Ceramic PCB · Alumina Substrate Specialist

Custom Alumina PCB
Manufacturing

Al₂O₃ ceramic substrates with full in-house circuit process -- DBC, DPC, AMB, Thick Film, Thin Film, LTCC and HTCC available

Prototype to production. Engineering review included. Tell us your thermal, electrical and mechanical requirements -- we match the grade and process.

All 7 process routes in-house
Alumina & AlN available
Reply within 24 hours
Material Selection

Is Alumina the Right Ceramic
for Your Design?

Alumina (Al₂O₃) suits most power, LED and industrial applications. Confirm your requirements before specifying grade and process.

Alumina Fit Checklist

  • Thermal conductivity requirement: 20-35 W/m·K is sufficient
  • Operating temperature: up to 300°C
  • Electrical isolation: high dielectric strength required
  • Mechanical: moderate vibration/shock environment
  • Cost: budget-conscious vs AlN
  • CTE: ~7 ppm/°C compatible with your device and substrate stack
  • Surface: standard surface finish acceptable
  • Volume: prototype or production quantities

If most items above match your design conditions, Alumina is likely the right path. If your thermal requirement exceeds 80 W/m·K or CTE matching is critical, review AlN.

Need Higher Thermal Performance?

AlN delivers 140-170 W/m·K. Better for high-power density and tight CTE matching.

→ Explore Aluminum Nitride PCB

Lower Cost, Lower Complexity?

Metal Core PCB (MCPCB) offers simpler processing at lower cost for standard LED and power applications.

→ Explore Metal Core PCB

Standard PCB Application?

If temperature and isolation requirements are within FR4 limits, standard PCB may be sufficient.

→ Explore Standard FR4 PCB
Grade & Process

Define the Alumina Grade
and Circuit Process

Alumina PCB starts with material grade selection, then circuit formation process. Both decisions affect thermal performance, surface quality, line resolution and cost.

Alumina Grade Comparison

Parameter Standard Alumina High-Purity Alumina
Al₂O₃ Purity 96% 99%+
Thermal Conductivity ~20 W/m·K ~30-35 W/m·K
Surface Roughness Standard Finer
Dielectric Strength High Very High
Cost Lower Higher
Typical Use Industrial, LED, Power Precision, Thin Film, RF

Grade selection depends on your thermal budget, surface finish requirement and circuit resolution. We will advise based on your design inputs.

Circuit Process Routes for Alumina Substrates

DBC

Direct Bonded Copper

Copper foil directly bonded to Alumina substrate at high temperature.

Power modules
IGBT substrates
DPC

Direct Plated Copper

Copper deposited via sputtering and plating on Alumina for fine-pitch circuits.

LED substrates
Fine-pitch circuits
AMB

Active Metal Brazing

Active metal brazing for high-adhesion copper bonding on Alumina substrates.

High-reliability power modules
Demanding thermal cycling
TF

Thick Film

Conductive paste screen-printed and fired onto Alumina substrates.

Hybrid circuits
Sensors
TnF

Thin Film

Vacuum-deposited metal on high-purity Alumina for precision circuits.

RF/microwave
Precision resistors
LTCC

Low Temperature Co-fired Ceramic

Alumina-based multilayer co-fired at low temperature for 3D integration.

3D RF integration
Sensors
HTCC

High Temperature Co-fired Ceramic

High-temp co-fired Alumina multilayer for extreme reliability applications.

Aerospace
Military electronics
Alumina PCB cross-section diagram showing substrate layers, copper metallization, device attach and heatsink interface

Cross-section: Alumina substrate / Copper layer / Metallization / Device attach / Heatsink interface

Circuit Design

Design the Copper, Metallization and Interfaces

Copper and Metallization

Define copper thickness, line width/space, pad geometry and surface finish (Ni/Au, Ag). We review against process-specific design rules for each route.

Holes, Slots and Edge Definition

Laser cutting, dicing or punch options depending on geometry. Edge quality and corner radius reviewed at DFM stage.

Device and Assembly Interfaces

Specify die attach, wire bonding, solder reflow or press-fit requirements. We define what the substrate supports and where assembly responsibility boundary lies.

Thermal and Mechanical Interface

Define heatsink or housing contact surface. Flatness, CTE stack and mounting method reviewed to avoid cracking under thermal cycling.

Note: Alumina is brittle. Mounting, clamping and CTE mismatch conditions must be reviewed before finalising the build.

DFM & Files

Resolve Alumina Manufacturing
and File Risks

Alumina requires specific handling at every stage -- geometry, edge definition, file format and version control all affect yield and delivery.

Manufacturing Risk Register

Brittleness and Handling

Ceramic cracks under point load. Mounting holes, edge chamfers and panel layout reviewed before production.

Flatness and Bow

Substrate flatness affects bonding and device attach yield. Thickness and panel size reviewed against tolerance.

Edge and Corner Quality

Laser cut vs diced edge quality differs. Specify edge type and corner radius at design stage.

Copper Adhesion

Each process route has different adhesion mechanism. DFM checks peel strength conditions for your application.

Thermal Cycling Compatibility

CTE mismatch between Alumina, copper and device can cause delamination. Stack reviewed against your cycle range.

File Requirements

Accepted File Formats

Gerber / DXF / DWG / PDF with full layer stack description

Required Inputs

Board outline with datum, layer stackup, drill/slot table, copper weight per layer, surface finish specification

Version Control

All files must carry revision number. Changes after EQ approval require new EQ cycle.

