EV Battery & Energy Storage Prototype Manufacturing | CNC Precision Singapore | IDMockup
EV BATTERY & RENEWABLE ENERGY — PRECISION PROTOTYPE MANUFACTURING

Power Your
Next-Gen Battery
Platform

Precision CNC prototypes, battery pack appearance models, and OEM production runs for EV battery manufacturers, ESS developers, and clean energy OEMs — battery modules, BMS enclosures, thermal management systems, and fuel cell components. Validated in 5–14 days. Singapore, Taiwan, Thailand & Japan.

250+
Battery & Energy Projects
±0.05mm
CNC Cell Tray Tolerance
4
Factories TW · CN · TH
5–14
Days Rapid Prototype
📋
Upload CAD / RFQ
STEP · IGES · PDF
⚙️
5-Axis CNC Cell Tray
AL6061 · AL7075 · SUS304
🔋
Battery Pack Housing
MODULE · PACK · COVER
🌡️
Thermal Management Plate
COOLING · MANIFOLD
🖥️
BMS Enclosure Prototype
CONTROL UNIT · HOUSING
🌞
ESS & Solar Housing
RESIDENTIAL · UTILITY
Fuel Cell Components
BIPOLAR · STACK FRAME
🎨
CMF & Surface
ANODIZE · COAT · PVD
🔬
CMM & Leak Test
IP67 · GD&T · REPORT
📦
OEM Pack & Ship
DHL WORLDWIDE
📋
Upload CAD / RFQ
STEP · IGES · PDF
⚙️
5-Axis CNC Cell Tray
AL6061 · AL7075 · SUS304
🔋
Battery Pack Housing
MODULE · PACK · COVER
🌡️
Thermal Management Plate
COOLING · MANIFOLD
🖥️
BMS Enclosure Prototype
CONTROL UNIT · HOUSING
🌞
ESS & Solar Housing
RESIDENTIAL · UTILITY
Fuel Cell Components
BIPOLAR · STACK FRAME
🎨
CMF & Surface
ANODIZE · COAT · PVD
🔬
CMM & Leak Test
IP67 · GD&T · REPORT
📦
OEM Pack & Ship
DHL WORLDWIDE
Real Work · Delivered

Battery & Energy Parts — Straight Off Our Machines

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EV battery prototype CNC precision — IDMockup Taiwan Singapore
CNC 5-AXIS · AL6061 · ANODIZEEV Battery Enclosure Mockup
Battery module tray CNC precision — IDMockup
CNC 5-AXIS · ±0.05mmHeat Sink Model
Thermal management plate CNC — IDMockup
OVERMOULD · AL6061 · PLASTIC · CMFEV Charging Gun Housing
BMS enclosure RIM moulded — IDMockup
3D PRINTING + CNC + PU CASTINGServer Air Duct
Energy storage system housing model — IDMockup
CNC + CMF · POWDER COAT Laptop Battery Chassis
Why It Matters

Why Battery OEMs Can’t Skip Precision Prototyping

🔋

Cell Fit & Module Geometry Validation

Cylindrical, prismatic, and pouch cell trays require exact cell-to-cell clearances, busbar alignment, and cover seal geometry. CNC AL6061 prototypes confirm dimensional accuracy before hard tooling cuts.

🌡️

Thermal Management Proof of Concept

Liquid cooling plate channel geometry, cold-plate manifold ports, and thermal interface material gaps must be validated on physical parts. CNC aluminium FSW-welded prototypes verify flow and sealing before production.

💧

IP67 & IP68 Seal Validation

Battery pack lower tray, lid, and connector gland IP ratings are safety-critical. Physical prototypes with exact seal groove geometry and surface finish allow leak and immersion testing before mass production.

Busbar & Electrical Integration

Busbar routing channels, terminal insert positions, and HV connector cutouts must be validated with the actual harness before tooling. CNC models confirm clearances and torque access at every fastener point.

🛡️

Structural Crash & Vibration Review

EV floor-mounted battery packs face side-impact, vibration, and floor-load requirements. Physical structural samples confirm section geometry and support rib placement before body-in-white integration testing.

🔒

NDA-Protected Platform IP

Next-generation cell chemistry platforms and pack architectures are your core competitive advantage. We sign mutual NDA before any CAD review. Cell format, chemistry, and BMS architecture remain fully confidential.

