Compact Electronic Regulator, 0.9 Mpa

Documentos Técnicos
Especificaciones
Brand
SMCMáxima Presión de Entrada
1MPa
Máxima Temperatura de Funcionamiento
+50°C
Máximo Caudal Unitario
6L/min
Temperatura de Funcionamiento Mínima
0°C
Válvula de Comprobación Integral
Yes
Dimensiones totales
56 x 15 x 86 (For Single Unit) mm, 56 x 15 x 89 (For Manifold) mm
Anchura Global
15mm
Altura Global
86 (For Single Unit) mm, 89 (For Manifold) mm
Longitud Global
56mm
País de Origen
Japan
Datos del producto
Serie compacta ITV0000
Compact Series ITV0000 Electro-Pneumatic Pressure Regulators work on the principle that when the input signal rises, the air supply solenoid valve turns on. As a result, part of the supply pressure passes through the air supply solenoid valve, and changes to output pressure. This output pressure then feeds back to the control circuit through the pressure sensor. Pressure corrections within the ITV0000 continue until the output pressure becomes proportional to the input signal, enabling output pressure that is proportional to the input signal.
€ 358,86
€ 358,86 Each (Sin IVA)
1
€ 358,86
€ 358,86 Each (Sin IVA)
1
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Vuelva a verificar más tarde.
Documentos Técnicos
Especificaciones
Brand
SMCMáxima Presión de Entrada
1MPa
Máxima Temperatura de Funcionamiento
+50°C
Máximo Caudal Unitario
6L/min
Temperatura de Funcionamiento Mínima
0°C
Válvula de Comprobación Integral
Yes
Dimensiones totales
56 x 15 x 86 (For Single Unit) mm, 56 x 15 x 89 (For Manifold) mm
Anchura Global
15mm
Altura Global
86 (For Single Unit) mm, 89 (For Manifold) mm
Longitud Global
56mm
País de Origen
Japan
Datos del producto
Serie compacta ITV0000
Compact Series ITV0000 Electro-Pneumatic Pressure Regulators work on the principle that when the input signal rises, the air supply solenoid valve turns on. As a result, part of the supply pressure passes through the air supply solenoid valve, and changes to output pressure. This output pressure then feeds back to the control circuit through the pressure sensor. Pressure corrections within the ITV0000 continue until the output pressure becomes proportional to the input signal, enabling output pressure that is proportional to the input signal.