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CN series push-in connectors cover 70A to 500A at 1500V DC with IP67 protection, plus stackable options for residential battery stacks. Match a model to your current rating, cable size, and cabinet layout.These energy storage connectors help BESS manufacturers build safe, reliable high-voltage DC connections.
An energy storage connector is the high-voltage link between battery cells, modules, racks, and inverters in a battery energy storage system (BESS). It carries DC current between battery packs and power conversion equipment, and it has to hold up under heat, vibration, moisture, and repeated plugging.
The CN series from PVLINKTECH is a push-in connector family built specifically for storage applications. It covers five current classes — 70A–120A, 150A–200A, 250A–300A, 250A–350A, and 400A–500A — all rated up to 1500V DC. Contacts are silver-plated copper alloy, the housing is PA66 with UL94 V-0 flame retardance, and every model comes in straight and right-angle versions. A one-key release latch and 360° cable rotation keep field wiring simple.
DC arc behavior is the reason storage connectors are designed differently from ordinary power connectors. At 1500V DC, an arc can sustain far longer than at the same AC voltage, so the plug must disconnect cleanly and lock positively. The CN series uses a self-locking latch with one-key release, a finger-spring high-current contact that increases the contact area, and a thermoplastic housing with high dielectric strength (4000V AC on most models). These are the mechanical details that separate a connector rated for storage duty from one that only looks similar.
A battery energy storage system (BESS) has several connection points, and BESS connectors at each point carry different current levels. Inside a battery pack, cells are welded or bolted together. Between the pack and the rack, cables run through connectors — this is where a push-in connector like the CN series does its job. Between racks and the DC bus, or between the cabinet and the inverter, the current is higher and the cable heavier.
In practice, the CN series covers pack-to-rack and rack-to-cabinet connections from 70A to 500A. The stackable connectors handle module-to-module interconnection inside stacked residential systems. If the connection point terminates on a busbar instead of a cable, a bolt or copper bar connector is the right tool — a separate family we cover on the battery busbar connector page .
Map the current at each connection point before you choose. A connector only has to carry the current of its own segment, not the full system current, which is why a 120A connector and a 500A connector can both be correct in the same installation.
Key electrical performance thresholds, wire termination dimensions, and withstand insulation parameters across the entire CN connector portfolio.Our energy storage connectors cover multiple current ratings, cable sizes, and 1500V DC requirements.
| Model | Current Rating | Voltage Rating | Cable Size | Contact Resistance | Dielectric Strength |
|---|---|---|---|---|---|
|
06
CN06
|
70A / 100A / 120A | 1000V / 1500V DC | 10 / 16 / 25 mm² | ≤0.2 mΩ | 3000 / 4000V AC |
|
08
CN08
|
150A / 200A / 250A | 1500V DC | 35 / 50 / 70 mm² | ≤0.2 mΩ | 4000V AC |
|
10
CN10
|
200A / 250A / 300A | 1500V DC | 50 / 70 / 95 mm² | ≤0.5 mΩ | 4000V AC |
|
12
CN12
|
250A / 300A / 350A | 1500V DC | 70 / 95 / 120 mm² | ≤0.5 mΩ | 4000V AC |
|
14
CN14
|
400A / 450A / 500A | 1500V DC | 150 / 185 mm² | ≤0.5 mΩ | 4000V AC |
Single core, IP67, UL94 V-0 flame retardant rating, durable PA66 housing, silver-plated copper alloy contacts, insertion force ≤75N , insulation resistance >500MΩ , ≥500 mating cycles, operating temperature -40°C to +125°C .
Contact resistance is the number to watch on paper. The CN06 and CN08 hold it at ≤0.2 mΩ , the larger models at ≤0.5 mΩ (measured at 100mA). Lower contact resistance means less heat generated at the junction, which is what keeps temperature rise low when a pack runs at full current for hours. The silver plating on the copper alloy contacts also resists oxidation, so the resistance does not creep up over the service life the way unplated contacts can.
The storage industry has been moving toward 1500V DC for utility-scale systems. At equivalent power, higher DC bus voltage delivers higher efficiency with lower current throughput.
Key Trade-off: Connectors, cabling, and insulation must reliably withstand significantly higher potential while maintaining verified engineering safety margins.
The CN series is purpose-engineered for high-potential demands: every model is rated 1500V DC, offering up to 4000V AC dielectric strength on CN08 through CN14 (CN06 rated 3000V/4000V AC).
Housing materials and creepage distances are sized for long-term 1500V DC continuous service. If your system still operates on a 1000V DC bus, CN06 seamlessly covers both classes.
Selecting energy storage connectors starts with matching the electrical and mechanical requirements of each connection point.Take the nominal current of the circuit and leave headroom for temperature rise. A 200A continuous circuit belongs in the CN10 or CN12 range, not CN08.
Each model pairs with a cable range: 10–25 mm² (CN06), 35–70 mm² (CN08), 50–95 mm² (CN10), 70–120 mm² (CN12), 150–185 mm² (CN14). Use the cable the system already specifies, then pick the model that fits both it and the current.
