CONMOLY | CM-LVDS | LVDS Differential Cables Shenzhen Xinju New Materials Technology Co., Ltd. https://conmoly.com Catalogue values support selection. Final tolerances, assembly performance and acceptance tests are defined in the approved drawing and specification. No certification is implied. Shielded differential cables in twisted-pair and parallel-pair constructions. Compare 17 configurations by cross-section, delay, capacitance and frequency-dependent attenuation. Typical attenuation at +25 °C and sea level. GHz values describe the listed cable cutoff frequency, not a guaranteed protocol data rate. Overall dimensions are width × height where two values are shown. Confirm connector strip dimensions and drain-wire construction before termination. Nominal impedance: 100 Ω | Series overview: 100 ±10 Ω; final tolerance by drawing Operating temperature: −55 to +150 °C | Series overview; confirm jacket and model Dielectric withstand: 1500 / 1000 Vrms | Conductor–conductor / conductor–shield; duration to be agreed Twisted pair · 1 GHz Code | Conductor (AWG / stranding) | Core dimensions (mm) | Drain wire | Overall dimensions (mm) | Mass (g/m) | Delay (ns/m) | Capacitance (pF/m) | Cutoff frequency (GHz) CM-LVDS-TP-AWG28-S01 | 28 (7/36) | 0.98 | — | 2.10 × 1.70 | 10 | 4.5 | 45 | 1 CM-LVDS-TP-AWG26-S01 | 26 (19/38) | 1.24 | — | 2.75 × 1.95 | 15 | 4.5 | 45 | 1 CM-LVDS-TP-AWG24-S01 | 24 (7/32) | 1.6 | — | 3.20 × 2.50 | 20 | 4.25 | 43 | 1 Twisted pair · 1 GHz · typical attenuation (dB/m) Frequency (MHz) | CM-LVDS-TP-AWG28-S01 | CM-LVDS-TP-AWG26-S01 | CM-LVDS-TP-AWG24-S01 20 | 0.18 | 0.16 | 0.1 100 | 0.4 | 0.3 | 0.22 200 | 0.6 | 0.42 | 0.31 500 | 0.9 | 0.7 | 0.52 1000 | 1.4 | 1.05 | 0.77 Twisted pair · 5 GHz Code | Conductor (AWG / stranding) | Core dimensions (mm) | Drain wire | Overall dimensions (mm) | Mass (g/m) | Delay (ns/m) | Capacitance (pF/m) | Cutoff frequency (GHz) CM-LVDS-TP-AWG32-S01 | 32 (19/44) | 0.6 | 32 (19/44) | 1.35 × 0.90 | 2.7 | 4.1 | 41 | 5 CM-LVDS-TP-AWG30-S01 | 30 (7/38) | 0.8 | 30 (7/38) | 1.80 × 1.35 | 4 | 4.2 | 37 | 5 CM-LVDS-TP-AWG28-S02 | 28 (7/36) | 1 | 28 (7/36) | 2.25 × 1.45 | 6.8 | 4.2 | 37 | 5 CM-LVDS-TP-AWG26-S02 | 26 (19/38) | 1.27 | 26 (19/38) | 2.70 × 1.80 | 9.5 | 4.2 | 37 | 5 CM-LVDS-TP-AWG24-S02 | 24 (19/36) | 1.53 | 24 (19/36) | 3.40 × 2.10 | 13.5 | 4.2 | 37 | 5 Twisted pair · 5 GHz · typical attenuation (dB/m) Frequency (MHz) | CM-LVDS-TP-AWG32-S01 | CM-LVDS-TP-AWG30-S01 | CM-LVDS-TP-AWG28-S02 | CM-LVDS-TP-AWG26-S02 | CM-LVDS-TP-AWG24-S02 200 | 0.85 | 0.55 | 0.45 | 0.35 | 0.3 600 | 1.45 | 1 | 0.85 | 0.65 | 0.55 1250 | 2.1 | 1.5 | 1.25 | 0.95 | 0.8 2500 | 2.95 | 2.1 | 1.7 | 1.35 | 1.15 3125 | 3.3 | 2.4 | 1.95 | 1.5 | 1.25 5000 | 4.3 | 3.1 | 2.6 | 2 | 1.7 Parallel pair · without drain Code | Conductor (AWG / stranding) | Core dimensions (mm) | Drain wire | Overall dimensions (mm) | Mass (g/m) | Delay (ns/m) | Capacitance (pF/m) | Cutoff frequency (GHz) CM-LVDS-PP-ND-AWG30-S01 | 30 (7/38) | 1.68 × 0.99 | — | 2.18 × 1.47 | 8 | 4.7 | 46 | 10 CM-LVDS-PP-ND-AWG28-S01 | 28 (7/36) | 2.08 × 1.17 | — | 3.05 × 2.11 | 16 | 4.7 | 38 | 10 CM-LVDS-PP-ND-AWG26-S01 | 26 (7/34) | 2.54 × 1.55 | — | 3.28 × 2.18 | 18 | 4.6 | 31 | 10 CM-LVDS-PP-ND-AWG28-S02 | 28 (19/0.08 mm) | 1.95 × 1.15 | — | 2.50 × 1.83 | 12 | 4.1 | 36 | 7.5 CM-LVDS-PP-ND-AWG26-S02 | 26 (19/0.10 mm) | 2.42 × 1.36 | — | 3.25 × 2.35 | 20 | 4.1 | 36 | 7.5 CM-LVDS-PP-ND-AWG24-S01 | 24 (19/0.127 mm) | 3.10 × 1.75 | — | 3.95 × 2.65 | 26 | 4.1 | 36 | 7.5 Parallel pair · without drain · typical attenuation (dB/m) Frequency (GHz) | CM-LVDS-PP-ND-AWG30-S01 | CM-LVDS-PP-ND-AWG28-S01 | CM-LVDS-PP-ND-AWG26-S01 | CM-LVDS-PP-ND-AWG28-S02 | CM-LVDS-PP-ND-AWG26-S02 | CM-LVDS-PP-ND-AWG24-S01 0.5 | 1.15 | 0.75 | 0.65 | 0.65 | 0.55 | 0.45 1 | 1.65 | 1.15 | 0.95 | 0.95 | 0.75 | 0.6 2 | 2.45 | 1.65 | 1.5 | 1.45 | 1.2 | 0.85 5 | 4.2 | 2.9 | 2.65 | 2.1 | 1.9 | 1.5 7.5 | 5.45 | 4.9 | 4.65 | 2.8 | 2.5 | 2 10 | 7.9 | 6 | 5.6 | — | — | — Parallel pair · with drain Code | Conductor (AWG / stranding) | Core dimensions (mm) | Drain wire | Overall dimensions (mm) | Mass (g/m) | Delay (ns/m) | Capacitance (pF/m) | Cutoff frequency (GHz) CM-LVDS-PP-DW-AWG30-S01 | 30 (7/38) | 0.7 | 30 (7/38) | 1.75 × 1.15 | 4 | 4.2 | 40 | 10 CM-LVDS-PP-DW-AWG28-S01 | 28 (19/40) | 1.1 | 28 (19/38) | 2.25 × 1.40 | 6 | 4.1 | 38 | 10 CM-LVDS-PP-DW-AWG26-S01 | 26 (19/38) | 1.22 | 26 (19/36) | 2.70 × 1.70 | 8 | 4.1 | 38 | 10 Parallel pair · with drain · typical attenuation (dB/m) Frequency (GHz) | CM-LVDS-PP-DW-AWG30-S01 | CM-LVDS-PP-DW-AWG28-S01 | CM-LVDS-PP-DW-AWG26-S01 1 | 1.45 | 1.2 | 0.85 2 | 2.05 | 1.7 | 1.2 3 | 2.55 | 2.1 | 1.5 4 | 2.9 | 2.5 | 1.75 5 | 3.35 | 2.85 | 2.05 7 | 4.1 | 3.45 | 2.65 10 | 5.2 | 4.55 | 3.6 Typical attenuation at +25 °C and sea level. GHz values describe the listed cable cutoff frequency, not a guaranteed protocol data rate. Overall dimensions are width × height where two values are shown. Confirm connector strip dimensions and drain-wire construction before termination. Twisted pair · 1 GHz: CM-LVDS-TP-AWG28-S01 · CM-LVDS-TP-AWG26-S01 · CM-LVDS-TP-AWG24-S01 Twisted pair · 5 GHz: CM-LVDS-TP-AWG32-S01 · CM-LVDS-TP-AWG30-S01 · CM-LVDS-TP-AWG28-S02 · CM-LVDS-TP-AWG26-S02 · CM-LVDS-TP-AWG24-S02 Parallel pair · without drain: CM-LVDS-PP-ND-AWG30-S01 · CM-LVDS-PP-ND-AWG28-S01 · CM-LVDS-PP-ND-AWG26-S01 · CM-LVDS-PP-ND-AWG28-S02 · CM-LVDS-PP-ND-AWG26-S02 · CM-LVDS-PP-ND-AWG24-S01 Parallel pair · with drain: CM-LVDS-PP-DW-AWG30-S01 · CM-LVDS-PP-DW-AWG28-S01 · CM-LVDS-PP-DW-AWG26-S01 Conductors: Silver-plated copper; gauge and stranding vary by model. Insulation: ePTFE / PTFE. Shield and drain: Braided conductor or aluminium composite tape; drain wire by construction. Jacket: FEP; colour and final dimensions by model. Signal and frequency: Protocol, frequency band, impedance and loss budget. Installation: Length, routing, bend radius, motion and available space. Environment: Operating temperature and required environmental tests. Termination: Connector, pinout, shielding and strain relief. Impedance and attenuation at agreed frequency points Continuity, insulation resistance and dielectric withstand as specified Application-specific bend, temperature and assembly verification Equipment data networks Avionics and imaging interconnects Compact industrial signal routing Cable supply or project-specific termination Confirm connector and cable compatibility before assembly Catalogue values support selection. Final tolerances, assembly performance and acceptance tests are defined in the approved drawing and specification. No certification is implied. Cable Product Manual · A1 · PDF pages 31, 32, 33, 34, 35 Source: https://conmoly.com/resources