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Al2O3 96% 99.6% as Fired Bare Alumina Ceramic Substrate PCB, Automotive Ceramic Substrate, Micro Ceramic Heat Sink

Supplier SHENZHEN JINGHUI INDUSTRY LIMITED
Price $0.50 / Pieces
Availability In Stock
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Subtotal: $5

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Model NO.
JJBP-0111-0002
Standard Thickness
0.25-2.0mm Available
Thickness Tolerance
±0.03/0.05mm (Depending on Thickness)
Length and Width Tolerance
±2mm
Customized Service
OEM, ODM, Prototyping, Trial Order Supported
Transport Package
Individual Package
Specification
Max. up to 500mm x 500mm
Trademark
JingHui
Origin
China
HS Code
8547100000
Type:
Blank Ceramic Circuit Board
Forming Method:
Tape Casting
Material:
96%, 99.6% Alumina Ceramic
Features:
High Mechanical Strength, Small Dielectric Loss
Optional Color:
White, Ivory, Pink, Black
Density:
Over 3.70g/cm3

Al2O3 96% 99.6% as Fired Bare Alumina Ceramic Substrate PCB
Al2O3 96% 99.6% As Fired Bare Alumina Ceramic Substrate PCB

Features of the Alumina Ceramic Substrate

(1) Good insulation performance and high reliability.

(2) Low dielectric coefficient and good high frequency performance.

(3) Low thermal expansion coefficient (CTE) and high thermal conductivity.

(4) Good air tightness, stable chemical properties, and strong protection for electronic systems.

Applications
Al2O3 96% 99.6% as Fired Bare Alumina Ceramic Substrate PCB
Product Parameters

Alumina Ceramic Substrate
ItemUnit96% Al2O399.6% Al2O3
Mechanical Properties
Color//WhiteIvory
DensityDrainage Methodg/cm33.703.95
Light Reflectivity400nm/1mm%9483
Flexural StrengthThree Point BendingMPa>350>500
Fracture ToughnessIndentation MethodMPa·m1/23.03.0
Vickers HardnessLoad 4.9NGPa1416
Young's ModulusStretching MethodGPa340300
Water Absorption  %00
Camber/Length‰T≤0.3: 5, Others: ≤3‰≤3‰
Thermal Properties
Max. Service Temperature (Non-loading)/ºC12001400
CTE (Coefficient of
Thermal Expansion)
20-800ºC1×10-6/ºC7.87.9
Thermal Conductivity25ºCW/m·K>24>29
Thermal Shock Resistance800ºC10 TimesNo CrackNo Crack
Specific Heat25ºCJ/kg·k750780
Electrical Properties
Dielectric Constant25ºC, 1MHz /9.49.8
Dielectric Loss Angle25ºC, 1MHz ×10-4≤3≤2
Volume Resistivity25ºCΩ·cm10141014
Dielectric StrengthDCKV/mm1515

Product Tolerances
 
Alumina Ceramic Substrate
ItemSubstrate Thickness (mm)Standard Tolerance (mm)Best Tolerance (mm)Laser Cutting Tolerance (mm)
Length and Width Tolerance/±2 ±0.15
Thickness ToleranceT<0.3±0.03±0.01 
0.30-1.0±0.05±0.01 
T>1.0±10%±0.01 

Surface Roughness
 
Alumina Ceramic Substrate
MaterialSurface Roughness (μm)
As FiredLappedPolished
96% Al2O3Ra 0.2-0.75Ra 0.3-0.7Ra ≤0.05
99.6% Al2O3Ra 0.05-0.15Ra 0.1-0.5Ra ≤0.05

FAQ

Q1: Can the Size be Customized?
Yes, most of the alumina ceramic substrates are rectangular, square or round in shapes. Our rectangular shapes for as-fired alumina ceramic substrates are available up to 500mm×500mm. We offer customized products for special requirements.

Q2: What is the Maximum ServiceTemperature of the Alumina Ceramic Substrates?
Alumina ceramic substrates can withstand high temperature of 1200-1400 ºC.

Q3: What is the Minimum Thickness of the Alumina Ceramic Substrates?
Our standard thickness: 0.25mm, 0.30mm, 0.38mm, 0.50mm, 0.635mm, 0.76mm, 0.80mm, 0.89mm, 1.0mm, 1.5mm and 2.0mm. Minimum thickness to be 0.1mm. Welcome to inquire about customized services.

Q4: What is the Depth of the Laser Scribing?
The depth of the laser scribing of our ceramic substrate is about 35%-65% of the substrate thickness. The scribing spot can be in different sizes. Generally there are small spot 0.03-0.04mm (Substrate Thickness≤0.5mm ) and large spot 0.08-0.1mm (Substrate Thickness>0.5mm), and the accuracy is ±0.01mm.

Q5: Can Alumina Ceramic Substrates be Polished?
Yes, lapping and polishing will provide the desired flatness and thickness tolerance, with a surface roughness generally below Ra0.05.

Q6: What is the Camber of the Alumina Ceramic Substrates?
Our alumina substrates are 100% inspected for camber. The camber is less than 5‰ for 96% alumina with a thickness below 0.3mm. For 96% alumina with other thicknesses and for other purities, the camber is less than 3‰.

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