VALIDATION REPORTS
Mechanical, electrical, and environmental validation of P-IN connectors based on industry-relevant testing methods.
CURRENT CAPACITY TEST
The attached diagram clearly illustrates the delta increment. Our P-IN connectors demonstrated exceptional thermal stability, maintaining a remarkably low and safe temperature profile even under demanding conditions. This translates to enhanced long-term reliability, reduced energy loss, and superior safety in your applications.

Key Technical Performance Characteristics Verified:
- Low Contact Resistance: Ensuring minimal voltage drop and power loss
- Excellent Current Carrying Capacity: Stable performance under rated load
- Superior Thermal Management: Efficient heat dissipation prevents overheating.
- Reliable Connection: Consistent performance with various magnet wire specifications.

This successful verification test underscores our commitment to delivering not just alternatives, but superior replacements. It’s a testament to the innovative engineering behind the P-IN series.

Delta temperature rise
Ambient T 23,4 C
CROSS SECTION
EFFICIENT CONNECTIVITY
A qualitative and quantitative analysis for the electrical performance of solderless connection generated by P-in ©
RAPID SHOCK TEMPERATURE
Rapid shock temperature tests showed compliant values (< 1 ohm) for un-tensioned magnet wire 0,4 mm in allocation.
6 cycles of 30 min
+ 100 ºC // - 45 ºC
ANNEX & TEST
CAPACITY TO TEST CURRENT CARRYING CAPACITY AND TO DEFINE PLASTIC ALLOCATION FOR DIFFERENT DIAMETERS

IEC 60851 series: Core winding wire test methods — dimensions, mechanical, electrical and thermal evaluations.
IEC 60172: Temperature index testing for enamelled wire insulation.
IEC 60317: Detailed specifications for magnet wire types and coatings.
IEC 60851-5: Electrical property test procedures.
IEC EMC standards: Supplementary environment and interference tests relevant to motors/coils.
Would you like to test it in your own application?