Название: Высокочастотная печатная плата TACONIC
Материал: TACONIC
Слои: 2л
Толщина меди: 1 унция
Толщина пластины: 0,8 мм
Минимальная ширина линии: 0,7 мм
Специальный процесс: высокочастотная плата, тефлоновый материал
Минимальный межстрочный интервал: 0,25 мм.
Обработка поверхности: Олово погружения
Высокочастотная печатная плата ISOLA 370HR
Имя: Печатная плата ISOLA 370HR
Материал: печатная плата isola 370hr HIGH TG
Df (коэффициент рассеяния): 0,021
Дк (диэлектрическая проницаемость): 4,04
Температура стеклования: TG180℃
Тд: 340℃
Количество слоев: 6 слоев
Толщина доски: 1,0 мм
Технология поверхности: Иммерсионное золото.
Толщина меди: 1 унция
Минимальная ширина линии/межстрочный интервал: 4 мил/4 мил.
Радиочастотная плата Rogers RO4350B (RFPCB)
Имя: Печатная плата Rogers RO4350B RF (RFPCB)
ДК: 3,48+/-0,05
Слои: 4 слоя
Толщина диэлектрика: 0,254 мм (20 мил)
Готовая толщина: 0,8 мм
Материал Медь Толщина: ½ (17 мкм)
Толщина готовой меди: 1 унция (35 мкм)
Обработка поверхности: Иммерсионное золото
Применение: печатная плата прибора, печатная плата радиочастотного прибора, печатная плата радиолокационного прибора
Высокочастотная плата Rogers RO4350B
Название: Высокочастотная плата Rogers RO4350B
Слои: 4л
Лист: Роджерс RO4350B
Толщина пластины: 1,6 мм
Диэлектрическая проницаемость: 3,48
Толщина меди: базовая медь 0,5 унции, толщина готовой меди 1 унция
Обработка поверхности: Иммерсионное золото
Использование: инструменты радиочастотной связи, печатные платы микроволновых антенн.
Имя: Печатная плата Rogers RO4350B
Д К: 3,48+/-0,05
Слой: 2л
Толщина диэлектриков: 0,762 мм (30 мил)
Готовая толщина: 0,85 мм
Материал: Толщина меди: ½ (17 мкм) HH/HH
Толщина готовой меди: 1 унция (35 мкм)
Обработка поверхности: Иммерсионное золото
Применение: печатная плата прибора, печатная плата радиочастоты, печатная плата радиолокационных датчиков
Высокочастотная плата Rogers RO4350B
Название: Высокочастотная плата Rogers RO4350B
Материал: Роджерс RO4350B.
Слой: 2л
ДК: 3,48
Толщина диэлектрика: 0,762 мм
Теплопроводность: 0,69 Вт/м.к.
Горючесть: 94В-0
Объемное сопротивление: 1,2*1010
Поверхностное сопротивление: 5,7*109
Готовая толщина: 0,8 мм
Толщина меди: основание 0,5 унции, готовая 1 унция
- PCB Capability
- PCB manufacturing equipment
- PCB Materials
Introducing our high Frequency PCB , the pinnacle of excellence in the realm of RF and microwave applications. Designed to meet the demanding requirements of high-frequency signals, our high-frequency PCBs offer exceptional performance, reliability, and signal integrity.
Our high-frequency PCBs are meticulously engineered using specialized materials and advanced manufacturing techniques. These PCBs are specifically tailored to operate in the microwave and RF frequency range.
Moreover, this makes them ideal for applications such as wireless communications, satellite systems, radar systems, and high-speed data transmission.
Advantages of High-Frequency PCB:
- Excellent Signal Integrity: High-frequency PCBs are designed to maintain signal integrity and minimize signal loss at high frequencies. These PCBs utilize low-loss materials with controlled dielectric constants. Moreover, it ensures a superior impedance control, reduced insertion loss, and improved return loss.
- Wide Frequency Range: Our high-frequency PCBs are capable of operating in a wide frequency range, from a few megahertz (MHz) to several gigahertz (GHz). This versatility makes them suitable for a variety of applications, including wireless communication systems, microwave devices, and high-speed digital circuits.
- Low Transmission Loss: High-frequency PCBs are built using materials with low dissipation factors and low dielectric losses. This results in minimal transmission loss, allowing for efficient signal transmission and reception, especially in high-speed and high-frequency applications.
- Impedance Control: Maintaining impedance control is crucial for high-frequency signals. Our high-frequency PCBs are engineered to provide precise impedance matching, ensuring maximum power transfer and minimizing signal reflections. This also leads to improved system performance and reduced signal distortions.
- High Thermal Stability: High-frequency PCBs are designed to withstand the challenges of thermal management in high-power applications. They employ thermally conductive materials and efficient heat dissipation techniques. It also ensures stable performance even under elevated temperature conditions.
Item | Capability |
Layer Count | 1-40layers |
Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
Board Thickness | 0.2-5.0mm |
Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
PTH Wall | 25um(1mil) |
Maximum Board Size | 1100*500mm(43”*19”) |
Min laser drilling size | 4mil |
Min. Spacing/Tracing | 2.7mil/2.7mil |
Solder Mask | Green, Black, Blue, Red, White, Yellow, Purple matte/glossy |
Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead-free 、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP, ENIG+Gold finger, Flash gold(electroplated gold)+Gold finger, Immersion silver+Gold finger, Immersion Tin+Gold finger. |
Min. Annular Ring | 3mil |
Aspect ratio | 10:1(HASL Lead-free 、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
Other Techniques | Blind/Buried Via |
Gold Fingers | |
Press Fit | |
Via in Pad | |
Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them: | ||||||||
SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
KB-6150 | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
KB-6150C | ||||||||
KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) |