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2 Layer Rogers 5880 0.787MM Thickness PCB Prototype Black Solder

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2 Layer Rogers 5880 0.787MM Thickness PCB Prototype Black Solder

Country/Region china
City & Province foshan
Categories Passive Components
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Product Details

2 Layer Rogers 5880 0.787MM Thickness PCB Prototype With Fast Delivery time

 

 

Quick detail:

 

Material: Rogers 5880 0.508MM

Board size: 2*3cm

Quantity: 42pcs/panel

Delivery time: 5 days

 

 

Rogers PCB RT/duroid 5880 Laminates

 

Basic information:

Dielectric constant: 2.2+-0.02

Dissipation factor: 0.0004/0.0009

Dielectric constant design: 2.2   8GHZ-40GHZ

 

Standard thickness:

 

0.005” (0.127mm)

0.031” (0.787mm)

0.010” (0.254mm)

0.062” (1.575mm)

0.015” (0.381mm)

0.125” (3.175mm)

0.020” (0.508mm)

 

Standard panel size

 

18” X 12” (457 X 305mm)

18” X 24” (457 X 610mm)

 

Rogers RT/duroid 5880 Laminates

 

RT/duroid® 5880 high frequency laminates are PTFE composites reinforced with glass microfibers.The randomly oriented microfibers result in exceptional dielectric constant uniformity.

The dielectric constant of these high frequency laminates is the lowest of all products, and low dielectric loss make them well suited for high frequency/ broad band applications where dispersion and losses need to be minimized. Because of its extremely low water absorption characteristics, RT/duroid 5880 laminates are ideal for applications in high moisture environments.

RT/duroid 5880 laminates are easily cut, sheared and machined to shape, and resistant to all solvents and reagents normally used in etching printed circuits or plating edges and holes. RT/duroid 5870 and 5880 laminates have the lowest electrical loss of any reinforced PTFE material, low moisture absorption, are isotropic, and have uniform electrical properties over frequency.

Rogers RT/duroid 5880 high frequency laminates are used in:

  • commercial airline broadband antennas

  • microstrip and stripline circuits

  • millimeter wave applications

  • military radar systems

  • missile guidance systems

  • point-to-point digital radio antennas

 

Rogers 5880 pcb application:

 

Rogers RT 5880 laminate have the lowest Dk for a copper clad laminate available in the market today. Because of its low dielectric constant of 1.96 at 10 GHz, RT/duroid 5880LZ supports broadband applications at the microwave through millimeter-wave frequencies where dispersion and circuit losses must be minimized. It is a lightweight, PTFE-based composite optimized with a unique filler that provides very low density (1.37 gm/cm3) and a low coefficient of thermal expansion (CTE) in the Z-axis. This makes 5880LZ well suited for fabricating high-frequency circuits with plated-through holes (PTH) and allows higher vehicle payloads. In addition, the dielectric constant is uniform from panel-topanel and constant over a wide frequency range. Its low dissipation factor extends the usefulness of RT 5880 to K-band and above.

 

Specification:

 

Material: Rogers 5880 Laminate

Layer:2

Surface finish: Immersion gold

Copper Weight: 1OZ

Solder mask: Black

Silk Screen: White

Delivery time: Sample for 3 days, Mass production:5-8 days,24 hours available

 

RT/duriod

Rogers RT/duroid® high-frequency circuit materials are filled PTFE (irregular glass or ceramic) composite coversfor use in high reliability, aviation and defense applications. The RT/duroid types have a long industry nearness of providing high-reliability materials with predominant performance. This kind of material has several benefits:
1 Low electrical loss,
2. Low moisture absorption,
3. Stable dielectric constant (Dk) over a wide frequency range, and
4. Low outgassing for space applications.
RO3000
RO3000 laminates are ceramic filled PTFE composites intended for use in the commercial microwave and RF applications. R03000 series laminates are circuit materials with very consistent mechanical properties regardless of the dielectric constant selected. Due to this characteristic, when designing multi-layer boards with varying dielectric constants, there will be very little issues if any at all The dielectric constant VS temperature of RO3000 series materials is very stable. RO3000 laminates also are available in a wide range of dielectric constants (3.0 to 10.2). The most common applications are:
1. Surface mount RF components,
2.GPS antennas, and
3. Power amplifiers.
RO4000
RO4000 laminates and pre-pregs possess favorable properties that are highly useful in microwave circuits and instances where controlled impedance is needed. This series of laminates are very price optimized and are also fabricated using standard FR4 processes which makes it suitable for multi-layer PCBs. Additionally, it can be processed lead-free. The series of RO4000 laminates offer a range of dielectric constants (2.55-6.15) and are available with UL 94 V-0 flame retardant versions. The most popular applications of this are:
1. RFID chips,
2. Power amplifiers,
3. Automotive radars, and
4. Sensors.
TMM®
Rogers TMM® thermoset microwave laminates fuse dielectric constant uniformity, low thermal coefficient of dielectric constant (Dk), and a copper matched coefficient of thermal expansion. Because of their electrical and mechanical stability, TMM high-frequency laminates are perfect for high-reliability strip-line and micro-strip applications. This kind of material has several benefits:
1. Wide range of dielectric constants (Dks),
2.Excellent mechanical properties, cold flow, and resists creep,
3. Exceptionally low thermal coefficient of Dk,
4. Coefficient of thermal expansion fit to copper taking into account high reliability of plated through-holes,
5. Available copper clad in larger formats, allowing the use of standard PCB subtractive processes,
6. No wreck to materials during fabrication and assembly processes,  Resistant to process chemicals,
7. Thermoset resin for reliable wire bonding,
8. No specialized production techniques required,
9. TMM 10 and 10i laminates can replace alumina substrates, and
10. RoHS compliant, environmentally friendly.Below is a table that shows the characteristics of various types of PCB materials.

 

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