Durable FPC FFC Connector SHOU HAN 1.0-9P CTSJ-H2.5 119 1.0mm Pitch Suitable for Flexible Flat Cables
Product Overview
This specification covers the 1.0mm Pitch FPC/FFC Connectors, designed for flexible flat cable applications. The connectors are suitable for use within a temperature range of -25 to +85 and are rated for a maximum voltage of 50V AC/DC and a maximum current of 0.5A. They are manufactured by Shenzhen Shouhan Technology Co., Ltd. and are designed for reliable electrical and mechanical performance, including contact resistance, insulation resistance, and dielectric strength. The connectors also meet stringent environmental performance standards for vibration, shock, heat, cold, humidity, and various gas exposures, ensuring durability and stable operation in diverse conditions.
Product Attributes
- Brand: SHOUHAN TECHNOLOGY
- Origin: Shenzhen, China
- Product Type: FFC/FPC Flat Cable Connector
- Pitch: 1.0mm
- Main Body Material: LCP (UL 94V-0)
- Housing Lock Material: LCP (UL 94V-0)
- Terminal/Contact Material: Phosphor Bronze
- Terminal Surface Treatment: Tin Plated
Technical Specifications
| Item | Specification/Requirement | Test Condition |
|---|---|---|
| Ratings | ||
| Rated Voltage (MAX) | 50V [AC/DC (Virtual value) 50Hz] | |
| Rated Current (MAX) | 0.5A | |
| Ambient Temperature Range | -25+85 | |
| Electrical Performance | ||
| Contact Resistance | 30 m MAX | Mate applicable FPC/FFC and measure by dry circuit, 20mV MAX, 10mA. |
| Insulation Resistance | 500 M MIN | Mate applicable FPC/FFC and apply 500V DC between adjacent terminals or ground. |
| Dielectric Strength | No Breakdown | Mate applicable FPC/FFC and apply 250V AC (Virtual value) for 1 minute between adjacent terminals or ground. |
| Mechanical Performance | ||
| 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 a speed of 253mm/minute. |
| Terminal/Housing Retention Force | 0.25N MIN | Pull the terminal outwards at a speed of 25 3mm per minute. |
| Environmental Performance and Others | ||
| Repeated Insertion and Withdrawal | Contact Resistance: 60 m MAX | Insertion and withdrawal up to 20 cycles at a speed less than 10 cycles/minute. (No power applied) |
| 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. Sweep time: 10-55-10Hz/min. Duration: 2 hours in each X, Y, Z axes. (DC 1mA applied) |
| Shock | Appearance: No Damage Discontinuity: 1 ms MAX. | 490m/s {50G}, 3 strokes in each X, Y, Z axes. (DC 1mA applied) |
| Heat Resistance | Appearance: No Damage Contact Resistance: 60 m MAX | 852, 96 hours. Then return to room temperature for 1-2 hours. |
| Cold Resistance | Appearance: No Damage Contact Resistance: 60 m MAX | -402, 96 hours. Then return to room temperature for 1-2 hours. |
| Humidity | Appearance: No Damage Contact Resistance: 60 m MAX Dielectric Strength: Must meet 4.1.3 Insulation Resistance: 20 M MIN | Temperature: 402, Relative Humidity: 90-95%, Duration: 96 Hours. Then measure within 0.5 hours at room temperature. |
| Temperature Cycling | Appearance: No Damage Contact Resistance: 60 m MAX | 5 cycles of: a) -553 for 30 minutes, b) 852 for 30 minutes. With 10-15 minutes at room temperature between cycles. |
| Salt Spray | Appearance: No Damage, Corrosion Contact Resistance: 60 m MAX | 244 hours exposure to a salt spray from a 51% solution at 352. After test, wash with room temperature water and dry. |
| SO2 Gas | Contact Resistance: 60 m MAX | 24 hours exposure to 505ppm SO2 gas at 402. |
| NH3 Gas | Appearance: No Damage Contact Resistance: 60 m MAX | 40 minutes exposure to NH3 gas evaporating from 28% Ammonia solution. |
| Solder ability | Solder Wetting: 95% area coverage | Soldering Time: 20.5 sec. Soldering Temperature: 2455 at 0.2 mm from terminal tip. |
| Resistance to Soldering Heat | Appearance: No Damage, Deformation | Soldering Time: 305 sec. Soldering Temperature: 2455. Performed at least 5 times. |
2509030922_SHOU-HAN-1-0-9P-CTSJ-H2-5-119_C5373490.pdf