Home > Products > FFC, FPC (Flat Flexible) Connector Assemblies >FFC, FPC (Flat Flexible) Connector Assemblies > FFC FPC Connector SHOU HAN 0.5-10P CTXJ-H2.0 119 0.5 mm Pitch for Flexible Flat Cable Connections

FFC FPC Connector SHOU HAN 0.5-10P CTXJ-H2.0 119 0.5 mm Pitch for Flexible Flat Cable Connections

Manufacturer:
SHOU HAN
Description:
FFC/FPC Connector 10 Position 0.5mm Pitch Bottom Contact Surface Mount, Right Angle -55℃~+85℃
Category:
FFC, FPC (Flat Flexible) Connector Assemblies/FFC, FPC (Flat Flexible) Connector Assemblies
Specifications
Locking Feature:
抽屉式
Operating Temperature:
-25℃~+85℃
Number Of Contacts:
10P
Pitch:
0.5mm
Voltage Rating (Max):
50V
Contact Type:
下接
Mounting Type:
卧贴
FFC, FCB Thickness:
0.3mm
Contact Plating:
Contact Material:
磷青铜
Mfr. Part #:
0.5-10P CTXJ-H2.0 119
Package:
SMD,P=0.5mm,Surface Mount,Right Angle
Model Number:
0.5-10P CTXJ-H2.0 119
Introduction

Product Overview

This specification covers the 0.5 mm Pitch FPC/FFC Connectors from Shenzhen Shouhan Technology Co., Ltd. Designed for flexible flat cable connections, these connectors offer reliable electrical, mechanical, and environmental performance.

Product Attributes

  • Brand: SHENZHEN SHOUHAN TECHNOLOGY CO.,LTD
  • Origin: Shenzhen, China
  • Product Type: FFC/FPC Flat Cable Connector
  • Certifications: UL 94V-0 (for LCP material)

Technical Specifications

Item Specification/Requirement Test Condition
Product Name & Part Number
Product Name FFC/FPC Flat Cable Connector
Part Number CTXJ-H2.0
Pitch 0.5 mm
Ratings
Rated Voltage (MAX) 50V AC/DC (Virtual value, 50Hz)
Rated Current (MAX) 0.5A
Ambient Temperature Range -25+85
Performance - Electrical
Contact Resistance 30 m MAX Mate applicable FPC/FFC, dry circuit, 20mV MAX, 10mA
Insulation Resistance 500 M MIN Mate applicable FPC/FFC, 500V DC between adjacent terminals or ground
Dielectric Strength No Breakdown Mate applicable FPC/FFC, 250V AC (Virtual value) for 1 minute between adjacent terminals or ground
Performance - Mechanical
Locking and Withdrawal Force Locking: 1.96*n (N) MAX
Withdrawal: 0.49*n (N) MIN
Insert and extract applicable FFC (0.3mm thickness) at 253mm/minute
Terminal/Housing Retention Force 0.25N MIN Pull terminal outwards at 25 3mm/minute
Performance - Environmental and Others
Repeated Insertion and Withdrawal Contact Resistance: 60 m MAX 20 cycles at <10 cycles/minute, no power
Temperature Rise 30 MAX Carrying rated current load (UL 498)
Vibration Contact Resistance: 60 m MAX
Discontinuity: 1 ms MAX
Amplitude: 1.5mm P-P, 10-55-10Hz/min, 2 hours in X, Y, Z axes, DC 1mA
Shock Appearance: No Damage
Discontinuity: 1 ms MAX
490m/s{50G}, 3 strokes in each X, Y, Z axes, DC 1mA
Heat Resistance Appearance: No Damage
Contact Resistance: 60 m MAX
852 for 96 hours, then return to room temp for 1-2 hours
Cold Resistance Appearance: No Damage
Contact Resistance: 60 m MAX
-402 for 96 hours, then return to room temp for 1-2 hours
Humidity Appearance: No Damage
Contact Resistance: 60 m MAX
Insulation Resistance: 20 M MIN
Dielectric Strength: Must meet 4.1.3
402, 90-95% RH for 96 hours, measure within 0.5 hours after returning to room temp
Temperature Cycling Appearance: No Damage
Contact Resistance: 60 m MAX
5 cycles: -553 (30 min) -> Room Temp (10-15 min) -> 852 (30 min) -> Room Temp (10-15 min)
Salt Spray Appearance: No Damage, Corrosion
Contact Resistance: 60 m MAX
244 hours in 51% salt spray at 352, then wash with water and dry at room temp
SO2 Gas Resistance Contact Resistance: 60 m MAX 24 hours in 505ppm SO2 gas at 402
NH3 Gas Resistance Appearance: No Damage
Contact Resistance: 60 m MAX
40 minutes exposure to NH3 gas from 28% Ammonia solution
Solderability Solder Wetting: 95% or more Immersion in 2455 tin bath for 20.5 sec, 0.2 mm from terminal tip
Resistance to Soldering Heat Appearance: No Damage, Deformation 305 sec in 2455 hot air, at least 5 times
Product Shape, Dimensions and Materials
Name Material Remark
Main body LCP UL 94V-0
Housing Lock LCP UL 94V-0
Terminal/Contact Phosphor Bronze Metal surface plated with tin

2303211800_SHOU-HAN-0-5-10P-CTXJ-H2-0-119_C5373469.pdf

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