Micro-Fit 3.0 Dual-Row Straight Pin Header Connector for 2×2Pin, 3.0 Pitch, Tin-Plated, PCB Through-Hole Type electronic terminal signal power customization Tyco Amphenol Standard
• Free samples available for quality evaluation.
• Support for both OEM & ODM customization.
• Trade Terms: EXW, FOB, CIF, CPT, etc.
This Micro-Fit 3.0 2×3 pin header connector is designed for high-current, high-density PCB power and signal transmission.
Using copper-alloy terminals with heavy tin over nickel plating, it supports up to 12.5 A per circuit at 250 V AC/DC, making it ideal for compact power boards and control modules. The vertical through-hole structure with locking peg/post gives strong mechanical retention on the PCB, reducing stress on solder joints under vibration or cable pull.
The connector housing is molded from UL94 V-0 flame-retardant LCP, offering excellent heat resistance for wave-soldering and reflow processes. Low contact resistance and high insulation resistance ensure stable electrical performance and low power loss over a long service life. This header can be perfectly matched with Micro-Fit 3.0 female connectors or customized wire harness assemblies.
| Product type | Micro-Fit 3.0 dual-row pin header connector |
| Pitch | 3.0 mm (Micro-Fit 3.0 series) |
| Positions | 2×3 pins (6 pins total) |
| Mounting style | Vertical / straight, through-hole PCB |
| Tail length | Approx. 2.1 mm pin protrusion |
| Locking feature | With plastic peg/post for secure PCB retention |
| Rated current | Up to 12.5 A max (AWG16 per pin) |
| Rated voltage | 250 V AC / DC |
| Contact resistance | ≤ 20 mΩ max |
| Insulation resistance | ≥ 1000 MΩ min |
| Dielectric strength | 1500 V AC / minute |
| Operating temperature | −40 °C to +105 °C |
| Salt-spray performance | 24 h, tin plated |
| Plating – square pin | Ni 50 μ" min under-plating, Sn 100 μ" min on mating area |
| Plating – fork / metal yoke | C2680 copper alloy, Ni 50 μ" min, Sn 100 μ" min |
| Terminal material | Copper alloy C1100 / C2680 |
| Housing material | LCP E130I, black, UL94 V-0, halogen-free |
| Environmental | HF, RoHS-compliant |
| Series compatibility | Micro-Fit 3.0 headers & female plug housings |
| Customization | Pin count, plating thickness, peg type, color and packed wire harness available |
⚙️ Applications
- PCB Signal & Data Transmission: Used for board-to-board or board-to-module connections, including low-voltage signals, data transmission, and control interfaces.
- Consumer Electronics: Common in smart home appliances, printers, cameras, displays, controllers, and handheld devices for internal signal routing.
- Industrial Automation & Control Systems: Applied in PLCs, industrial control boards, sensors, meters, robotics modules, and automation I/O interfaces.
- Servers & Data Center Equipment: Used for backplane interfaces, storage modules, communication boards, and signal expansion connectors.
- Automotive Electronics: Suitable for ECUs, BMS modules, sensor units, dashboards, infotainment systems, and on-board control interfaces.
- Communication & Networking Devices: Used in routers, switches, IoT gateways, RF modules, and network communication cards.
- IoT & Smart Device Modules: Applied in Bluetooth modules, WiFi modules, GPS/Beidou modules, sensor nodes, and embedded system expansion ports.
- Power Control & Monitoring Boards: For auxiliary power transmission, monitoring signals, and low-power control circuits.
- Custom OEM/ODM Electronic Designs: Ideal for designs requiring customizable pin count, pitch, height, plating option, and configuration.
⚠️ Notes
- Ensure Correct Pin Alignment: Check orientation and positioning before mating to avoid mis-insertion, bent pins, or PCB pad damage.
- Do Not Exceed Electrical Ratings: Follow the specified current and voltage limits to prevent overheating or contact failure.
- Proper Insertion and Extraction Force: Avoid excessive force during mating/unmating to prevent deformation, cracked solder joints, or pin damage.
- Keep Contact Surfaces Clean: Ensure terminals remain free from dust, oil, oxidation, or contaminants that reduce conductivity.
- Follow Recommended Soldering Conditions: Use appropriate soldering temperature profiles according to plastic materials such as LCP, PA6T, PA66, or PBT.
- Verify PCB Hole Tolerance: Incorrect hole size may cause inadequate solder filling or mechanical instability.
- Avoid Mechanical Stress After Assembly: Do not apply lateral pressure or bending forces, especially for SMT pin headers.
- Maintain Proper Storage Conditions: Store in a dry, dust-free environment to prevent terminal oxidation; use anti-static packaging if required.
- Confirm Compatibility with Female Header: Ensure matching pitch, pin count, height, and contact design to avoid mating failure.
- Choose Correct Plating Specification: Select proper plating (gold, tin, nickel) based on your application’s durability, corrosion resistance, and signal reliability needs.
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