Low Profile FPC FFC Connector HRS FH19C-30S-0.5SH10 0.5mm Pitch 0.9mm Height for Mobile Applications
FH19C & FH19SC Series: 0.5mm Pitch, 0.9mm Height FPC/FFC Connectors
The FH19C and FH19SC series are low-profile, 0.5mm pitch FPC/FFC connectors designed for miniaturized portable equipment and personal mobile devices. These connectors offer high density and reliability with a height of 0.9mm and a width of 3mm, significantly reducing PCB footprint and connector weight compared to previous models. Their design allows conductive traces to run underneath the connector, and the proven Flip-Lock actuator system ensures easy and reliable operation with tactile confirmation of locking. They accept FPC/FFC thicknesses of 0.2mm (FH19C) and 0.3mm (FH19SC) and are suitable for automated placement due to their flat upper surface and tape and reel packaging.
Product Attributes
- Brand: HIROSE ELECTRIC CO., LTD.
- Series: FH19C / FH19SC
- Pitch: 0.5 mm
- Height: 0.9 mm
- Certifications: Halogen-free (IEC61249-2-21 Br: 900ppm max, Cl: 900ppm max, Br+Cl: 1,500ppm max)
- Actuator Colors: Brown (FH19C), Black (FH19SC)
- Packaging: Tape and reel (5000 connectors/reel standard)
Technical Specifications
| Series | FPC/FFC Thickness | Contact Counts | Current Rating | Voltage Rating | Operating Temperature Range | Insulation Resistance | Contact Resistance | Durability | Shock/Vibration Resistance | Materials (Insulator) | Materials (Contacts) | Materials (Metal Fittings) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| FH19C | 0.2 0.03mm | 4 to 50 | 0.5 A (Note1) | 50 V AC | -55C to +85C (Note 2) | 500 M ohms min. (100 V DC) | 100 m ohms max. (1 mA) | 20 cycles | Contact resistance: 100 m ohms max. No damage or discontinuity. | LCP UL94V-0 | Phosphor bronze, Gold plated | Phosphor bronze, Pure tin reflow plated |
| FH19SC | 0.3 0.03mm | 12 to 32 | LCP UL94V-0 | Phosphor bronze, Gold plated | Phosphor bronze, Pure tin reflow plated |
Notes:
Note 1: Use 70% of current rating when passing current through all contacts.
Note 2: Includes temperature rise caused by current flow.
2410010404_HRS-FH19C-30S-0-5SH-10_C3168977.pdf