• OSP Black Oil Double Panel PCB Board High Temperature Resistant For Automotive
OSP Black Oil Double Panel PCB Board High Temperature Resistant For Automotive

OSP Black Oil Double Panel PCB Board High Temperature Resistant For Automotive

Product Details:

Place of Origin: China
Brand Name: xingqiang
Certification: ROHS, CE
Model Number: Varies by goods condition

Payment & Shipping Terms:

Minimum Order Quantity: 5 square meters
Price: NA
Delivery Time: 7-10 work days
Payment Terms: ,T/T,Western Union
Supply Ability: 3000
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Detail Information

Treatment: HASL,OSP Silk Screen: White
Warranty: 6 Months Components Purchasing: Yes
Max Board Size: 528 Mm X 600 Mm RoHS Compliant: Yes
Component: Qualified IPC Class: Class 2
Copper Thickness: 2OZ Layers: 2-10
Categary: Computer PCB The Min Hole: 0.1mm
Smt: Support
Highlight:

Black Oil Double Panel PCB Board

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OSP PCB Board High Temperature Resistant

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Double Panel PCB Board For Automotive

Product Description

High temperature resistant OSP black oil double panel PCB

Product Description
High temperature resistant OSP black oil double panel PCB is a double-sided printed circuit board integrating high temperature resistant performance, OSP (Organic Solderability Preservative) surface treatment, and a black solder mask. It adopts a double-sided wiring design: the substrate is made of high temperature resistant materials (such as high Tg FR-4), and the surface is coated with black ink as the solder mask, which provides insulation, protects the circuit, and offers good light-shielding properties. Both sides of the board undergo OSP treatment on exposed copper surfaces, forming a thin organic protective film through chemical reactions to prevent copper oxidation while maintaining solderability. This PCB is suitable for circuits operating in high temperature environments (typically above 130℃) and adapts to the welding needs of conventional and precision components.
Core Characteristics
  • High temperature resistance + OSP treatment + black oil solder mask combination: The high temperature resistant substrate ensures stable performance under high heat; the ultra-thin (0.1-0.3μm) OSP film guarantees oxidation resistance and solderability; the black ink provides stable insulation, excellent light-shielding, and a professional appearance.
  • Double-sided structure: Supports bidirectional signal transmission, meeting the layout requirements of electronic devices working in high temperature environments and small to medium-scale circuit design needs.
  • Strong compatibility: The OSP process, high temperature resistant substrate, and black solder mask ink work well together, integrating smoothly into conventional production processes.
Main Advantages
  • Excellent high temperature stability: The high temperature resistant substrate and heat-resistant black ink allow the PCB to maintain structural and performance integrity in high temperature operating environments, suitable for fields like automotive electronics and industrial control.
  • Reliable solderability: The OSP film is easily removed during soldering, enabling good solder wetting on copper surfaces, reducing cold solder joint risks, and ensuring stable connections even for fine-pitch components, even after exposure to high temperatures.
  • Superior light-shielding and protection: The black solder mask provides effective light-shielding, preventing light interference in sensitive circuits; it also isolates circuits from external environments, enhancing corrosion and abrasion resistance.
  • Cost-effectiveness: Combining the low-cost OSP process with economical black ink and high temperature resistant materials (compared to some advanced high temperature substrates), the PCB has relatively controllable production costs.
  • Environmental friendliness: The OSP process uses non-toxic organic compounds, and the black ink is generally environmentally friendly, complying with environmental regulations and reducing hazardous waste.
  • Dimensional precision: The thin OSP layer and black ink do not significantly affect the board’s thickness or flatness, making it suitable for high-density circuit designs in high temperature applications requiring precise dimensions.


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