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ISO 9001:2015 & IATF 16949 Certified Facility

High-Precision Custom Heat Sinks

HeatsinkMaker engineers and manufactures high-performance thermal dissipation solutions for power electronics, telecommunications, automotive EV systems, and high-density industrial computing. From rapid DFM analysis to multi-axis CNC prototyping and mass production.

±0.005 mm
CNC Machining Accuracy
48-Hour
Rapid DFM & Quote
100%
Helium Leak Inspected

Rapid Engineering Specification

RFQ Desk
Supported Formats STEP, IGES, DXF, DWG, PDF
Core Materials AL6063, AL6061, C1100 Copper
Manufacturing Processes Extrusion, Skiving, Friction Stir Welding
Surface Treatment Anodizing (RoHS), Electroless Ni, SurTec
Prototype Lead Time 5 to 7 Business Days
25,000+ m²

Production Facility

180+ Sets

High-Precision CNC Centers

50+

Thermal & Mechanical Engineers

100% Traceable

Material Certification

Core Product Capabilities

Engineered Thermal Dissipation Architectures

HeatsinkMaker provides custom thermal fabrication using specialized metallurgical forming, precision cutting, and advanced hermetic sealing to meet rigorous cooling demands.

Extruded Heat Sinks

Cost-effective aluminum 6063-T5 solutions for medium-to-high volume production. Custom cross-sections, high aspect ratio fin designs, and integrated mounting channels.

  • • Fin Aspect Ratio: Up to 24:1
  • • Secondary CNC milling, tapping & slotting
  • • Standard & high-density fin profiles

Skived Fin Heat Sinks

Carved directly from one continuous block of solid copper or aluminum. No thermal contact resistance between fin and base plate, yielding optimal conduction.

  • • Fin Thickness down to 0.2 mm
  • • High-density fin spacing: 0.5 mm pitch
  • • Ideal for restricted-airflow enclosures

Liquid Cold Plates

Engineered cooling plates utilizing vacuum brazing, friction stir welding (FSW), and deep-hole drilling for battery packs, IGBT converters, and server racks.

  • • Internal turbulator & micro-channel profiles
  • • Working pressure rated up to 15 bar
  • • 100% pressure drop and helium leak tested

Heat Pipe & Vapor Chamber Assemblies

Integrated two-phase cooling modules combining sintered copper powder heat pipes, stamped aluminum zipper fins, and precision base blocks for localized heat spreading.

  • • Copper-water sealed two-phase systems
  • • Thermal conductivity > 5,000 W/m·K
  • • Nickel plated with epoxy or solder bonding

CNC Precision Machined Components

Dedicated 3-axis, 4-axis, and 5-axis vertical machining centers handling complex geometrical cavities, fine surface flatness, and thermal interface recesses.

  • • Surface flatness within 0.02 mm / 100 mm
  • • Surface roughness down to Ra 0.4
  • • In-house CMM verification reporting

Bonded & Folded Fin Stacks

High-density fin arrays mechanically bonded or brazed into grooved aluminum/copper base plates, maximizing convective heat transfer in constrained spaces.

  • • Mixed material setups (Cu base + Al fins)
  • • Fin aspect ratios exceeding 40:1
  • • Specialized structural thermal epoxies
Technical Feasibility

Precision Manufacturing Tolerances & Parameters

Our manufacturing plants operate under rigid statistical process controls. Every component produced by HeatsinkMaker is engineered to meet strict thermal interface requirements and mechanical tolerances.

Need specific custom parameters? Our application engineering team provides Design for Manufacturability (DFM) reviews to optimize tooling, minimize weight, and reduce unit costs before cutting metal.
Parameter / Capability Standard Tolerance Precision Tolerance
CNC Machining Accuracy ±0.05 mm ±0.005 mm
Thermal Contact Surface Flatness 0.05 mm / 100 mm 0.015 mm / 100 mm
Fin Thickness (Skiving) 0.3 mm – 0.5 mm 0.15 mm ±0.02 mm
Fin Gap Spacing 1.0 mm – 2.0 mm 0.35 mm ±0.03 mm
Liquid Cold Plate Hermetic Leak Rate < 1×10-5 mbar·L/s < 1×10-8 mbar·L/s
Surface Roughness (Ra) Ra 1.6 μm Ra 0.4 μm
Anodizing Layer Uniformity 8 – 15 μm 20 – 25 μm Hard Anodize
Engineering & Production Flow

Structured B2B OEM / ODM Engagement Workflow

How HeatsinkMaker collaborates with your thermal design and sourcing engineering teams.

Phase 01

DFM & Simulation

Review 3D models, thermal dissipation budgets, CFD aerodynamic models, and material suitability within 24–48 hours.

Phase 02

Rapid Prototyping

High-speed CNC machining or rapid skiving tooling to deliver functional test samples within 5 to 7 business days.

Phase 03

Validation & Tooling

CMM dimensional inspection, thermal resistance wind tunnel validation, and burst pressure testing for liquid blocks.

Phase 04

Mass Manufacturing

Production scaling with dedicated QA jigs, automated surface finishing, continuous batch tracing, and palletized export packaging.

Industries Served

Engineered for High-Stress Thermal Applications

Our customized cold plates and heat sink assemblies operate in mission-critical environments across international markets.

01 / Automotive & EV

EV Inverters & Battery Packs

Lightweight aluminum friction stir welded cooling plates with high thermal shock tolerance for OBCs, DC-DC converters, and motor drivers.

02 / Telecommunications

5G Remote Radio Units (RRU)

High-aspect-ratio natural convection heat sinks designed for outdoor IP67 environments with corrosion-resistant coatings.

03 / Power Electronics

IGBT & Thyristor Modules

Ultra-flat copper and copper-embedded aluminum bases offering minimal contact thermal resistance for solar inverters and wind converters.

04 / Enterprise Computing

AI Accelerators & Server Blades

Hybrid vapor chamber assemblies and direct-to-chip liquid cold plates capable of handling localized fluxes up to 500W/cm².

05 / Medical Technology

Imaging & Laser Equipment

Vibration-free, silent liquid chill blocks with tight fluid cleanliness controls conforming to medical device standards.

06 / Energy Storage

BESS Thermal Plates

Large-format extruded and roll-bonded liquid circulation plates ensuring temperature uniformity across large battery cell banks.

Direct Engineering Support

Ready to Validate Your Thermal Design or Request an RFQ?

Send your specifications, CAD models (STEP/IGES), or drawings. Our senior thermal engineering team will provide a comprehensive DFM assessment and quotation within 24 to 48 hours.