Applications

Battery & Energy Prototype Applications

From cylindrical cell module trays to gigawatt-scale ESS housings — IDMockup produces the precision CNC prototypes and appearance models that EV battery manufacturers, stationary storage developers, and renewable energy OEMs rely on from concept through homologation.

// 01

EV Battery Pack & Module EV

Cell module trays (cylindrical / prismatic / pouch), bottom tray and lid assemblies, module compression plates, cross-member brackets, and thermal barrier inserts. AL6061 FSW-welded or CNC to ±0.05mm cell slot tolerance.

Cell TrayPack HousingModule LidEV OEM
// 02

Battery Management System (BMS)

BMS master & slave control unit enclosures, HV junction box housings, contactor bracket assemblies, cell voltage sense PCB frames, and current sensor bodies. AL6061 or EMI-shielded AL5052 with IP67 seal grooves.

BMS MasterHV Junction BoxContactor BracketSensor Body
// 03

Thermal Management System

Liquid cooling bottom plates, serpentine channel cold plates, coolant manifold inlet / outlet blocks, heat exchanger end caps, and TIM spacer frames. AL6061 FSW / vacuum brazed with pressure-test ports.

Cold PlateManifoldHeat ExchangerTIM Frame
// 04

Energy Storage System (ESS) Housings

Residential wall-mount battery enclosures, commercial rack-mount ESS cabinets, outdoor NEMA 4X / IP66 housing prototypes, cable entry gland plates, and module stacking frames. CNC + RIM + powder coat.

Wall-MountRack CabinetNEMA 4XCable Gland
// 05

Fuel Cell Components H₂

Bipolar plate tooling masters, end plate models, MEA frame gaskets, hydrogen port fittings, and stack compression fixtures. Graphite toolboard or AL6061 for form, fit, and dimensional verification of PEM / SOFC stacks.

Bipolar PlateEnd PlateMEA FrameH₂ Port
// 06

Solar & Wind Power Electronics

Inverter aluminium extrusion housings, power converter heat sink bases, combiner box enclosures, outdoor junction boxes, and DC-DC converter brackets. AL6061 / AL6063 extrusion-match prototypes and injection-moulded covers.

Inverter HousingHeat SinkCombiner BoxJunction Box
Manufacturing Capabilities

Every Process Battery & Energy Demands — Under One Roof

⚙️

5-Axis CNC Machining

Battery cell trays, cooling plate channel profiles, and BMS enclosure housings in AL6061, AL7075, and SUS304 to ±0.05mm. Complex pocket geometry and tight slot tolerances for prismatic cells.

Learn More →
🔩

Sheet Metal & FSW

AL5052 / AL6061 laser-cut and CNC-bent trays, welded with FSW or TIG for leak-free cooling plates, battery pack lower trays, and ESS rack structures.

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🖨️

SLA / SLS 3D Printing

48-hour concept housings for BMS enclosures, ESS wall-mount form studies, and cable routing ergonomic checks before committing to CNC or tooling spend.

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💉

Reaction Injection Moulding

Lightweight ESS enclosure panels, BMS cover prototypes, and large-format inverter housings. Low-pressure RIM from 5 pieces — bridge tooling before hard injection mould investment.

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🏭

Die Casting (AL / Zn)

ADC12 / AL6061 structural battery brackets, BMS housing nodes, and inverter heat sink bases for weight-simulation prototypes before hard die investment.

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🎨

CMF & Surface

Hard anodize, powder coat, electroless nickel for corrosion resistance, and thermal spray coatings. Salt-spray and IP certification testing coordination available.

Learn More →
💧

Vacuum Casting

Silicone gaskets, seal ring prototypes, and TPU cable strain-relief boots — Shore A/D matched to production specification for IP sealing validation.

Learn More →
🔬

CMM & Leak Testing

Zeiss / Renishaw CMM for GD&T on cell slots and seal grooves. Leak test coordination for cooling plate and pack housing prototypes. Full dimensional report per delivery.

Learn More →
Materials & Specifications

Lightweight, Thermally Conductive,
Corrosion-Resistant Materials

Battery and energy storage components demand exceptional thermal conductivity, corrosion resistance in electrolyte environments, dimensional stability under thermal cycling, and compatibility with FSW welding and vacuum brazing. We stock and process every alloy your pack architecture requires.

