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KSD-FK Series

KSD-FK Series

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  • 应用范围

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KSD-FK Series 技术特性 

额定电压:DC9V,1A
机械寿命:S7/D7:20000次循环
SL/DL:10000次循环
37/3L:30000次循环
接触电阻:最大50 mΩ,最大130 mΩ(FK37/3L)
绝缘电阻:最小直流500V 100MQ。
介电强度:1000 V RMS。@海平面。(初始值)
500V RMS@海平面。(37立方英尺)
操作力:S7:1.7+0.7Kgf
SL:1.0+0.7Kgf(锁定)
D7:2.5+0.8Kgf
DL:1.6+0.5Kgf(锁定)
37/3L:3.0+0.8Kgf
工作温度:-10°C至70°C。

材料
案例:邻苯二甲酸二酯,红色(DAP)(UL94v-0)。
盖子:黄铜,镀镍。
衬套:黄铜,镀镍。
外壳:不锈钢。
端子/触点:黄铜,镀银。


品牌:科斯达开关  KSDKG/KOSOD SWITCH/KESIDA
产品应用:医疗电器、航模、无人机、灯具照明、通讯、控制手柄、速控设备、新能源、航模设备、仪表仪器、小家电、汽车等领域


脚踏开关 KSD-FK Series
KSD-FK脚踏开关系列是乐器效果器上常见的开关,科斯达在用料方面的坚持,对音讯的耗损上,有着良好的效果,更尝试更高等规格,让高频的损耗降低,也因为重视这样的小地方,让讯号通过开关时能维持原样,在通过前极的变化,能更容易调整出想要的声音,因为越接近音源的讯息,需要的修饰补强也更少。 在结构方面,面对使用者的习惯与受力状况,调整刚刚好的尺寸,减少磨耗,维持机构的美观。



KSD-FK Series Technical Features

Rated voltage: DC9V, 1A
Mechanical lifespan: S7/D7: 20000 cycles
SL/DL: 10000 cycles
37/3L: 30000 cycles
Contact resistance: maximum 50 m Ω, maximum 130 m Ω (FK37/3L)
Insulation resistance: minimum DC 500V 100MQ.
Dielectric strength: 1000 V RMS@ Sea level. (Initial value)
500V RMS @ sea level. (37 cubic feet)
Operating force: S7: 1.7+0.7Kgf
SL: 1.0+0.7Kgf (locked)
D7:2.5+0.8Kgf
DL: 1.6+0.5Kgf (locked)
37/3L:3.0+0.8Kgf
Working temperature: -10 ° C to 70 ° C.

Material Science
Case: Phthalate diester, red (DAP) (UL94v-0).
Lid: brass, nickel plated.
Lining: brass, nickel plated.
Shell: Stainless steel.
Terminal/contact: brass, silver plated.


Brand: Coaster Switch KSDKG/KOSOD SWITCH/KESIDA
Product applications: medical appliances, model aircraft, drones, lighting fixtures, communication, control handles, speed control equipment, new energy, model aircraft equipment, instrumentation, small appliances, automobiles and other fields


Foot switch KSD-FK Series
The KSD-FK foot switch series is a common switch on instrument effectors. With Kosda's insistence on materials, it has a good effect on audio loss and strives for higher specifications to reduce high-frequency loss. Due to the emphasis on such small areas, the signal can be maintained as it is when turned on and off. By changing the front pole, it is easier to adjust the desired sound because the closer the information is to the source, the less modification and reinforcement is needed. In terms of structure, in response to the user's habits and stress conditions, adjust the just right size to reduce wear and maintain the aesthetics of the mechanism.
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