Filters
  • Brand Name
  • Circuit Commutated Turn-off Time-Nom
  • DC Gate Trigger Current-Max
  • DC Gate Trigger Voltage-Max
  • ECCN Code
  • Ihs Manufacturer
  • Leakage Current-Max
  • Manufacturer Part Number
  • Non-Repetitive Pk On-state Cur
  • Operating Temperature-Max
  • Operating Temperature-Min
  • Part Life Cycle Code

Attribute column

Manufacturer

NEC Modular Connectors - Jacks With Magnetics

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2 Results

Product

Inventory

Pricing(USD)

Quantity

Datasheet

RoHS

Surface Mount

Number of Terminals

Ihs Manufacturer

Leakage Current-Max

Manufacturer Part Number

Number of Elements

Operating Temperature-Max

Operating Temperature-Min

Package Body Material

Package Description

Package Shape

Package Style

Part Life Cycle Code

Part Package Code

Reflow Temperature-Max (s)

Risk Rank

Rohs Code

JESD-609 Code

ECCN Code

Terminal Finish

HTS Code

Terminal Position

Terminal Form

Peak Reflow Temperature (Cel)

Reach Compliance Code

Pin Count

JESD-30 Code

Qualification Status

Brand Name

Configuration

JEDEC-95 Code

Trigger Device Type

Repetitive Peak Off-state Voltage

Non-Repetitive Pk On-state Cur

Critical Rate of Rise of Off-State Voltage-Min

Repetitive Peak Reverse Voltage

RMS On-state Current-Max

Holding Current-Max

DC Gate Trigger Current-Max

DC Gate Trigger Voltage-Max

On-State Voltage-Max

Circuit Commutated Turn-off Time-Nom

In Stock

-

-

NO

3

RENESAS ELECTRONICS CORP

0.1 mA

03P2M-AZ

1

125 °C

-45 °C

PLASTIC/EPOXY

CYLINDRICAL, O-PBCY-T3

ROUND

CYLINDRICAL

Obsolete

TO-92

NOT SPECIFIED

5.8

Yes

e1

EAR99

Tin/Silver/Copper (Sn96.5Ag3.0Cu0.5)

8541.30.00.80

BOTTOM

THROUGH-HOLE

NOT SPECIFIED

unknown

3

O-PBCY-T3

Not Qualified

Renesas

SINGLE

TO-92

SCR

200 V

8 A

-

200 V

0.47 A

5 mA

0.2 mA

0.8 V

-

25 µs

In Stock

-

-

NO

-

RENESAS ELECTRONICS CORP

2 mA

5P4J-AZ

-

125 °C

-40 °C

-

-

-

-

Obsolete

-

-

5.79

Yes

-

EAR99

-

-

-

-

-

compliant

-

-

-

Renesas

-

-

SCR

400 V

65 A

3 V/us

-

-

-

0.2 mA

0.8 V

1.6 V

80 µs