For B2B programs that require low-voltage e-drive (three-electric) system customization, a clear and repeatable workflow is essential to reduce rework and stabilize delivery. Shenzhen Jinhaixin Holdings Co., Ltd is an integrated manufacturing–trade enterprise focused on low-voltage three-electric system design, R&D, customization, production, and sales, with coordinated production bases in Shenzhen, Dongguan, Changzhou, and Hainan.
This page outlines how we manage a customization project—from requirements alignment and solution design to prototype build & testing, pilot run, mass production, and delivery verification—supported by quality management and multi-site coordination.
Our low-voltage e-drive customization typically centers on the three-electric components and their integration. The deliverables and validation items may vary by application, but the workflow remains consistent.
Motor selection and adaptation based on system targets and mechanical/electrical interfaces.
Controller configuration and integration to match control logic, wiring, and performance requirements.
Battery pack selection/integration aligned with voltage platform and system-level safety expectations.
Below is the practical workflow Shenzhen Jinhaixin typically follows to manage low-voltage e-drive customization with controlled handoff checkpoints.
Confirm application background, target voltage platform, interfaces, expected working conditions, and the customization scope (motor / controller / battery pack / system integration). Define responsibilities, timeline expectations, and key acceptance criteria to avoid ambiguity in later stages.
Based on confirmed requirements, we prepare a system solution including architecture choices, integration approach, and implementation boundaries. Technical alignment focuses on feasibility, interface compatibility, and manufacturability for stable production execution.
Build prototypes/samples for the customized program and complete essential system integration tasks. This stage establishes the baseline configuration for subsequent verification and iterative improvements.
Conduct prototype testing according to agreed checkpoints and update the design/configuration when issues are identified. The goal is to confirm stable operation under the defined usage conditions before moving into production scaling.
Execute a pilot run to verify process stability, assembly consistency, and key quality controls. This is a bridge between engineering validation and repeatable manufacturing output.
Run mass production with quality management and operational controls to help ensure stable and consistent delivery. As an integrated manufacturing–trade operation, we coordinate procurement, manufacturing, and delivery planning under one execution framework.
Perform delivery verification against the agreed acceptance criteria and handoff requirements. Provide the necessary deliverable confirmation to support customer receiving inspection and program launch readiness.
To keep customized programs manageable, we treat each stage as a controlled handoff with clear inputs/outputs. The exact documents and tests depend on your project scope and compliance needs.
| Stage | Typical Input | Typical Output / Checkpoint |
|---|---|---|
| Requirements alignment | Application info, target specs, interface constraints | Confirmed scope, acceptance criteria, timeline baseline |
| Solution design | Confirmed requirements and boundaries | Technical proposal and integration approach |
| Prototype build & test | Design baseline, components/configuration | Prototype verification results and iteration actions |
| Pilot run | Validated prototype baseline | Process stability confirmation for scaling |
| Mass production | Approved manufacturing baseline & quality controls | Repeatable output under quality management |
| Delivery verification | Finished goods and acceptance criteria | Delivery verification and handoff confirmation |
A single execution chain helps keep requirements, design intent, production planning, and delivery coordination consistent—especially important for customized three-electric programs.
We operate with a quality management framework and execution discipline to support product stability and reliability throughout prototyping, pilot run, and mass production.
With production bases in Shenzhen, Dongguan, Changzhou, and Hainan, we can coordinate resources and schedules to support program timelines and manufacturing continuity.
If you share your application overview, voltage platform, interface constraints, and acceptance checkpoints, Shenzhen Jinhaixin can align the customization scope and propose a practical project plan based on the workflow above.