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Arlon DiClad 880 High Frequency PCB Board

The Arlon DiClad 880 high-frequency PCB board features low-loss PTFE composite reinforced with glass fibers, offering ultra-low dielectric constant and dissipation factor for high-frequency applications.

Description

Arlon DiClad 880 high frequency PCB board Product details

Characteristic/Specification Description/Value
Material Arlon DiClad 880
DK Value 2.17
Substrate Thickness 0.7874 mm
Copper Thickness 35 μm
Overall PCB Thickness 0.87 mm (0.034") +/- 10%
Solder Mask None
Surface Finishing Nickel Thickness: 118.1 to 236.2 μin<br>Gold Thickness: 2.955 to 4.925 μin
Silkscreen White Liquid Photoimageable Ink
Electrical Testing 100% Electrically Tested
PCB Compliance RoHS Compliant
Flammability Rating UL 94V-0 Compliant and Marked on Board
Plated Hole Tolerances +/- 0.003"
Plated Hole Tolerances for ≤ 10 mil Diameters 0.008/+0.003"
Non-Plated Hole Tolerances -0.000/+0.002"
Dimension Tolerances +/- 0.005"
50 Ohm Microstrip Line Width 1.3 mm
Tolerance for 50 Ohm Microstrip Lines

+/- 5 Ohms

Why Choose Arlon DiClad 880 High-Frequency PCB Board?
Arlon DiClad 880 high frequency PCB has a series of remarkable features that make it excel in high frequency applications. Here are its main features:

  • Excellent electrical performance: low dielectric constant (Dk) and low dissipation factor (Df), reduce signal delay and distortion, support wider line width, and reduce insertion loss.
  • Stable dielectric performance: stable with frequency changes, ensuring consistent signal transmission performance at different frequencies and reducing performance fluctuations.
  • Excellent physical and chemical properties: has the lowest moisture absorption rate in the same PTFE composite material system, maintaining stable electrical performance; at the same time, it has strong chemical resistance and adapts to a variety of harsh environments.
  • Advanced manufacturing process and quality control: uses glass fiber braided reinforced polytetrafluoroethylene (PTFE) composite materials to improve mechanical strength; strict quality control of raw materials, production processes and finished products.
  • Wide application areas: With its excellent performance, it is particularly suitable for high-frequency communications, microwave electronics, precision instruments and control systems, aerospace and defense and other fields.

What is the difference between Arlon DiClad 880 and Arlon DiClad 780

Although Arlon DiClad 880 and Arlon DiClad 780 belong to the same series, they are significantly different in several key aspects. The following clearly shows the main differences between Arlon DiClad 880 and Arlon DiClad 780 in terms of performance, composition, price, application areas and market availability.

Item Arlon DiClad 880 Arlon DiClad 780
Performance & Characteristics High performance, suitable for harsh environments or advanced applications Good performance, suitable for general industrial applications
Composition & Structure May contain more reinforcing agents or special additives Composition and structure may be simpler
Price Higher, due to high performance and wide range of applications Lower, suitable for budget-conscious applications
Application Areas Aerospace, high-end electronics, medical equipment General industry, automotive components, daily consumer goods
Market & Supply May be more popular in the market, but supply may be limited Easier to obtain, stable supply

DiClad® Series: Traditional Low-Loss Laminate Products Specification Table

The DiClad® series is a representative of traditional low-loss laminate products and is widely used in high-frequency communications, microwave electronics, precision instruments and control systems.

Product Material Type Glass Type Dielectric Constant (10 GHz) Loss Tangent (10 GHz) CTE* (ppm/°C) CTE (X/Y/Z) (ppm/°C) UL94 H²O Absorption Temperature Coefficient (W/mK) Product Specification Sheet
DiClad® 880 Polytetrafluoroethylene (PTFE) Woven, Reinforced 2.17, 2.20 ± 0.02 0.0009 -160 25/34/252 V-0 0.02 0.26 Available upon request
DiClad® 870 Polytetrafluoroethylene (PTFE) Woven, Reinforced 2.33 ± 0.04 0.0013 -161 17/29/217 V-0 0.02 0.26 Available upon request
DiClad® 527 Polytetrafluoroethylene (PTFE) Woven, Reinforced 2.40-2.60 ± 0.04 0.0017 -153 14/21/173 V-0 0.03 0.25 Available upon request

*Note: CTE (Coefficient of Thermal Expansion) is measured under specific conditions, and actual values may vary depending on the product batch and testing conditions.

What applications are Rogers DiClad 880 High Frequency PCB suitable for?

What applications are Rogers DiClad 880 High Frequency PCB suitable for

Rogers DiClad 880 High Frequency PCB stands out in many key application scenarios with its excellent electrical performance and physical properties:

1. High-speed digital circuits: Rogers DiClad 880, with its unique low dielectric constant (Dk) and low dissipation factor (Df), shows extraordinary value in high-speed digital circuits, effectively reducing the delay and loss of signal transmission, and significantly improving the overall performance of the circuit.

2. Microwave communication: In the field of microwave communication, the stable dielectric constant and low loss characteristics of Rogers DiClad 880 have become its unique advantages, which can ensure the integrity of the signal, significantly reduce signal attenuation and distortion, and meet the stringent requirements of high-performance PCB materials in this field.

3. Wireless communication base station: As the core of wireless networks, wireless communication base stations have extremely high performance requirements for PCB materials. Rogers DiClad 880, with its high frequency characteristics and low loss, has significantly improved the communication quality and coverage of base station equipment.

4. Radar system: In terms of processing complex electromagnetic signals, radar systems have extremely high requirements for the electrical performance, stability and reliability of PCB materials. Rogers DiClad 880 fully meets the stringent requirements of radar systems with its outstanding performance.
5. Power amplifier: In power amplifier applications, the low loss characteristics of Rogers DiClad 880 become its unique advantage, which helps to reduce energy loss during transmission and thus improve the efficiency of the power amplifier.
6. Aerospace and defense applications: In the aerospace and defense fields, Rogers DiClad 880 has become one of the high-performance PCB materials that meet these stringent requirements with its low dielectric loss, low water absorption, excellent temperature stability and mechanical properties.

Any Rogers DiClad 880 High Frequency PCB needs, please help to contact us at any time:belle@betonpcb.com.

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