All CN models are rated 1500V DC; CN06 additionally covers 1000V DC systems.
Straight for in-line cable runs, right-angle for tight spaces and low-profile routing.
Choose the terminal style (M / LD / LM / T) and confirm the panel opening and mounting hole pattern (M4 for CN06–CN12, M5 for CN14).
Mechanical mounting dimensions, mating integrity, and terminal wire assembly specifications.Correct installation helps energy storage connectors maintain electrical reliability, sealing performance, and service life.
| Model | Cutout Diameter | Mounting Holes |
|---|---|---|
| CN06 | 18 ± 0.1 mm | 4 × M4 |
| CN08 | 21 ± 0.1 mm | 4 × M4 |
| CN10 | 25 ± 0.1 mm | 4 × M4 |
| CN12 | 27 ± 0.1 mm | 4 × M4 |
| CN14 | 30 ± 0.1 mm | 4 × M5 |
Insertion force is rated at ≤75N across the entire series. The durability rating of ≥500 cycles ensures full coverage for standard equipment maintenance intervals.
Strip cable jacket and conductor insulation strictly according to the specified lengths in the datasheet.
Crimp conductor terminals using the manufacturer-specified, matching crimp die tooling.
Perform and verify crimp pull-out retention force requirements prior to final shell assembly.
The quickest way to narrow the family is by application size:Both models are energy storage connectors designed for different battery current and cable-size ranges.
| Application | Typical Current | Recommended Model |
|---|---|---|
| Residential battery / small home storage | up to ~120A | CN06 (70A / 100A / 120A) |
| Commercial & industrial storage, rack-level | ~150A–250A | CN08 (150A / 200A / 250A) |
| Utility / larger racks | ~200A–350A | CN10 or CN12 |
| High-power containers, 500A-class | 400A–500A | CN14 (150–185 mm² cable) |
PVLinkTech provides product samples so you can evaluate quality, fit, and performance before placing an order.
Tell us about your project and our team will help you select the right waterproof connector sample.
Both straight and right-angle versions are available across the CN series, allowing the connector layout to match the available cabinet space and cable routing requirements.
Keeps the cable aligned with the mating direction, making it suitable for vertical cable runs, open layouts, and installations where rear cabinet clearance is not limited.
Routes the cable at 90°, helping reduce the space required behind the connection point. It is particularly useful where cabinet depth or cable bend radius is restricted.
Not every connection point in a storage system is a cable-to-connector joint. Some battery packs and distribution panels terminate on busbars, and for those points a bolt or copper bar connector is the right tool rather than a push-in connector. A push-in energy storage connector is ideal when a battery system needs a serviceable cable connection and fast field installation.
Designed for flexible field assembly and rapid maintenance cycles without specialized torque tools.
Optimized for permanent, continuous high-current power transfer directly onto heavy copper rails.
Our IP67 storage connectors are dust-tight and protected against temporary immersion in water.
Temperature is an essential separate validation criterion. The CN series is engineered to operate across –40°C to +125°C. Silver-plated contacts maintain contact resistance at ≤ 0.2–0.5 mΩ, helping minimize heat rise under sustained load. The robust PA66 housing meets the UL94 V-0 flammability rating.
Application Advisory: If your cabinet installation involves standing water or continuous submersion, please notify our engineering team before specification. We review application conditions before quotation to help ensure the selected connector is appropriate for the intended operating environment.
For modular battery stacks, PVLinkTech offers two stackable connector solutions. They are mechanically different from the CN series and are designed for pack-level interconnection rather than rack-level cabling.
| Model | Current Rating | Voltage Rating | Contact Material | Protection | Mounting |
|---|---|---|---|---|---|
|
70A Stackable (Floating)
|
50A–70A | 220V DC | Gold-plated brass | UL94 V-0 | Floating, panel T=3.0mm |
|
240A Stackable (Stationary)
|
120A–240A | 1500V DC | Silver-plated copper | IP67 UL94 V-0 | Stationary, M4 |
Tolerates alignment errors between stacked modules, helping speed up on-site assembly for residential battery installations.
Designed for heavy-duty commercial battery packs, supporting power connections up to 240A at 1500V DC.
Every CN connector is available with four terminal styles:
M — threaded hole type
LD — screw type
LM — nut type
T — through-hole type
Rigorous testing standards and complete in-house manufacturing control for tier-1 renewable & BESS reliability.
PVLINKTECH runs CNC machining, mold making, injection molding, and assembly in-house across an 6,800 m² facility founded in 2015. With connector bodies, tooling, and final assembly under one roof, we eliminate third-party delays, shorten sample lead times, and enforce rigorous quality gates at every single step.
The CN series carries CE and RoHS certification, with UL certification available per model. Every batch ships with certified inspection reports and material certificates on request.
Our specialized testing facilities feature:
PVLINKTECH’s connection products have shipped into large-scale renewable projects, including a 120MW PV plant in Indonesia (Tier-1 EPC) where the connectors have operated continuously for 18 months without a single field failure. Our dedicated BESS energy storage connector line comes off the exact same production floor under the same zero-defect quality system. * Detailed references available under NDA for serious buyers.
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