| D Internal Diameter | φ12.0 mm |
| Hole Length | Through Hole |
| H Total Height | 6.6 mm |
| H1 Body Length | 3.1 mm |
| L Section Size | 16.0 mm |
| Pins | 20 |
| Materials | Brass |
| Surface Treatment | Tin plated |
| Installation Equipment/Method | Press-fit |

Is press fit better than solder on PCB?
The choice between press fit and solder for PCB connections depends on specific application requirements, as each method has distinct advantages and trade-offs:
1. Cost:
Press Fit: Higher initial costs (tooling, connectors) but lower labor in automation.
Solder: Lower upfront costs but potential labor expenses for manual processes.
2. Reliability & Durability:
Press Fit: Resistant to thermal cycling and vibration; longevity depends on installation precision.
Solder: Prone to fatigue cracking under stress but reliable with proper process control.
3. Application Environment:
Harsh environments favor press fit; consumer electronics often use solder for cost and simplicity.
4. Signal Integrity:
Press Fit: Requires careful design to avoid impedance mismatches in high-frequency applications.
Solder: Offers consistent connections critical for signal integrity.
5. Environmental Factors:
Press Fit: Avoids solder-related chemicals (lead/flux), aligning with green manufacturing.
Solder: Lead-free options address environmental concerns but require process adjustments.
Conclusion: Press fit excels in high-reliability, harsh environments and large connectors (e.g., backplanes), while soldering is versatile and cost-effective for general-purpose electronics. The decision hinges on factors like environmental stress, thermal needs, rework requirements, and cost constraints. Often, a hybrid approach (e.g., press fit for connectors, solder for other components) optimizes performance and cost.



