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Parker 2-Way Normally Open Solenoid Valve 1/4" Pipe Thread – Part No. 73222BN2MN00N0C111C1

Parker 2-Way Normally Open Solenoid Valve 1/4" Pipe Thread – Part No. 73222BN2MN00N0C111C1

نام تجاری: Parker
شماره مدل: 73222BN2MN00N0C111C1
مقدار تولیدی: 1
قیمت: قابل مذاکره
اطلاعات دقیق
محل منبع:
آلمان
نوع سوپاپ:
دو موقعیت
تابع:
به طور معمول باز است
اندازه پورت:
1/4 اینچ
نوع کویل:
1/2 "مجرای NPT، 18" سرب، کلاس F، NEMA 4X
ولتاژ ورودی:
12 VDC VDC
جنس بدنه سوپاپ:
مس
مواد آب بندی:
NBR
مصرف برق:
10 وات (DC) W
مقدار ولتاژ (V):
12 VDC
حداکثر اختلاف فشار:
200 psi (DC) psi
حداقل اختلاف فشار:
5 psi
حداقل دمای سیال:
0 درجه فارنهایت
حداکثر دمای سیال:
185 درجه فارنهایت
مطابق با مشخصات کویل:
NEMA 4X
حداکثر اختلاف فشار (psi):
200 psi (DC)
برق (وات):
10 وات (DC)
جزئیات بسته بندی:
جعبه جدید اورجینال
توضیحات محصول
Parker 2-Way Normally Open Solenoid Valve 1/4" Pipe Thread – Part No. 73222BN2MN00N0C111C1
Product Overview

This Parker two-way normally open solenoid valve represents a refined and reliable fluid control solution designed for general industrial and commercial fluid systems.

Construction & Materials
  • Premium brass construction for outstanding structural rigidity
  • Excellent resistance to oxidation and corrosion
  • Stable mechanical performance for long-cycle industrial operation
  • Consistent sealing integrity in complex working environments
Solenoid Performance
  • High-performance solenoid coil with industrial-grade insulation
  • Waterproof protection for stable electromagnetic drive performance
  • Reliable switching actions with low energy consumption
  • Excellent anti-interference capability
  • Adapts to frequent start-stop working conditions
Quality Assurance

Every product undergoes strict factory calibration and sealing testing to eliminate leakage risks and guarantee consistent performance stability throughout its service life.

Applications
Compatible with air, inert gases, water, and light hydraulic media. Widely applicable to conventional industrial automation, commercial fluid management, and various general flow control scenarios.