AL6061-T6AL7075-T6AL5052 AL6063SUS304ADC12 PEEKPOMNylon PA66 PP-GF30TPU 85ASilicone
Surface Treatments
Hard Anodize II/III Powder Coat (UV) Electroless Nickel Chem Film MIL-DTL Thermal Spray Passivation
Key Specifications
CNC Cell Slot Tol.
±0.05mm
IP Rating Tested
IP67/68
Max Part Size
1,500mm
Rapid Proto
3–7 Days
Battery-Specific Grade Recommendations

Cell module trays and cooling plates default to AL6061-T6 for FSW weldability and thermal conductivity. Pack lower trays in AL5052 for formability and corrosion resistance. Structural battery enclosures in AL7075-T6 for high strength. BMS enclosures in AL6061 or EMI-shielded AL5052. Gaskets and seal rings in silicone Shore 40–70A. Electrical isolators in PEEK or POM.

Our Process

From STEP File to Validated Battery Part — 5 Steps

01

Upload & RFQ

Submit STEP / IGES / PDF. Detailed quote with material, weld process, IP sealing method, and lead time within 24 hours.

02

DFM Review

Engineers check cell slot tolerances, FSW / TIG weldability, seal groove design, and thermal management channel feasibility before committing.

03

Machine & Form

5-axis CNC, sheet metal forming, FSW welding, or RIM begins with live progress updates throughout production.

04

Surface & Seal

Hard anodize, powder coat, electroless nickel, or chem film applied. Silicone gaskets and seal rings vacuum-cast matched to IP spec.

05

CMM, Leak Test & Ship

Full CMM report, pressure / immersion leak test coordination, and DHL / air freight delivery to your integration or test facility globally.

Trusted by Global EV, Energy Storage & Electronics OEM Leaders

Dell Chicony ECS Lite-On Gigabyte Foxconn Wistron
Start Your Project

Your Next Battery Platform
Starts With a Precision Pack Model

Send us your cell format, pack geometry, thermal management architecture, or even a concept sketch. Our battery engineering team responds with a detailed quote — material, weld process, IP sealing, and lead time — within 24 hours. NDA signed on request before any file review.

EV Battery & Energy Storage Prototype Manufacturing — IDMockup Singapore

IDMockup is Asia’s precision engineering partner for the EV battery and renewable energy industry, delivering CNC-machined battery pack housing prototypes, FSW-welded thermal management plates, BMS enclosures, and ESS housing models for EV battery manufacturers, energy storage developers, and clean energy OEMs. Headquartered in Taipei, Taiwan, with manufacturing in Dongguan, Kunshan, and Thailand, IDMockup serves the complete EV battery supply chain across Singapore, Japan, Taiwan, and Thailand. Our capabilities cover 5-axis CNC cell module trays and cooling plates to ±0.05mm, FSW and TIG aluminium welding for leak-free thermal management prototypes, RIM for ESS enclosure panels, vacuum-cast silicone IP67 seals, and hard anodize / electroless nickel surface treatments. As a trusted prototype Singapore partner and aluminium CNC Singapore supplier, IDMockup supports battery cell manufacturing development cycles, homologation testing, investor showcase models, and production ramp-up for traction battery pack developers. From 1 EV battery prototype to 1,000-piece OEM battery component runs, IDMockup powers your energy storage mission.

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Batteries industry prototypes, energy solutions, precision manufacturing, high-performance components, custom prototypes, advanced technology, battery prototypes, energy innovation, efficient production, tailored solutions

Batteries and Renewable Energy Industry

Batteries industry prototypes, energy solutions, precision manufacturing, high-performance components, custom prototypes, advanced technology, battery prototypes, energy innovation, efficient production, tailored solutions

Batteries and Renewable Energy Industry

Why Batteries and Renewable Energy Industry needs Mockup?

In the battery and new energy industries, plastic and metal prototype molds effectively enhance product design accuracy, safety, and production efficiency. These molds provide critical support throughout various stages of product development, helping businesses optimize designs, validate technologies, and improve production processes. This ensures that the final product meets expected performance and quality standards in the market.

Benefits

☑️ Design Verification and Prototype Development: During the design process, plastic and metal prototype molds are used to create models for design verification before mass production. These models allow engineers to examine dimensions, shape, structure, and component fit, ensuring precision and functionality of the final product.

☑️ Structural Strength and Durability Testing: Using metal or plastic prototype molds for strength and durability tests helps simulate real-world mechanical stress and external impacts, ensuring long-term stability and durability of the equipment.

☑️ Enclosure and Sealing Verification: The casing of batteries and protective enclosures of new energy devices need to be durable and sealed to prevent dust, moisture, or chemicals from entering. Plastic and metal prototype molds can help test the sealing effectiveness of the enclosure, ensuring sufficient protection in various environments and extending the equipment’s lifespan.

