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Rogers CuClad 217 hybrid I Multilayer PCB built on 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), 62mil (1.575mm)

Rogers CuClad 217 hybrid I Multilayer PCB built on 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), 62mil (1.575mm)

MOQ: 1 stks
Prijs: 2.99USD/pcs
Standaardverpakking: Verpakking
Leveringstermijn: 2-10 werkdagen
Betaalmethode: T/T, PayPal
Toeleveringskapaciteit: 50000 stcs
Detailinformatie
Plaats van herkomst
CHINA
Merknaam
Rogers
Certificering
ISO9001
Modelnummer
CuClad 217
Min. bestelaantal:
1 stks
Prijs:
2.99USD/pcs
Verpakking Details:
Verpakking
Levertijd:
2-10 werkdagen
Betalingscondities:
T/T, PayPal
Levering vermogen:
50000 stcs
Productbeschrijving

What circuit boards do we do? (52)

CuClad 217 High Frequency PCB

 

Introduction

Rogers CuClad 217 laminates are composite materials consisting of woven fiberglass and precisely controlled PTFE. They are designed with a cross-plied construction, providing both electrical and mechanical isotropy within the plane. The low fiberglass/PTFE ratio in CuClad 217 results in the lowest dielectric constant (Dk) and dissipation factor available in fiberglass reinforced PTFE based laminates. These unique properties contribute to faster signal propagation and higher signal/noise ratios.

 

Rogers CuClad 217 hybrid I Multilayer PCB built on 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), 62mil (1.575mm) 0

 

 

Features & Benefits

Rogers CuClad 217 offers a low dielectric constant of 2.17 or 2.20, allowing for wider line widths and lower insertion loss in PCB designs. It exhibits a low dissipation factor of 0.0009 at 10 GHz, making it suitable for high-frequency applications due to the low circuit losses.

 

This material has low moisture absorption and out-gassing properties, ensuring dimensional stability and reliability in various environmental conditions. CuClad 217 maintains a stable dielectric constant across a wide frequency range, providing consistent performance.

 

 

PCB Capability

Rogers CuClad 217 hybrid I Multilayer PCB built on 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), 62mil (1.575mm) 1

We can provide you with single-sided, double-sided, multi-layer PCBs, as well as hybrid PCBs, offering options for copper weight including 1oz (35µm), 2oz (70µm), and 3oz (105µm).

 

Additionally, we can accommodate various dielectric thicknesses such as 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), and 62mil (1.575mm), while our capabilities cover PCB sizes up to 400mm X 500mm.

 

You can choose from a range of solder mask colors including green, black, blue, yellow, red, and more. Furthermore, we provide multiple surface finish options such as immersion gold, HASL, immersion silver, immersion tin, ENEPIG, OSP, bare copper, pure gold, and others.

 

 

Applications

CuClad 217 PCB is commonly used in electronics applications such as radars, Electronic Countermeasures(ECM), and Electronic Support Measures(ESM).

It is also well-suited for microwave components like Low-Noise Amplifiers(LNAs), filters, couplers, and other related devices.

 

 

Thank you. I’ll see you next time.

producten
DETAILS VAN DE PRODUCTEN
Rogers CuClad 217 hybrid I Multilayer PCB built on 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), 62mil (1.575mm)
MOQ: 1 stks
Prijs: 2.99USD/pcs
Standaardverpakking: Verpakking
Leveringstermijn: 2-10 werkdagen
Betaalmethode: T/T, PayPal
Toeleveringskapaciteit: 50000 stcs
Detailinformatie
Plaats van herkomst
CHINA
Merknaam
Rogers
Certificering
ISO9001
Modelnummer
CuClad 217
Min. bestelaantal:
1 stks
Prijs:
2.99USD/pcs
Verpakking Details:
Verpakking
Levertijd:
2-10 werkdagen
Betalingscondities:
T/T, PayPal
Levering vermogen:
50000 stcs
Productbeschrijving

What circuit boards do we do? (52)

CuClad 217 High Frequency PCB

 

Introduction

Rogers CuClad 217 laminates are composite materials consisting of woven fiberglass and precisely controlled PTFE. They are designed with a cross-plied construction, providing both electrical and mechanical isotropy within the plane. The low fiberglass/PTFE ratio in CuClad 217 results in the lowest dielectric constant (Dk) and dissipation factor available in fiberglass reinforced PTFE based laminates. These unique properties contribute to faster signal propagation and higher signal/noise ratios.

 

Rogers CuClad 217 hybrid I Multilayer PCB built on 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), 62mil (1.575mm) 0

 

 

Features & Benefits

Rogers CuClad 217 offers a low dielectric constant of 2.17 or 2.20, allowing for wider line widths and lower insertion loss in PCB designs. It exhibits a low dissipation factor of 0.0009 at 10 GHz, making it suitable for high-frequency applications due to the low circuit losses.

 

This material has low moisture absorption and out-gassing properties, ensuring dimensional stability and reliability in various environmental conditions. CuClad 217 maintains a stable dielectric constant across a wide frequency range, providing consistent performance.

 

 

PCB Capability

Rogers CuClad 217 hybrid I Multilayer PCB built on 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), 62mil (1.575mm) 1

We can provide you with single-sided, double-sided, multi-layer PCBs, as well as hybrid PCBs, offering options for copper weight including 1oz (35µm), 2oz (70µm), and 3oz (105µm).

 

Additionally, we can accommodate various dielectric thicknesses such as 10mil (0.254mm), 20mil (0.508mm), 31mil (0.787mm), and 62mil (1.575mm), while our capabilities cover PCB sizes up to 400mm X 500mm.

 

You can choose from a range of solder mask colors including green, black, blue, yellow, red, and more. Furthermore, we provide multiple surface finish options such as immersion gold, HASL, immersion silver, immersion tin, ENEPIG, OSP, bare copper, pure gold, and others.

 

 

Applications

CuClad 217 PCB is commonly used in electronics applications such as radars, Electronic Countermeasures(ECM), and Electronic Support Measures(ESM).

It is also well-suited for microwave components like Low-Noise Amplifiers(LNAs), filters, couplers, and other related devices.

 

 

Thank you. I’ll see you next time.

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