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FSV10-Series
100:1, 1/4 in Compression, 316ss, Electronic Proportioning Valves
- Pulsewidth-Modulated Control Circuit
- Accepts 0 to 5 Vdc or 4 to 20 mA Setpoint Inputs
- Made of Corrosion- Resistant 316 and 416 SS/FKM
FSV10-Series
From
C$
1,237.22
Product Overview
- Approvals RoHS, CE
- Approvals Note EMC Directive 89/336/EEC EN55011:1991; Group 1, Class A EN50082-2:1995
- Cable Length 8 in
- Electrical Connection 9 - Pin D Connector
- Flow Rate Note Based on 10 psig (690 mbar) differential pressure.
- Height 1 in
- Input Control Signal 0 to 5 Vdc, 4 to 20 mA
- Leak Rate Under Vacuum less than 10^⁻9 cc He/s
- Length 3 in
- Material Construction Option N/A
- Materials, Wetted 316 Stainless Steel, 416 Stainless Steel, FKM
- Operating Pressure, Max 500 psi
- Operating Temperature, Max 50 °C
- Operating Temperature, Min 0 °C
- Measurement Pressure Type Differential
- Process Connection Size 1/4 in
- Process Connection Type Compression Fitting
- Process Temperature, Max 54 °C
- Process Temperature, Min -10 °C
- Response Time 500ms
- Series ID FSV10-Series
- Supply Power Note 12 to 30 Vdc, 1 A @ 12 Vdc; 0.5 A @ 24 Vdc via 9-pin D connector or DC power jack
- Supply Voltage 12 to 30 Vdc
- Surface Temperature, Max 54 °C
- Turndown Ratio 100:1
- Valve Height 3.45 in
- Valve Length 3.25 in
- Valve Type normally closed
- Valve Width 1 in
- Width 3 in
Supported Applications
The Omega FSV10 Series consists of electronically controlled proportional solenoid valves designed for clean liquids and gases. These devices utilize a pulsewidth-modulated control circuit to maintain flow proportional to an analog input signal, making them suitable for industrial applications requiring precise valve control.
Operating Conditions & Performance
The series operates within specific environmental and process limits defined by the driver electronics and valve construction. Ambient temperature ranges from 0 to 50°C (32 to 122°F), while fluid temperatures are supported between -10 to 54°C (14 to 130°F). The valves feature a maximum pressure rating of 500 psig (3448 kPa) and a typical valve surface temperature of 54°C (130°F) with 24 Vdc power input.
Performance characteristics include a turndown ratio of 100:1 and a response time maximum of 500 msec. Leak integrity is specified at 1 x 10⁻⁹ sccs (helium, individually tested). Maximum differential pressure ratings are 50 psid (345 kPa) for most models; the FSV15 model lists a limit of 35 psid (241 kPa).
Configuration Options
The series offers configurable flow capacities through five distinct orifice sizes, ranging from 0.51 mm to 3.18 mm. All models utilize ¼" compression fittings for process connection and are constructed with wetted materials of 316 and 416 stainless steel (SS) with FKM O-rings.
Control inputs accept either a 0 to 5 Vdc or 4 to 20 mA setpoint signal. A TTL-level input is available for shutdown regardless of the analog signal state. Power requirements are 12 to 30 Vdc, supplied via a 9-pin D connector or DC power jack (1 A @ 12 Vdc; 0.5 A @ 24 Vdc). Output power level is jumper-selectable.
Key configuration options include:
- Housing Dimensions: Driver electronics measure 7.62 W x 7.62 D x 25.4 mm H (3 x 3 x 1").
- Total Assembly Size: Valve with driver measures 87.6 H x 87.6 L x 25.4 mm W (3.45 x 3.25 x 1.00") including compression fittings.
- Electrical Connection: 9-pin D connector or DC power jack; includes 20 cm (8") wires on the valve with a mating 9-pin D connector.
- Power Supply Option: FSV-PW accessory provides an 110 Vac/24 Vdc wall socket power supply with a 1.7 m (5.5') cord.
Key Product Differences
The series is differentiated by model number, which corresponds to specific orifice sizes and flow capacities for air and water at defined differential pressures:
- FSV11: 0.51 mm (0.02") orifice; Cᵥ 0.009.
- FSV12: 1.02 mm (0.04") orifice; Cᵥ 0.033.
- FSV13: 1.4 mm (0.055") orifice; Cᵥ 0.055.
- FSV14: 1.6 mm (0.063") orifice; Cᵥ 0.068.
- FSV15: 3.18 mm (0.125") orifice; Cᵥ 0.24.
The FSV-PW accessory is available as a separate item to provide the required power supply via wall socket connection.
PDFs & Manuals
Show Ratings & Reviews
Rated 1 out of
5
by
Anonymous from
Did not work with a water application.,
Device only controlled between 9.5 and 11.2 ma. otherwise it was either no flow, or sporadic flow outside of the range. Within the 9.5 to 11 ma there was no consistency. I was told by technical support that's normal. They would not take it back. My application was 175 to 300 psi H20 metering the flow between 40 and 110 ccm. I would not recommend this product.
Date published: 2021-08-09
What is the required gas filtration upstream of the valve (i.e. allowable particulates)?
Thank you for your inquiry. A recommended filter for the electronic valve is 20 to 50 microns
Date published: 2020-04-06
Can the compression fittings on this be removed/replaced?
Thank you for your inquiry. Yes, the compression fittings can be removed/replaced.
Date published: 2020-03-19
Can the valve be driven directly using a PWM signal instead of using the driver electronics? We are looking to replace an existing PWM driven valve (1Hz) and must have a drop-in replacement. Thanks!
Thank you for your inquiry! Unfortunately, this valve can not be driven directly using a PWM signal
Date published: 2021-06-09