Flexible Flat Cable Connector hanxia HX 1.0-10P XGXJ-H2.0 1.0mm Pitch FPC FFC with 50V Rated Voltage
Specifications
Operating Temperature:
-25℃~+85℃
Locking Feature:
翻盖式
Number Of Contacts:
10P
Pitch:
1mm
Current Rating:
500mA
Voltage Rating (Max):
50V
Contact Type:
下接
Mounting Type:
卧贴
FFC, FCB Thickness:
0.3mm
Contact Plating:
锡
Contact Material:
磷青铜
Mfr. Part #:
HX 1.0-10P XGXJ-H2.0
Package:
SMD,P=1mm,Surface Mount,Right Angle
Model Number:
HX 1.0-10P XGXJ-H2.0
Introduction
Product Overview
This specification covers the 1.0mm Pitch FPC/FFC Connectors, designed for flexible flat cable connections. They offer reliable electrical and mechanical performance suitable for various applications.
Product Attributes
- Brand: Shenzhen Hanxia Electronic Co., Ltd
- Origin: Shenzhen, China
- Certifications: UL 94V-0
- Material (Main Body/Housing Lock): LCP
- Material (Terminal/Contact): Phosphor Bronze
- Plating: Tin Plated
Technical Specifications
| Item | Requirement | Test Condition |
| 3. Ratings | ||
| Rated Voltage (MAX) | 50V [AC/DC(Virtual value)50Hz] | |
| Rated Current (MAX) | 0.5A | |
| Ambient temperature Range | -25~ +85 | |
| 4. Performance | ||
| 4.1 Electrical Performance | ||
| Contact Resistance | 30 mMAX | Mate applicable FPC/FFC and measure by dry circuit, 20mV MAX, 10mA. |
| Insulation Resistance | 500MMIN | Mate applicable FPC/FFC and apply 500V DC between adjacent terminal or ground. |
| Dielectric Strength | No Breakdown | Mate applicable FPC/FFC and apply 250V AC (virtual value) for 1minute between adjacent terminal or ground. |
| 4.2 Mechanical Performance | ||
| Locking Force | 1.96*n (N) MAX | Insert and extract applicable FFC (0.3mm thickness) at 253mm/minute. |
| Withdrawal Force | 0.49*n (N) MIN | Insert and extract applicable FFC (0.3mm thickness) at 253mm/minute. |
| Terminal /Housing Retention Force | 0.25N MIN | Pull the terminal at 25 3mm per minute. |
| 4.3 Environmental and Others Performance | ||
| Contact Resistance (Repeated Insertion/Withdrawal) | 60 m MAX | Insertion and withdrawal actuator up to 20 cycles at <10 cycles/minute. |
| Temperature Rise | 30 MAX | Carrying rated current load (UL 498). |
| Contact Resistance (Vibration) | 60 m MAX | Vibration 10-55-10Hz/min, 1.5mm amplitude, 2 hours in X,Y,Z axes, DC 1mA. |
| Discontinuity (Vibration) | 1 ms MAX | Vibration 10-55-10Hz/min, 1.5mm amplitude, 2 hours in X,Y,Z axes, DC 1mA. |
| Appearance (Shock) | No Damage | 490m/s2{50G}, 3 strokes in each X,Y,Z axes, DC 1mA. |
| Discontinuity (Shock) | 1 ms MAX | 490m/s2{50G}, 3 strokes in each X,Y,Z axes, DC 1mA. |
| Appearance (Heat Resistance) | No Damage | 852, 96 hours. |
| Contact Resistance (Heat Resistance) | 60 m MAX | 852, 96 hours. |
| Appearance (Cold Resistance) | No Damage | -402, 96 hours. |
| Contact Resistance (Cold Resistance) | 60 m MAX | -402, 96 hours. |
| Appearance (Humidity) | No Damage | 402, 90-95% RH, 96 hours. |
| Contact Resistance (Humidity) | 60 m MAX | 402, 90-95% RH, 96 hours. |
| Insulation Resistance (Humidity) | 20 M MIN | 402, 90-95% RH, 96 hours. |
| Dielectric Strength (Humidity) | Must meet 4.1.3 | 402, 90-95% RH, 96 hours. |
| Appearance (Temperature Cycling) | No Damage | 5 cycles of: -553 (30 min) / 852 (30 min). |
| Contact Resistance (Temperature Cycling) | 60 m MAX | 5 cycles of: -553 (30 min) / 852 (30 min). |
| Appearance (Salt Spray) | No Damage, Corrosion | 244 hours in 51% salt spray at 352. |
| Contact Resistance (Salt Spray) | 60 m MAX | 244 hours in 51% salt spray at 352. |
| Contact Resistance (SO2 Gas) | 60 m MAX | 24 hours exposure to 50 5ppm SO2 gas at 402. |
| Appearance (NH3 Gas) | No Damage | 40 minutes exposure to NH3 gas from 28% Ammonia solution. |
| Contact Resistance (NH3 Gas) | 60 m MAX | 40 minutes exposure to NH3 gas from 28% Ammonia solution. |
| Solder Wetting | 95% or more | Soldering Time: 20.5 sec. Temperature: 2455, 0.2 mm from terminal tip. |
| Appearance (Resistance to Soldering Heat) | No Damage, Deformation | Soldering Time: 305 sec. Temperature: 2455, at least 5 times. |
2411220032_hanxia-HX-1-0-10P-XGXJ-H2-0_C41418895.pdf
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