TE Connectivity Solid State Relays 64

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Part RoHS Manufacturer Optoelectronic Type Mounting Feature Terminal Finish Maximum On State Voltage Configuration Maximum Supply Voltage Control Current Peak Surge Current Maximum Forward Current No. of Elements Nominal Supply Voltage Depth Packing Method Output Circuit Type Maximum Response Time Sub-Category Minimum Supply Voltage Maximum Operating Temperature Maximum On State Resistance Height Minimum Operating Temperature Maximum Reverse Leakage Current Maximum Output Voltage Maximum Isolation Voltage Maximum Input Trigger Current Control Voltage Repetitive Off-state Voltage (Peak) Maximum Power Dissipation Input Type Additional Features Minimum Current Transfer Ratio Length JESD-609 Code Maximum Forward Voltage Maximum On State Current

6-1393030-9

TE Connectivity

TRIGGER OUTPUT SSR

PANEL MOUNT

22.5 mm

80 Cel

111.5 mm

-30 Cel

660 V

82.3 mm

1-1393028-1

TE Connectivity

TRANSISTOR OUTPUT SSR

PANEL MOUNT

280 V

240 V

10.3 mm

180 V

80 Cel

25.5 mm

-30 Cel

30 V

43.6 mm

1617069-1

TE Connectivity

TRANSISTOR OUTPUT SSR

THROUGH HOLE MOUNT

32 V

13.46 mm

BOX; TRAY

3.8 V

105 Cel

4.82 mm

-55 Cel

22.6 mm

ODCM-5

TE Connectivity

TRANSISTOR OUTPUT SSR

PANEL MOUNT

8 V

.018 A

1

5 V

10.3 mm

Triac

Solid State Relays

3 V

80 Cel

25.5 mm

-30 Cel

60 V

4000 V

3 V

DC

43.5 mm

2-1393028-3

TE Connectivity

TRIGGER OUTPUT SSR

PANEL MOUNT

18 V

15 V

15.2 mm

9 V

80 Cel

31.7 mm

-30 Cel

120 V

43.1 mm

IACM-5

TE Connectivity

TRANSISTOR OUTPUT SSR

PANEL MOUNT

140 V

.006 A

1

120 V

10.3 mm

Triac

Solid State Relays

90 V

80 Cel

25.5 mm

-30 Cel

30 V

4000 V

90 V

AC/DC

43.6 mm

SSRK-240A30

TE Connectivity

TRIGGER OUTPUT SSR

PANEL MOUNT

22.5 mm

80 Cel

111.5 mm

-30 Cel

240 V

82.3 mm

4-1393028-2

TE Connectivity

TRANSISTOR OUTPUT SSR

PANEL MOUNT

18 V

15 V

15.2 mm

9 V

80 Cel

31.7 mm

-30 Cel

250 V

43.1 mm

6-1393030-7

TE Connectivity

TRIGGER OUTPUT SSR

PANEL MOUNT

32 V

4 V

22.5 mm

4 V

80 Cel

111.5 mm

-30 Cel

660 V

82.3 mm

7-1393028-6

TE Connectivity

TRANSISTOR OUTPUT SSR

PANEL MOUNT

32 V

24 V

15.2 mm

18 V

80 Cel

31.7 mm

-30 Cel

250 V

43.1 mm

1-1393028-0

TE Connectivity

TRANSISTOR OUTPUT SSR

PANEL MOUNT

140 V

120 V

10.3 mm

90 V

80 Cel

25.5 mm

-30 Cel

30 V

43.6 mm

1617069-2

TE Connectivity

TRANSISTOR OUTPUT SSR

THROUGH HOLE MOUNT

32 V

13.46 mm

BOX; TRAY

3.8 V

105 Cel

4.82 mm

-55 Cel

22.6 mm

6-1393028-7

TE Connectivity

TRIGGER OUTPUT SSR

PANEL MOUNT

18 V

15 V

15.2 mm

9 V

80 Cel

31.7 mm

-30 Cel

280 V

43.1 mm

IDC-5

TE Connectivity

TRANSISTOR OUTPUT SSR

PANEL MOUNT

32 V

1

24 V

15.2 mm

Transistor

Solid State Relays

3.3 V

80 Cel

31.7 mm

-30 Cel

30 V

3.3 V

DC

43.1 mm

OACM-5

TE Connectivity

TRIGGER OUTPUT SSR

PANEL MOUNT

8 V

.02 A

1

5 V

10.3 mm

Triac

Solid State Relays

3 V

80 Cel

25.5 mm

-30 Cel

280 V

4000 V

3 V

DC

43.6 mm

SSR-480D25

TE Connectivity

TRIGGER OUTPUT SSR

CHASSIS MOUNT

COMPLEX

32 V

.015 A

1

57.8 mm

3 V

80 Cel

36.5 mm

-30 Cel

660 V

4000 V

WITH ZERO CROSS OVER CIRCUIT, UL RECOGNIZED

45 mm

25 A

Solid State Relays

Solid state relays (SSRs) are electronic devices that are used to switch or control electrical loads without using any moving parts. They consist of a control circuit and a switching device, which are both made from semiconductor materials. SSRs are widely used in a variety of applications, including in industrial control systems, home automation, and power management.

The control circuit of an SSR typically consists of a light-emitting diode (LED) and a phototransistor or a photothyristor. The LED is used to control the phototransistor or photothyristor, which is used to switch the load. When the LED is turned on, it produces light that is detected by the phototransistor or photothyristor, which then switches the load.

One of the advantages of SSRs is their ability to switch high loads without the use of any mechanical components. They are also able to switch loads quickly and precisely, making them suitable for applications that require fast response times or precise control.

Another advantage of SSRs is their durability and reliability. They do not have any moving parts that can wear out or break, and they are not affected by vibrations or shocks.

One of the disadvantages of SSRs is their cost. They are generally more expensive than electromechanical relays, which use mechanical components to switch loads.