DELTA CONNECTED, 3 ELEMENTS Silicon Surge Protectors 9

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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 Minimum Breakdown Voltage Terminal Form Package Shape Maximum On-state Current No. of Elements Maximum Leakage Current Repetitive Peak Reverse Voltage No. of Terminals Sub-Category Maximum DC Off-state Voltage Maximum Operating Temperature Minimum Operating Temperature Terminal Finish 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 JEDEC-95 Code Maximum Clamping Voltage JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Maximum Breakdown Voltage Peak Reflow Temperature (C) Reference Standard

TPN3021

STMicroelectronics

SILICON SURGE PROTECTOR

SMALL OUTLINE

YES

DUAL

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

9 A

GULL WING

RECTANGULAR

3

28 V

8

Silicon Surge Protectors

28 V

150 Cel

-40 Cel

Nickel/Palladium/Gold (Ni/Pd/Au)

R-PDSO-G8

1

Not Qualified

e4

30

38 V

260

TPI12011NRL

STMicroelectronics

SILICON SURGE PROTECTOR

SMALL OUTLINE

YES

DUAL

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

8 A

GULL WING

RECTANGULAR

3

8

R-PDSO-G8

Not Qualified

NOT SPECIFIED

160 V

NOT SPECIFIED

TPI12011N

STMicroelectronics

SILICON SURGE PROTECTOR

SMALL OUTLINE

YES

DUAL

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

8 A

GULL WING

RECTANGULAR

3

8

TIN LEAD

R-PDSO-G8

Not Qualified

e0

160 V

TPI8011N

STMicroelectronics

SILICON SURGE PROTECTOR

SMALL OUTLINE

YES

DUAL

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

8 A

GULL WING

RECTANGULAR

3

8

150 Cel

R-PDSO-G8

Not Qualified

NOT SPECIFIED

110 V

NOT SPECIFIED

TLP140G

STMicroelectronics

SILICON SURGE PROTECTOR

SMALL OUTLINE

YES

SINGLE

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

31 A

GULL WING

RECTANGULAR

3

2

MATTE TIN

R-PSSO-G2

1

Not Qualified

e3

200 V

TLP200G

STMicroelectronics

SILICON SURGE PROTECTOR

SMALL OUTLINE

YES

SINGLE

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

31 A

GULL WING

RECTANGULAR

3

2

MATTE TIN

R-PSSO-G2

1

Not Qualified

e3

290 V

TLP270G-1

STMicroelectronics

SILICON SURGE PROTECTOR

IN-LINE

NO

SINGLE

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

31 A

THROUGH-HOLE

RECTANGULAR

3

3

TIN

R-PSIP-T3

Not Qualified

e3

400 V

TISP7072F3DR-S

Bourns

THYRISTOR SURGE PROTECTOR

SMALL OUTLINE

YES

DUAL

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

4.3 A

GULL WING

RECTANGULAR

3

8

58 V

150 Cel

-65 Cel

MATTE TIN

R-PDSO-G8

1

Not Qualified

MS-012AA

e3

30

72 V

260

UL RECOGNIZED

TISP7260F3DR-S

Bourns

THYRISTOR SURGE PROTECTOR

SMALL OUTLINE

YES

DUAL

DELTA CONNECTED, 3 ELEMENTS

PLASTIC/EPOXY

4.3 A

GULL WING

RECTANGULAR

3

8

Silicon Surge Protectors

200 V

150 Cel

-65 Cel

MATTE TIN

R-PDSO-G8

1

Not Qualified

MS-012AA

e3

30

260 V

260

UL RECOGNIZED

Silicon Surge Protectors

Silicon Surge Protectors are electronic devices designed to protect electronic equipment from voltage surges and transients caused by lightning strikes, power outages, and other electrical disturbances.

The surge protector is essentially a voltage limiter that is designed to limit the voltage to a safe level that will not damage the electronic equipment. The surge protector works by diverting the excess voltage to a grounding circuit, preventing it from reaching the equipment.

Silicon surge protectors typically consist of a metal oxide varistor (MOV) or a transient voltage suppression (TVS) diode, which are both types of semiconductor devices that can handle high voltages and transient currents. These devices are connected between the power supply and the electronic equipment to be protected.

When a voltage surge or transient occurs, the MOV or TVS diode conducts current and diverts the excess voltage to ground, protecting the electronic equipment from damage. Once the voltage surge or transient subsides, the MOV or TVS diode returns to its normal non-conducting state.