☑️ Packaging and Transportation Testing: Battery packaging and transportation involve extensive model applications. Models are used to design and test packaging materials and structures to ensure the battery remains undamaged during transportation and effectively withstands external forces.

Batteries and Renewable Energy – Mockup Application

EV Battery Modules and Lithium Battery Enclosures: Models are used in the design and testing of EV battery modules to ensure structural stability, thermal performance, and safety. Models simulate the operation of battery packs, helping optimize the arrangement, connection methods, and overall efficiency.

Energy Storage System Enclosures: Models are used to design and test the strength and heat dissipation of enclosures, ensuring the system operates stably in different environments and provides adequate safety protection.

Charging Stations and Power Supply Equipment: Models are employed to test the structure and internal layout of charging station enclosures, ensuring that the equipment meets waterproofing, dustproofing, and heat dissipation standards, particularly for outdoor use.

Battery Cooling Systems: Models are used in the design of battery cooling systems, especially in large battery modules like those used in EVs and energy storage systems.

Batteries industry prototypes, energy solutions, precision manufacturing, high-performance components, custom prototypes, advanced technology, battery prototypes, energy innovation, efficient production, tailored solutions
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We help from Prototyping to Production

At IDMockup, we deliver unparalleled speed and efficiency for product prototyping and production. Our on-demand manufacturing skills enable us to respond various customer demands and deliver top-notch manufactured parts and products within a short period of time.

Batteries industry prototypes, energy solutions, precision manufacturing, high-performance components, custom prototypes, advanced technology, battery prototypes, energy innovation, efficient production, tailored solutions
1. Inquiry

Provide appropriate quotations and working days based on the needs and 3D drawings, samples and other relevant information provided by the customer.

2. Modification

Production begins after receiving the order. Our professional team will discuss and modify the 3D drawings with the customer.

Batteries industry prototypes, energy solutions, precision manufacturing, high-performance components, custom prototypes, advanced technology, battery prototypes, energy innovation, efficient production, tailored solutions
3. Production

Transfer the completed processing drawings to the CNC/3D printing machine for molding and monitor the production status

Batteries industry prototypes, energy solutions, precision manufacturing, high-performance components, custom prototypes, advanced technology, battery prototypes, energy innovation, efficient production, tailored solutions
4. Assembly

The finished parts will be surface-modified to the customer-specified appearance, and then assembled into the finished product.

5. Delivery

Package the finished product properly and send it to the customer’s designated destination or deliver it to the customer within the delivery period.

Our Manufacturing Services

IDMockup offers top-notch manufacturing capabilities, whether for rapid prototyping or custom production orders. Our self-owned factories and satellite factories are equipped to efficiently produce complex, high-quality parts.

CNC Machining >

Achieve precise and intricate designs through milling, turning, and post-processing techniques, ensuring ideal results for both complex prototypes and functional metal or plastic parts.

Electric Discharge Machining (EDM) >

It provides unparalleled precision, capable of cutting complex and hard metal materials, making it ideal for producing intricate and detailed parts.

Vacuum Casting >

The process of using silicone molds to produce high-quality plastic or rubber parts allows for complex designs and fine detail work. It is an ideal technique for small-batch prototyping or low-volume production.

Reaction Injection Molding (RIM) >

Injected into the mold under low pressure and shaped, this process is ideal for mid-high-volume complex products. It offers low costs, material versatility, high strength, and cost efficiency, suitable for plastic parts.

Rapid Tooling (RT) >

Rapid tooling creates molds for mid-scale production. It offers the advantages of low development costs and short production times, extending the benefits from the R&D stage to the production phase.

Aluminum Extrusion / Die Casting >

Aluminum extrusion and die casting are the keys in manufacturing. Extrusion is ideal for producing long parts, ranging from simple to complex shapes, while die casting is suited for mass production of high-precision, intricate parts.

3D Printing >

Fast and versatile, this method quickly produces complex geometries from various materials, making it ideal for innovative designs.

3D scanning / Reverse Engineering >

By accurately capturing the physical dimensions and geometry of an object, it can be converted into a digital model for redesign, modification, or replication.

CMF Options

Materials

We provide a wide range of materials, including metals, plastics, and composites.

Surface Finishings

We offer superior surface finishes that enhance part durability and aesthetics for applications requiring smooth or textured surfaces.


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