Packaging and Handling Notes

Specify fragile marking, tray/foam requirements and ESD protection if applicable.

Quality Verification

Verify Alumina Material
and Circuit Quality

Each Alumina PCB order goes through defined inspection and test stages. Verification scope is agreed before production starts.

Verification Item Method Frequency Acceptance Standard Record
Material CoC Supplier certificate review Every batch Grade and purity confirmed CoC on file
Dimensional Inspection CMM / optical measurement 100% or sample Per drawing tolerance Inspection report
Surface and Visual Optical / visual check 100% No crack, chip, void Visual record
Copper Adhesion Cross-section / peel test Sample basis Per process spec Test report
Electrical Continuity Flying probe / bed of nails 100% (by requirement) Per net list Test report
Dielectric / Isolation Hi-pot test Per order requirement Per design voltage spec Test record
Reliability (if required) Thermal cycling / damp heat Project basis Per agreed standard Reliability report

Verification scope, sampling plan and acceptance criteria are confirmed in the EQ or order acknowledgement. Non-conformance handling procedure available on request.

Production Evidence

See Evidence of Repeatable
Alumina PCB Production

We document the full chain from incoming substrate to finished board. Evidence is available for NPI qualification and repeat production review.

Material batch label and Certificate of Conformance for Alumina substrate

Material Traceability

Alumina substrate sourced and logged by grade, purity and batch number. CoC available for every order.

In-process records showing key parameters for Alumina PCB production

In-Process Records

Key process parameters recorded at each stage -- bonding, firing, plating or deposition depending on route.

Inspection and test report for Alumina PCB batch

Inspection and Test Reports

Dimensional, visual, electrical and isolation reports issued with each batch. Cross-section available for sample review.

Multiple batches of Alumina PCB boards showing repeat order consistency

Repeat Order Consistency

Repeat orders reference approved first article. Change control applied to material, process and file revisions.

Cost & Lead Time

What Determines Alumina PCB
Cost and Lead Time?

Alumina PCB cost and lead time are project-specific. The key drivers below explain why two similar-looking boards can differ significantly in price and schedule.

We do not publish fixed prices or standard lead times. All quotes are based on your confirmed material grade, process route, geometry and quantity.

Prototype Lead Time

Typically 7-10 business days, subject to material procurement and process route.

Production Lead Time

Typically 3-4 weeks, subject to material procurement and process route.

Cost & Lead Time Driver Matrix

Driver Cost Impact Lead Time Impact
Alumina grade / purity Higher purity = higher cost May affect substrate procurement
Substrate thickness Thicker = higher material cost Standard thickness faster
Board size / utilisation Larger or irregular = lower utilisation Affects panel planning
Circuit process route Thin Film / AMB higher than DPC Thin Film / LTCC / HTCC longest
Line width / tolerance Tighter = higher NRE and process cost Adds DFM and EQ time
Surface finish Ni/Au standard; others on request Depends on process availability
Quantity Lower unit cost at volume; NRE amortised Production run longer than prototype
Test requirements Hi-pot, reliability test add cost Adds schedule days
Expedite Available subject to capacity Discuss at RFQ stage
FAQ

Alumina PCB Questions Before
You Request a Quote

What is the difference between Alumina PCB and Aluminum PCB?

These are completely different products. Alumina PCB uses aluminum oxide (Al₂O₃) ceramic as the substrate -- a non-metallic material with high electrical isolation and thermal conductivity of 20-35 W/m·K. Aluminum PCB (MCPCB) uses a metal aluminum base with a dielectric layer, typically achieving 1-3 W/m·K. They are not interchangeable. If you are searching for metal-base boards, see our Metal Core PCB page.

→ Metal Core PCB
How do I choose between Alumina and Aluminum Nitride (AlN)?

If your thermal conductivity requirement is below 40 W/m·K, Alumina is usually sufficient and more cost-effective. If you need 80 W/m·K or above, or require tighter CTE matching with silicon or GaN devices, AlN is the right choice. We can review your thermal budget and advise.

→ Aluminum Nitride PCB
Which circuit process routes are available for Alumina substrates?

We support all seven process routes on Alumina substrates: DBC, DPC, AMB, Thick Film, Thin Film, LTCC and HTCC. The right route depends on your copper thickness, line resolution, operating temperature and reliability requirements. We will recommend based on your design inputs.

→ Ceramic PCB -- Process Routes
Do you provide device attach, wire bonding or PCB assembly on Alumina PCB?

Our scope covers the ceramic substrate and circuit layer. Device attach, wire bonding and board-level assembly are outside our standard delivery. If your project requires a turnkey path, contact us to discuss referral or partner options.

→ PCB Assembly
Start Your Project

Request an Alumina PCB Quote
or Process Review

Two ways to start -- depending on how complete your design inputs are.

Your Design Is Defined

You have material grade, process route, geometry, quantity and file ready.

Submit with your quote request:

  • Alumina grade / purity
  • Circuit process route
  • Board dimensions and thickness
  • Copper weight and line spec
  • Surface finish
  • Quantity and target date
  • Design files (Gerber / DXF)
Request an Alumina PCB Quote

Your Requirements Are Defined, Design Is Not

You have thermal, electrical or mechanical targets but have not locked material or process yet.

Share with your review request:

  • Application and operating conditions
  • Thermal dissipation target
  • Voltage isolation requirement
  • Any known mechanical constraints
  • Quantity estimate and timeline
Request a Process Review
No MOQ for prototypes
DFM review included with every order
Engineering response within 24 hours
All files treated as confidential