PCB HDI 8 เลเยอร์ 1+N+1 ของ UGPCB: A Comprehensive Guide
In the relentless pursuit of miniaturization and enhanced performance in electronics, การเชื่อมต่อระหว่างกันที่มีความหนาแน่นสูง (HDI) PCBS have become the cornerstone. UGPCB’s 8-Layer 1+N+1 HDI product represents a sophisticated solution for designers pushing the boundaries of what’s possible. This article provides a detailed look at this advanced แผงวงจรพิมพ์ เทคโนโลยี.

What is an 8-Layer 1+N+1 HDI PCB?
An 8-Layer 1+N+1 HDI PCB is a specific type of high-density interconnect board. The nomenclature “1+N+1” describes its microvia build-up structure.
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The First and Last ‘1’: These represent a single layer of high-density microvias on the top and bottom surfaces of the board. These microvias are typically created using laser drilling.
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The ‘N’: This represents the core of the board, which in this case is a standard 6-layer PCB หลายชั้น (making the total 8 ชั้น). The core contains through-holes or buried vias that connect the internal layers.
This structure allows for a very high number of interconnections in a compact space, making it ideal for complex, space-constrained การออกแบบ PCB essential for modern microelectronic products.
Key Design Features and Specifications
UGPCB manufactures this HDI PCB with precision, adhering to the following critical specifications:
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วัสดุ: High-Tg FR-4, a robust and reliable laminate offering excellent thermal and mechanical stability.
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ความหนาของบอร์ด: A finished thickness of 0.8mm, supporting slim product profiles.
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Copper Weight: 1 ออนซ์ (35µm) for inner layers and 0.5 ออนซ์ (17.5µm) for outer layers. This balance ensures good current carrying capacity while allowing for finer outer layer trace etching.
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พื้นผิวเสร็จสิ้น: ทองแช่ (เห็นด้วย) over an OSP (สารกันบูด) foundation. This combination provides a flat, durable surface for soldering and excellent shelf life.
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Minimum Trace/Space: 3 MIL (0.075 มม), enabling high-density circuitry.
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ขนาดรูขั้นต่ำ: 0.2mm for mechanical drills and an ultra-fine 0.1mm for laser-drilled microvias.
How This HDI PCB Structure Works
ที่ “1+N+1” architecture functions by creating a more efficient routing pathway. Instead of using large through-holes that consume valuable real estate on every layer, นี้ HDI PCB design utilizes microvias. These tiny laser-drilled holes connect only adjacent layers (เช่น, L1 to L2, or L8 to L7). นี้ “stacked” หรือ “staggered” via approach frees up routing channels on the inner layers, allowing for a much greater component density and more efficient signal paths, which is crucial for high-speed แอสเซมบลี PCBA.
Primary Applications and Use Cases
The primary application for this advanced HDI PCB is in sophisticated microelectronic products. Specific use cases include:
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Wearable Technology: Smartwatches, fitness trackers, and medical monitors.
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Advanced Mobile Devices: สมาร์ทโฟน, แท็บเล็ต, and ultra-portable laptops.
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High-Density Medical Equipment: Miniaturized medical imaging and diagnostic devices.
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Aerospace and Defense Avionics: Where reliability and size are paramount.
The Material Composition: FR-4 Laminate
The choice of FR-4 material is strategic. It provides an excellent balance of performance, ค่าใช้จ่าย, and manufacturability. For this 0.8mm thick HDI PCB, a high-grade FR-4 with a high glass transition temperature (ทีจี) is used to withstand the thermal stress of multiple lamination cycles and lead-free พีซีบี soldering processes.
Performance and Structural Advantages
The structure of the 1+N+1 HDI board directly translates to significant performance benefits:
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Enhanced Signal Integrity: Shorter interconnection paths reduce signal loss and propagation delay.
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Improved Thermal Management: The dense via structure aids in heat dissipation.
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Superior Reliability: The use of microvias reduces the risk of solder joint failure during thermal cycling.
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Reduced Size and Weight: The core advantage of HDI technology, enabling smaller end products.
A Simplified Overview of the Production Process

The manufacturing of this HDI PCB is a multi-step, precision process:
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Core Fabrication: The inner ‘N’ แกนกลาง (6 ชั้น) is produced first.
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การเคลือบ: Outer dielectric layers are laminated onto the core.
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การขุดเจาะเลเซอร์: Microvias are drilled with a laser into the outer layers.
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Plating and Patterning: The microvias are plated shut, and the outer layer circuits are etched.
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พื้นผิวเสร็จสิ้น: The Immersion Gold and OSP are applied.
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การทดสอบไฟฟ้า: 100% electrical testing ensures the integrity of all connections.
Why Choose UGPCB for Your HDI PCB and PCBA Needs?
UGPCB’s expertise in manufacturing 8-Layer HDI PCBs offers distinct advantages for your project. Their capability to reliably produce boards with 3/3 mil lines and 0.1mm microvias positions them as a leader for complex PCB manufacturing. This makes them an ideal partner not just for การผลิต PCB but also for a full turnkey PCBA service, ensuring a seamless transition from design to a finished, assembled product.
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