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Wire-to-board (Crimp style/IDC) / Wire-to-wire (Crimp style/IDC)

Based upon wire-to-board crimp style PA connectors, the PA series family of connector have been expanded to meet the requirement of complex wire harness of 2.0 mm pitch connectors with secure locking mechanism thanks to the additional line up of wire-to-board IDC style PAF connectors and wire-to-wire crimp style PAL connectors.
Unit of Measure

Specifications

Available

Manufacturer Stock

Brands

JST

Manufacturer

JST

Series

PA

Pitch Size

2.0 mm

Mounting Type

Retainer Mountable Type Crimp

Industry Standards

Canadian Standards Association (CSA®) Certified LR20812 Restriction of Hazardous Substances (RoHS) Underwriters Laboratories (UL) Recognized E60389

Circuits

12

Quantity Per Reel

500
Alternating Current (AC) Rating1 3 A
Direct Current (DC) Rating2 3 A

Alternating Current (AC) Voltage Rating

100 V

Direct Current (DC) Voltage Rating

100 V
Temperature Range3 -25 to +85 ºC

Maximum Contact Resistance After Environmental Testing

25 mΩ

Minimum Initial Insulation Resistance

1000 MΩ

Withstanding Alternating Current (AC) Voltage Per Minute

800 V

Applicable Wire Size

28 to 22 AWG

Dimensions

Dimension A

22.0 mm

Dimension B

28.0 mm

Material and Finish

Post Material

Copper Alloy, Copper-Undercoated, Tin-Plated

Note for Post Material

Reflow Treatment

Wafer Material

Natural Ivory Polyamide (PA 66), UL94V-0

Solder Tab Material

Copper Alloy, Copper-Undercoated, Tin-Plated

Note for Solder Tab Material

Reflow Treatment

Features

Features

  • Secure locking device
  • Interchangeable between crimp and IDC socket
  • Secondary retainers
  • Harness variation
  • Highly reliable contact
  • Insertion guide mechanism
  • Flanged press pin

Note

Note

Refer to "General Instruction and Notice when using Terminals and Connectors" at the end of this catalog.
Contact JST for details.

This product displays (LF)(SN) on a label.

TF - taping product.
TFT - taping product with suction tape.
  • 1 AWG #22
  • 2 AWG #22
  • 3 Including temperature rise in applying electrical current