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PNEUMAX NEUMax solenoid valve 6.02.14 pneumatic direct quick exhaust valve G1/4 interface
PNEUMAX 6.02.14 Pneumatic Direct Quick Exhaust Valve G1/4 Interface
Pneumax 6.02.14-Pneumatic Direct Quick Exhaust Valve G1/4 Interface
PNEUMAX 6.02.14 Pneumatic Direct Quick Exhaust Valve G1/4 Interface
PNEUMAX 6.02.14 Pneumatic Direct Quick Exhaust Valve G1/4 Interface
PNEUMAX 6.02.14 Pneumatic Direct Quick Exhaust Valve G1/4 Interface
PNEUMAX 6.02.14 Pneumatic Direct Quick Exhaust Valve G1/4 Interface
PNEUMAX 6.02.14 Pneumatic Direct Quick Exhaust Valve G1/4 Interface
PNEUMAX 6.02.14 Pneumatic Direct Quick Exhaust Valve G1/4 Interface
pneumax 纽迈司电磁阀6.02.14气动用直式快速排气阀 G1/4接口
pneumax 6.02.14气动用直式快速排气阀 G1/4接口
pneumax 6.02.14-气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
pneumax 6.02.14气动用直式快速排气阀G1/4接口
PNEUMAX 纽迈司 电磁阀是一种高精度、大流量的气动控制元件,广泛应用于自动化控制工艺中。
特点:
大流量设计
PNEUMAX电磁阀采用优质材料和先进制造工艺,从而拥有更大的流量和更高的流量稳定性,在需要高流量控制的运作环境下,表现出色。同时,它还通过增加阀芯直径并且进行合理优化设计,使得整个系统通道结构变成了流阻低,和更少的压力损失,达到更佳的性能提升高精度控制
PNEUMAX电磁阀采用高质量的线圈和精密机械组件,使得它具有更高的精度和更准确的反馈控制。此外,它支持外接压力问形传感器和相关检液或过滤导管,以确保无间隙自控密封和对于介质持续监测及排酸去腥等的功用需求。
PNEUMAX Numax solenoid valve is a high-precision, high-flow pneumatic control component widely used in automation control processes.
Features:Yunlian Electric Technology Consulting Quotation Email: njxj888@163.com
High flow design
PNEUMAX solenoid valves use high-quality materials and advanced manufacturing processes, resulting in greater flow rate and higher flow stability. They perform excellently in operating environments that require high flow control. At the same time, it also increases the diameter of the valve core and conducts reasonable optimization design, resulting in a low flow resistance and less pressure loss in the entire system channel structure, achieving better performance improvement and high-precision control
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