This three-core YJV22 8.7/15kV 3×95 medium-voltage cable is manufactured entirely in accordance with the Chinese national standard for medium-voltage power cables GB/T 12706.3-2020, and fully complies with the IEC 60502-2 international standard for 6kV~35kV distribution cables. It has passed EU CE LVD and EMC directives, meeting the inspection requirements for cross-border infrastructure exports.
All finished coil materials have passed third-party type testing by a nationally accredited power industry laboratory. The testing scope includes partial discharge detection, power frequency withstand voltage, lightning impulse voltage, thermal cycling aging, static extrusion mechanical performance testing, vertical flame spread testing, and long-term vertical immersion aging testing.
Each order comes with a complete set of official documents stamped by the factory for project filing and customs clearance: authoritative type test report, batch factory inspection record, T2 oxygen-free copper raw material inspection certificate, CE certification, production batch traceability sheet, and professional installation and terminal production operation manual. All materials comply with the standards of power supply bureau supervision, construction supervision companies, fire protection acceptance, and overseas EPC project review.

The composite structure of an inner semi-conductive shielding layer + cross-linked polyethylene (XLPE) insulation layer + outer semi-conductive shielding layer + continuous copper strip metal shielding layer solves the most common fault factor in 15kV medium-voltage cables: partial discharge breakdown. For lines operating 24/7, such as substation outgoing trunk lines and factory fixed transformer incoming lines, this multi-layer shielding layout significantly reduces the probability of unplanned power outages and alleviates the workload of daily inspection and maintenance for the operation and management team. Compared with single-layer shielded medium-voltage cables, the long-term circuit failure rate is significantly reduced.
Double-layer steel strip mechanical protection adapts to high-risk laying scenarios, including municipal road crossings, mountain rock foundation trenches, underground pipelines in heavy-duty parking lots, and urban integrated utility tunnels. This effectively avoids insulation damage commonly caused by foundation settlement, impact from temporary construction equipment, and friction from underground sharp rocks in 15kV power grid renovation projects, thereby reducing the general contractor's investment in cable replacement and circuit maintenance in the later stages.
The 95mm² three-core cable is the mainstream medium-section specification for 15kV 1250kVA~1600kVA transformer incoming cables. It provides sufficient current-carrying capacity to handle the full-load current of the transformer while avoiding the cost waste caused by using excessively large 120/150mm² cables. Design engineers widely choose this specification for small and medium-sized industrial parks, community-specific substations, and distributed photovoltaic booster stations to achieve a reasonable match between load demand and project investment budget.
The three insulated cores are integrally molded using a flexible, non-hygroscopic filler, resulting in a simple and rounded overall shape. Compared to three separately laid single-core armored cables, this three-core cable saves cable tray space, reduces the number of conduits and installation time, significantly shortens the electrical wiring construction cycle for EPC contractors, and reduces labor costs.
The fully automated integrated production line performs real-time online thickness monitoring of the insulation, shielding, and armor layers. The insulation thickness, copper tape overlap rate, and steel tape winding tightness of each production batch are controlled within strict standard tolerances. All cable reels have consistent electrical parameters, eliminating the risk of localized overheating and uneven voltage distribution when multiple cables are connected in parallel in a 15kV distribution network.
Case 1: Township 15kV Distribution Network Upgrade Project
A county-level power grid upgrade project used a large number of YJV22 8.7/15kV 3×95 cables as the buried outgoing cables for 10 newly built community box-type transformers. The construction area included riverbank water-bearing soil layers and crossed municipal roads in several places. The double-layer steel strip armored structure effectively resisted the crushing and squeezing during subsequent road expansion construction; the complete set of third-party testing reports provided by our factory passed the power bureau's acceptance, requiring no additional testing. After 3 years of grid connection, no partial discharge or insulation aging faults occurred, saving 65% of the labor costs for power grid inspection and maintenance.
Case 2: 80MW Distributed Photovoltaic Substation Grid Connection Project
A mountain photovoltaic power station selected ZC flame-retardant YJV22 8.7/15kV 3×95 cables as the medium-voltage collection line between the substation and the photovoltaic combiner box. The project site had strong outdoor ultraviolet radiation and residual chloride salts in the soil. The system employs an UV-resistant and corrosion-resistant outer sheath and copper strip shielding structure, effectively resisting harsh outdoor environments and electromagnetic interference between parallel medium-voltage lines. Complete certification documentation expedited the grid connection review process for the EPC contractor, enabling the project to commence operation ahead of schedule.
Case 3: Dedicated Transformer Power Supply Project for a Light Industrial Park
A machinery manufacturing park constructed 12 sets of 1600kVA box-type transformers, uniformly using YJV22 8.7/15kV 3×95mm² cables as underground incoming trunk lines. The underground soil contained residual weakly acidic wastewater from workshop production. Custom-designed reinforced anti-corrosion outer sheaths avoided the premature aging of sheaths and corrosion of the metal shielding layer common in older cable lines. Stable current carrying capacity and balanced electric field performance ensured uninterrupted 24-hour power supply to production equipment, reducing annual line maintenance and downtime losses by more than 80%.



YJV22 8.7/15kV 3×95 three-core steel-tape armored cross-linked polyethylene medium-voltage cable is the mainstream, economical, and efficient standard for 15kV small and medium-sized transformer incoming lines, widely recognized by global power design institutes, municipal power grid companies, and EPC contractors. Its multi-layer electric field balance shielding design, all-around steel tape mechanical protection, and long-life anti-corrosion outer sheath enable the cable to adapt to almost all 15kV underground laying environments, effectively balancing the initial construction and procurement costs and long-term operation and maintenance expenses for project owners and contractors.
Our factory integrates independent R&D, automated intelligent production, and full-standard high-voltage testing of medium-voltage cables, committed to providing stable, fully compliant, and cost-effective YJV22 series medium-voltage armored cables to global industrial, municipal, and new energy infrastructure users, supporting long-term, stable, and batch cooperative supply for various 15kV power distribution projects.