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Choose the RTduroid 6202 PCB 2-layer 5mil for a solution that proves thin design and high performance can coexist—where precision meets possibility.
Item NO.:
BIC-396-v479.0Order(MOQ):
1-10Payment:
T/TProduct Origin:
ChinaShipping Port:
ShenzhenLead Time:
7-10 days
Rogers RT/duroid 6202 PCB 2-layer 5mil0.127mm ENIG Custom High Frequency Board
Engineered for next-generation RF and microwave systems, the RT/duroid 6202 PCB 2-layer 5 mil redefines performance standards in ultra-thin circuit board technology. Leveraging the exceptional properties of Rogers RT/duroid 6202 laminate, this PCB combines minimal thickness with maximum reliability, making it an ideal choice for applications where space constraints and signal integrity are critical. From compact antennas to high-frequency communication modules, this board delivers consistent performance in the most demanding environments.
PCB Construction Details
The following table outlines the core structural and manufacturing specifications of the Rogers 6202, ensuring clarity on its build quality and technical capabilities:
|
Specification |
Details |
|
Base material |
RT/duroid 6202 |
|
Layer count |
2-layer |
|
Board dimensions |
37mm x 29mm (per unit) |
|
Minimum Trace/Space |
5/6 mils |
|
Minimum Hole Size |
0.2mm |
|
Blind vias |
None |
|
Finished board thickness |
0.2mm |
|
Finished Cu weight (outer) |
1 oz (1.4 mils) |
|
Via plating thickness |
20 μm |
|
Surface finish |
Immersion Gold |
|
Top/Bottom Silkscreen |
None |
|
Top/Bottom Solder Mask |
None |
|
Quality assurance |
100% Electrical test prior to shipment |
PCB Stackup
The layered structure of the RT/duroid 6202 PCB is optimized for ultra-thin design without compromising electrical performance:
|
Layer |
Material/Specification |
|
Copper_layer_1 |
35 μm |
|
Substrate |
Rogers RT/duroid 6202 (5mil / 0.127mm) |
|
Copper_layer_2 |
35 μm |
PCB Statistics
This table provides key metrics on the RT/duroid 6202 PCB’s design complexity and connectivity features:
|
Metric |
Value |
|
Components |
3 |
|
Total Pads |
16 |
|
Thru Hole Pads |
10 |
|
Top SMT Pads |
6 |
|
Bottom SMT Pads |
0 |
|
Vias |
8 |
|
Nets |
2 |
Material Excellence: Rogers RT/duroid 6202
At the core of this PCB lies Rogers RT/duroid 6202, a high-performance laminate specifically engineered for high-frequency applications. Its limited woven glass reinforcement balances electrical efficiency with mechanical robustness, delivering exceptional dimensional stability (0.05 to 0.07 mils/inch). This stability eliminates the need for double etching, a critical advantage for maintaining tight positional tolerances in ultra-thin designs. Whether exposed to extreme temperatures or vibration, RT/duroid 6202 retains its structural and electrical integrity, ensuring long-term reliability.
Key Features
The RT/duroid 6202 high frequency PCB’s performance is defined by its material and design specifications:
- Dielectric constant (Dk) of 2.94±0.04 to 3.06±0.04 depending on thickness, 10GHz/23°C
- Dissipation factor of 0.0015 at 10 GHz/23°C
- Low thermal coefficient of Dk at 5 ppm/°C, at 10 GHz ranging -50 to +150°C
- Coefficient of Thermal Expansion (-55 to 288°C) X-axis of 15, Y of 15, Z of 30 ppm/°C
- Td 500°C TGA
- Thermal Conductivity of 0.68 W/m/k
- Moisture Absorption of 0.04%
- UL 94-V0
Core Benefits
For engineers and system integrators, the RT/duroid 6202 5 mil Rogers substrate PCB delivers tangible advantages:
Typical Applications
The RT/duroid 6202 substrate PCB is tailored for advanced, space-constrained RF systems:
Quality and Availability
Manufactured to IPC-Class-2 standards, every Rogers 6202 2 layer PCB undergoes 100% electrical testing before shipment, guaranteeing performance consistency. Artwork is supplied in Gerber RS-274-X format, compatible with industry-standard design software. With worldwide availability, this PCB empowers engineers globally to push the boundaries of miniaturized high-frequency technology.
Choose the RTduroid 6202 PCB 2-layer 5mil for a solution that proves thin design and high performance can coexist—where precision meets possibility.
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