Diodes Incorporated Silicon Controlled Rectifiers (SCR) 24

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Part RoHS Manufacturer Trigger Device Type Package Style (Meter) Surface Mount Terminal Position Configuration Case Connection Maximum On-state Voltage Package Body Material Maximum DC Gate Trigger Current Non Repetitive Peak On-state Current Terminal Form Package Shape Maximum On-state Current No. of Elements Maximum Leakage Current Repetitive Peak Reverse Voltage Maximum Repetitive Peak Off-state Leakage Current No. of Terminals Sub-Category Maximum Operating Temperature Minimum Operating Temperature Terminal Finish Maximum RMS On-state Current JESD-30 Code Moisture Sensitivity Level (MSL) Maximum DC Gate Trigger Voltage Qualification Repetitive Peak Off-state Voltage Minimum Critical Rate of Rise of Off-state Voltage Maximum Holding Current Additional Features Nominal Circuit Commutated Turn-off Time JEDEC-95 Code JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Reference Standard

S08U50600A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.05 mA

10 A

THROUGH-HOLE

RECTANGULAR

1

.1 mA

600 V

3

Silicon Controlled Rectifiers

110 Cel

-40 Cel

MATTE TIN

.8 A

R-PBCY-T3

1.2 V

Not Qualified

600 V

20 V/us

10 mA

TO-226AA

e3

260

S08U25600A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.025 mA

10 A

THROUGH-HOLE

RECTANGULAR

1

600 V

3

Silicon Controlled Rectifiers

110 Cel

-40 Cel

MATTE TIN

.8 A

R-PBCY-T3

1.2 V

Not Qualified

600 V

20 V/us

10 mA

TO-226AA

e3

40

260

T12M35T800HC

Diodes Incorporated

MATTE TIN

e3

S12M15600B

Diodes Incorporated

SCR

FLANGE MOUNT

NO

SINGLE

SINGLE

ANODE

PLASTIC/EPOXY

15 mA

THROUGH-HOLE

RECTANGULAR

1

600 V

3

125 Cel

-40 Cel

MATTE TIN

12 A

R-PSFM-T3

Not Qualified

600 V

TO-220AB

e3

260

S4M02600F

Diodes Incorporated

SCR

FLANGE MOUNT

NO

SINGLE

SINGLE

PLASTIC/EPOXY

.2 mA

THROUGH-HOLE

RECTANGULAR

1

600 V

3

110 Cel

-40 Cel

TIN

4 A

R-PSFM-T3

Not Qualified

600 V

TO-126

e3

260

S12M8-600B

Diodes Incorporated

SCR

FLANGE MOUNT

NO

SINGLE

SINGLE

ANODE

PLASTIC/EPOXY

8 mA

THROUGH-HOLE

RECTANGULAR

1

600 V

3

125 Cel

-40 Cel

12 A

R-PSFM-T3

Not Qualified

600 V

TO-220AB

NOT SPECIFIED

255

R1U50-600A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.05 mA

THROUGH-HOLE

RECTANGULAR

1

600 V

3

110 Cel

-40 Cel

1 A

R-PBCY-T3

Not Qualified

600 V

TO-226AA

S8M02-600B

Diodes Incorporated

SCR

FLANGE MOUNT

NO

SINGLE

SINGLE

ANODE

PLASTIC/EPOXY

.2 mA

THROUGH-HOLE

RECTANGULAR

1

600 V

3

110 Cel

-40 Cel

MATTE TIN

8 A

R-PSFM-T3

Not Qualified

600 V

TO-220AB

e3

260

S1U50700A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.05 mA

THROUGH-HOLE

RECTANGULAR

1

700 V

3

110 Cel

-40 Cel

BRIGHT TIN

1 A

R-PBCY-T3

Not Qualified

700 V

TO-226AA

e3

260

S08M02600A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.2 mA

10 A

THROUGH-HOLE

RECTANGULAR

1

600 V

3

Silicon Controlled Rectifiers

110 Cel

-40 Cel

MATTE TIN

.8 A

R-PBCY-T3

1.2 V

Not Qualified

600 V

20 V/us

10 mA

TO-226AA

e3

40

260

S8M15-600B

Diodes Incorporated

SCR

FLANGE MOUNT

NO

SINGLE

SINGLE

ANODE

PLASTIC/EPOXY

15 mA

80 A

THROUGH-HOLE

RECTANGULAR

1

2 mA

600 V

3

125 Cel

-40 Cel

8 A

R-PSFM-T3

1 V

Not Qualified

600 V

100 V/us

30 mA

TO-220AB

NOT SPECIFIED

255

S1VM02600A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.2 mA

THROUGH-HOLE

RECTANGULAR

1

600 V

3

110 Cel

-40 Cel

BRIGHT TIN

1.5 A

R-PBCY-T3

Not Qualified

600 V

TO-226AA

e3

260

S08U25100A

Diodes Incorporated

S1U50400A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.05 mA

THROUGH-HOLE

RECTANGULAR

1

400 V

3

110 Cel

-40 Cel

1 A

R-PBCY-T3

Not Qualified

400 V

TO-226AA

NOT SPECIFIED

255

S12M8800B

Diodes Incorporated

S12M8400B

Diodes Incorporated

S1U50200A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.05 mA

THROUGH-HOLE

RECTANGULAR

1

200 V

3

110 Cel

-40 Cel

1 A

R-PBCY-T3

Not Qualified

200 V

TO-226AA

NOT SPECIFIED

255

S1U50600A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.05 mA

THROUGH-HOLE

RECTANGULAR

1

600 V

3

110 Cel

-40 Cel

1 A

R-PBCY-T3

Not Qualified

600 V

TO-226AA

NOT SPECIFIED

255

S08U25400A

Diodes Incorporated

S1U50100A

Diodes Incorporated

SCR

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

.05 mA

THROUGH-HOLE

RECTANGULAR

1

100 V

3

110 Cel

-40 Cel

1 A

R-PBCY-T3

Not Qualified

100 V

TO-226AA

NOT SPECIFIED

255

MCR1006-6

Diodes Incorporated

S08U25200A

Diodes Incorporated

S08M02600A_HF

Diodes Incorporated

SCR

MATTE TIN

e3

S08M02600A-BU

Diodes Incorporated

SCR

MATTE TIN

e3

Silicon Controlled Rectifiers (SCR)

Silicon Controlled Rectifiers (SCRs) are semiconductor devices that are used to control the flow of electrical current in high-power applications. They are also known as thyristors, which are a family of devices that includes SCRs, triacs, and diacs.

SCRs consist of four layers of alternating p-type and n-type semiconductor material, forming three p-n junctions. The device has three terminals: the anode (A), the cathode (K), and the gate (G). The SCR is designed to conduct current only in one direction, from the anode to the cathode.

SCRs work by applying a positive voltage to the anode, which causes current to flow into the device. The gate terminal is used to control the flow of current by applying a small voltage pulse to trigger the device. Once triggered, the SCR conducts current until the voltage across the device drops below a certain level, at which point it turns off.

SCRs are commonly used in high-power applications such as motor control, lighting control, and power supplies. They are often used in conjunction with other components such as capacitors, inductors, and diodes to form complete electronic circuits.

Proper selection and use of SCRs are critical to ensure safe and reliable operation of power control circuits. Factors such as the maximum voltage rating, maximum current rating, and operating temperature range should be considered when selecting an SCR for a particular application.