Non Gated Digital Switches

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Part RoHS Manufacturer Trigger Device Type Package Style (Meter) Surface Mount Terminal Position Configuration Package Body Material Minimum Breakdown Voltage Terminal Form Package Shape No. of Elements Repetitive Peak Reverse Voltage No. of Terminals Sub-Category Maximum Operating Temperature Minimum Operating Temperature Terminal Finish JESD-30 Code Moisture Sensitivity Level (MSL) Qualification JEDEC-95 Code Maximum Non Repetitive Peak Forward Current JESD-609 Code Maximum Breakdown Voltage

NFD15C

Renesas Electronics

SHOCKLEY DIODE

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

124 V

THROUGH-HOLE

ROUND

1

3

Silicon Surge Protectors

125 Cel

-25 Cel

O-PBCY-T3

1

Not Qualified

TO-92

70 A

138 V

NFD15D

Renesas Electronics

SHOCKLEY DIODE

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

134 V

THROUGH-HOLE

ROUND

1

3

Silicon Surge Protectors

125 Cel

-25 Cel

O-PBCY-T3

1

Not Qualified

TO-92

70 A

146 V

NFD15A

Renesas Electronics

SHOCKLEY DIODE

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

96 V

THROUGH-HOLE

ROUND

1

3

Silicon Surge Protectors

125 Cel

-25 Cel

O-PBCY-T3

1

Not Qualified

TO-92

70 A

115 V

NFD15E

Renesas Electronics

SHOCKLEY DIODE

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

142 V

THROUGH-HOLE

ROUND

1

3

Silicon Surge Protectors

125 Cel

-25 Cel

O-PBCY-T3

1

Not Qualified

TO-92

70 A

152 V

NFD15

Renesas Electronics

SHOCKLEY DIODE

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

96 V

THROUGH-HOLE

ROUND

1

80 V

3

Silicon Surge Protectors

125 Cel

-55 Cel

TIN LEAD

O-PBCY-T3

Not Qualified

TO-92

70 A

e0

152 V

NFD15B

Renesas Electronics

SHOCKLEY DIODE

CYLINDRICAL

NO

BOTTOM

SINGLE

PLASTIC/EPOXY

111 V

THROUGH-HOLE

ROUND

1

3

Silicon Surge Protectors

125 Cel

-25 Cel

O-PBCY-T3

1

Not Qualified

TO-92

70 A

128 V

Non Gated Digital Switches

Non-gated digital switches are electronic devices used in digital circuits to control the flow of current without the need for a gate input signal. They are commonly used in applications such as data processing, signal routing, and power management.

Non-gated digital switches can be implemented using various semiconductor technologies, such as MOSFETs (metal-oxide-semiconductor field-effect transistors), CMOS (complementary metal-oxide-semiconductor) switches, and bipolar junction transistors (BJTs). The basic principle of operation involves controlling the state of the switch using a bias voltage or current, without the need for an external gate signal.

In digital circuits, non-gated digital switches are often used as electronic switches to control the routing of digital signals. They can also be used as power switches to control the flow of power in high-power applications such as motor control and power management.

Non-gated digital switches are often designed to operate at high frequencies and can be used in circuits that require high-speed switching. They are typically designed to operate with low power consumption and are often used in battery-operated devices.