Series 15 manual l-o-x valves size 1/4 and 3/8, Series 15 manual l-o-x, Valves – Ross Controls RIGHT ANGLE User Manual

Page 5: L-o-x, Sensing port, Reliable, low-cost control • 1/4 to 3/8 ports

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Series 15 Manual L-O-X

®

Valves

• Reliable, Low-Cost Control

• 1/4 to 3/8 Ports

VALVE CLOSED
When the red handle is pushed
inward, the flow of supply air is
blocked and downstream air is
exhausted via the exhaust port.
While servicing or maintaining
machinery, the L-O-X

®

valve should

be padlocked in this position to
prevent the handle from being
pulled outward inadvertently where
potential for human injury exists.

VALVE OPEN
When the red handle is pulled
outward supply air flows freely from
inlet to outlet and flow to exhaust is
blocked. A detent keeps the handle
in the open position.

The ROSS LOX

®

1/4 and 3/8 inch port size are the newest addition to

ROSS’ renowned family of safety-related products. Following any FRL
components, an energy isolation valve is usually the first valve in the line
supplying compressed air to equipment. The energy isolation valve should
provide a quick means of shutting off the supply of air and exhausting
the downstream lines.
The ROSS manual L-O-X

®

valve has a large red operating handle for high

visibility. When the handle is pulled out, there is full line pressure. A short,
full inward push of the handle closes off the flow of air, and quickly exhausts
the pressure in the downstream line. This action is swift and doesn’t require
a difficult, slow, or confusing twisting action.
NOTE: If a system requires gradual buildup of downstream pressure, see
L-O-X

®

valves with EEZ-ON

®

operation on page 4.

The controlling spool of the valve employs seals made of very low-friction
material. These seals enable the L-O-X

®

spool to shift smoothly and easily

even after being on standby for a long period of time.
The exhaust port is threaded for the installation of a silencer or a line
for remote exhausting. Two mounting holes are provided to simplify the
installation of the L-O-X

®

valve.

Manual L-O-X

®

valve shown padlocked in

closed position. The valve can only be
locked in the closed position.

Push/pull operation - Push the handle
inward to exhaust downstream air
(lockable in this position). Pull the handle
outward to supply air downstream.

VALVE OPERATION

1/4 and 3/8

For coordinating silencers, see page 18, model number 5500A2003 and 5500A3003.

1

2

12

3

10

A

C

B

2

1

3

2

1

3

Port Size

Valve Model Avg. Cv

Dimensions inches (mm) Weight

In-Out Exh.

Number

1 to 2 2 to 3

A

B

C

lb (kg)

1/4

1/4

Y1523D2002 1.84 1.79

2.2 (57)

7.1 (180)

1.0 (26)

0.9 (0.4)

3/8

3/8

Y1523D3012 2.67 2.64

2.2 (57)

7.1 (180)

1.0 (26)

0.9 (0.4)

STANDARD SPECIFICATIONS: For valves on this page.
Ambient/Media Temperature: 40° to 175°F (4° to 80°C).
Flow Media: Filtered air; 5 micron recommended.
Inlet Pressure: 15 to 145 psig (1.0 to 10.3 bar).
Port Threads: NPT standard, BSPP. For BSPP threads, insert
a “D” after “Y” to the model number, e.g., YD1523D2002.

Lock Hole Diameter: 0.27 inch (7.06 mm).
Length of Hole: 0.43 inch (10.92 mm).
NOTE: Per specifications and regulations, these products are
defined as energy isolation devices,

NOT AS EMERGENCY STOP

DEVICES.

L-O-X

®

Sensing Port

L-O-X

®

Sensing Port - Series 15 manual L-O-X

®

valves and manual L-O-X

®

valves with EEZ-ON

®

operation are now provided with 1/8

NPT sensing ports, enabling installation of a pressure sensing device such as the Pop-Up Indicator or Pressure Switch shown below.
Standards suggest that machine design should include a method for verifying the release of energy after lockout.

The ROSS 988A30 Pop-Up Indicator is constructed for the industrial environment with a brass body and 1/8” NPT connection. It offers

360° visibility and a redundant verification feature. By pushing on the red plunger, the operator can “feel” the presence of pressure
and verify that the indicator is performing its sensing function.
The ROSS 586A86 Pressure Switch offers an electronic pressure sensing option that can be integrated into a safety monitoring system,

which confirms energy isolation throughout the circuit.

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