| Cable voltage class | Confirm that the finished cable is intended for U0/U = 0.6/1 kV service. | Rated voltage: 0.6/1 kV; conductor and insulation design matched to the product specification. | IEC 60502-1 covers extruded-insulation power cables for rated voltages from 1 kV up to and including 3 kV; the applicable product construction must be confirmed. | Approved cable datasheet, applicable IEC edition, customer specification and construction drawing. |
| Machine configuration | Check whether a vertical pair-twisting layout supports the required conductor or insulated-core arrangement. | Two synchronized pay-offs, controlled take-up, adjustable twisting pitch and suitable dancer or tension systems. | Stable geometry helps prevent deformation that could affect insulation thickness, sheath concentricity or electrical testing results. | Layout drawing, machine datasheet, process flow and sample-run records. |
| Conductor compatibility | Verify compatibility with the conductor material, construction and cross-sectional range. | Copper or aluminium conductors; solid, stranded or compacted constructions as defined by the product design; documented minimum and maximum sizes. | Conductor resistance and construction influence current-carrying performance and conformity with the cable standard. | Conductor specification, resistance test results and machine range confirmation. |
| Twisting pitch control | Confirm pitch setting, repeatability and recipe protection. | Pitch specified in the product recipe; actual pitch checked at start-up, after changeover and during production. | Consistent pitch reduces pair deformation, local stress and dimensional variation before insulation, bedding or sheathing operations. | Calibration record, recipe revision history, first-off approval and in-process pitch log. |
| Tension stability | Evaluate tension control during acceleration, steady running, stopping and reel changeover. | Closed-loop tension control, dancer feedback, alarm limits and controlled acceleration/deceleration. | Unstable tension can cause loose strands, ovality, pitch variation and mechanical damage to insulation or screening layers. | Tension trend data, alarm history, commissioning report and operator inspection checklist. |
| Line speed and productivity | Select speed from the approved process window rather than maximum machine speed alone. | Documented production speed for the actual cable size, pitch, reel mass and material combination. | Higher speed is acceptable only when dimensional stability, conductor integrity and downstream test results remain within limits. | Factory acceptance test, capacity trial, scrap-rate record and validated process window. |
| Electrical continuity | Provide continuous or scheduled checks for conductor continuity and connection integrity. | Continuity monitoring, line-stop or alarm function, traceable test records and verified measurement equipment. | Detects open conductors, poor joints and intermittent defects before final cable testing. | Continuity test logs, alarm challenge test and instrument calibration certificate. |
| Conductor resistance | Measure conductor DC resistance using the applicable conductor standard and test temperature correction. | Acceptance value taken from the approved conductor and cable specification; results normalized to the reference temperature where required. | Conductor resistance is a key electrical verification for low-voltage power-cable conformity. | Resistance report, temperature record, test method and calibrated micro-ohmmeter details. |
| Insulation and sheath dimensions | Verify average thickness, minimum thickness, concentricity and outer diameter against the approved design. | Values taken from the cable construction drawing and applicable standard tables; sampling frequency defined in the inspection plan. | Dimensional conformity supports dielectric strength, mechanical performance and reliable downstream processing. | Online diameter data, cross-section reports, calibrated gauges and laboratory measurement records. |
| Voltage withstand testing | Confirm that the finished cable receives the applicable AC or DC voltage test defined by the current standard and product specification. | Test voltage, duration, specimen condition and pass/fail criteria taken from the controlled test procedure; do not rely on generic machine settings. | IEC 60502-1 includes routine and sample-test requirements; the exact test method depends on the applicable clause, cable construction and selected edition. | Test procedure, voltage calibration, leakage or breakdown record and nonconformance report process. |
| Insulation resistance | Check insulation resistance using the specified test voltage, stabilization time and temperature conditions. | Acceptance limit and calculation method defined by the applicable cable specification and standard procedure. | Provides an additional indication of insulation integrity and contamination control. | Insulation-resistance report, temperature and humidity record, instrument calibration and sample identification. |
| Material and surface control | Control insulation, sheath, filler, tape and lubricant condition during twisting and transfer. | Material lot traceability, storage limits, contamination checks and approved material certificates. | Foreign matter, moisture or surface damage may reduce insulation performance and lead to electrical-test failures. | Incoming inspection records, certificates of conformity, storage logs and visual inspection results. |
| Data traceability | Link machine recipe, operator, material lots, reel number and test results to each production batch. | Unique batch or reel ID; retained electronic or controlled paper records; revision-controlled recipes. | Traceability supports investigation of failed routine or sample tests and demonstrates process control. | Production traveler, digital historian or batch record, inspection release and retention policy. |
| Maintenance and safety | Review guarding, emergency stops, interlocks, lubrication points and preventive-maintenance requirements. | Documented safety risk assessment, inspection intervals, critical spare parts and lockout/tagout procedure. | Reliable and safe operation reduces unplanned variation, equipment damage and production interruptions. | Risk assessment, maintenance schedule, safety-function test records and operator training records. |