Direct Solder 2.92mm Male to SMP Female Cable Assembly for LP220 is a precision RF cable assembly designed for reliable high-frequency signal transmission and stable electrical performance. Its direct-solder construction provides a secure connection while minimizing signal loss and maintaining excellent signal integrity. The 2.92mm male to SMP female configuration enables convenient integration between compatible RF interfaces. This assembly is suitable for RF test and measurement equipment, telecommunications, aerospace, defense, laboratory systems, and high-frequency electronic applications. LP220 provides dependable connectivity and repeatable performance for demanding RF systems requiring precision, flexibility, and reliable signal transmission.
| Connector 1 | Direct solder 2.92mm male | Connector 2 | SMP female |
| Body | Gold plated brass | Body | Gold plated BeCu |
| Nut | Passivated stainless steel | Center Contact | Gold plated BeCu |
| Center Contact | Gold plated BeCu | Cable Type | LP220 |
| No. | Construction | Size (mm) | Materials |
|---|---|---|---|
| 1 | Center Conductor | 0.51 | Solid silver-plated copper |
| 2 | Dielectric | 1.43 | Ultra-low density PTFE |
| 3 | Outer Conductor | 1.55 | Silver-plated copper tape wrap |
| 4 | Outer Shield | 1.85 | Silver-plated copper wire braid |
| 5 | Jacket | 2.20 | FEP |
| Frequency | DC-40 GHz |
| Impedance | 50 Ω |
| VSWR Max | 1.45 |
| *IL Max (0.1 meter assembly) | 1.06dB |
| **Mechanical Phase Stability | <±5° |
| Amplitude Stability vs Shaking | <±0.15dB |
| Min. Bending Radius Static | 11mm |
| Min. Bending Radius Repeated | 22mm |
| Velocity of Propagation | 81% |
| Temperature (Operation) | -50~105 °C |
| Temperature (Storage) | -60~105 °C |
| Frequency MHz | 300 | 1000 | 2000 | 3000 | 6000 | 12000 | 18000 | 26500 | 30000 | 40000 | 50000 | 67000 |
| dB/100 Meter | 34.3 | 63.3 | 90.3 | 111.3 | 159.8 | 230.7 | 286.9 | 354.3 | 379.4 | 445.2 | 504.8 | 596.4 |
| Avg. Power kW | 0.510 | 0.277 | 0.194 | 0.157 | 0.110 | 0.076 | 0.061 | 0.049 | 0.046 | 0.039 | 0.035 | 0.029 |
| Attenuation at any frequency = [1.96000 × SQRT(FMHz)] + [0.001330 × FMHz] | ||||||||||||