

1

.025 A

1

15 V

105 Cel

-40 Cel

5000 V

UL RECOGNIZED, VDE APPROVED

e3

HCPL-253L-560E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

Tin (Sn)

SEPARATE, 2 CHANNELS

2

.02 A

2

2.7 V

85 Cel

0 Cel

3750 V

1 MBps

UL RECOGNIZED, VDE APPROVED, OPEN COLLECTOR

e3

.008 A

ACFL-5211T-500E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

SEPARATE, 2 CHANNELS

2

.02 A

2

TR

.000001 s

125 Cel

5000 ns

-40 Cel

5000 V

1 MBps

AEC-Q100, IEC-60747-5-5, UL RECOGNIZED

e3

.008 A

ACFL-6211T-060E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

SEPARATE, 2 CHANNELS

1

.02 A

2

TUBE

3 V

125 Cel

10 ns

-40 Cel

5000 V

AEC-Q100, IEC-60747-5-5, UL RECOGNIZED

e3

.01 A

HCPL-253L-360E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

SEPARATE, 2 CHANNELS

2

.02 A

2

Optocoupler - Transistor Outputs

2.7 V

85 Cel

0 Cel

3750 V

.1 W

1 MBps

UL RECOGNIZED, VDE APPROVED, OPEN COLLECTOR

15 %

e3

1.7 V

.008 A

ACNT-H511-500E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

SINGLE

1

.02 A

1

TR

.000002 s

4.5 V

105 Cel

400 ns

-40 Cel

7500 V

IEC-60747-5-5, OPEN COLLECTOR, TTL COMPATIBLE, UL RECOGNIZED

e3

.012 A

ACPL-K44T-060E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

Tin (Sn)

SEPARATE, 2 CHANNELS

2

.02 A

2

125 Cel

-40 Cel

5000 V

1 MBps

UL RECOGNIZED, HIGH RELIABILITY, VDE APPROVED

e3

.008 A

ACNT-H511-000E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

SINGLE

1

.02 A

1

TUBE

.000002 s

4.5 V

105 Cel

400 ns

-40 Cel

7500 V

IEC-60747-5-5, OPEN COLLECTOR, TTL COMPATIBLE, UL RECOGNIZED

e3

.012 A

ACPL-W349-060E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

COMPLEX

1

.025 A

1

TUBE

15 V

105 Cel

RECTANGULAR

-40 Cel

5000 V

IEC, UL RECOGNIZED

e3

ACPL-P347-560E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

SURFACE MOUNT

Tin (Sn)

COMPLEX

1

.025 A

1

TR

.000000028 s

15 V

105 Cel

8 ns

-40 Cel

3750 V

IEC-60747-5-5, UL RECOGNIZED

e3

ACPL-W347-500E

Broadcom

LOGIC IC OUTPUT OPTOCOUPLER

Tin (Sn)

COMPLEX

1

.025 A

1

15 V

105 Cel

-40 Cel

5000 V

UL RECOGNIZED

e3

Optocoupler Circuit Outputs

An optocoupler is an electronic device that uses an optical sensor to transfer electrical signals between two circuits. The two circuits are physically isolated from each other and are connected only by a beam of light that is emitted by an LED and detected by a photodetector.

The optocoupler circuit output is the electrical signal that is generated by the photodetector in response to the light emitted by the LED. The output signal can be used to control or communicate with the circuit that is connected to the optocoupler.

Optocouplers are commonly used in applications where electrical isolation is required, such as in power supplies, motor control, and medical equipment. The isolation provided by the optocoupler helps to protect sensitive electronic components and circuits from electrical interference and noise.

One of the advantages of using an optocoupler circuit output is that it provides a high level of electrical isolation between two circuits. The isolation helps to prevent electrical noise and interference from affecting the circuit and can improve the overall performance and reliability of the system.