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LVS08/12 directional valves – Preference program
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2.3.4 2-way pressure compensator
In the inlet section, the 2-way pressure compensator is
needed to convert a higher inlet pressure into a lower, con
trolled working pressure.
This circuit is needed when several control blocks, each
with a different working pressure, are incorporated in the
overall system and one of these hydraulic circuits has to be
regulated to a lower pressure level.
If the pressure in the control line reaches the setting of a
pressure relief valve, the pressure compensator shuts off
the supply to the hydraulic circuit. In this way, a constant
pressure level is achieved in the respective hydraulic circuit.
2.3.5 Pressure control in P line
Direct-acting pressure-relief function in the inlet flow in P
line.
2.3.6 2-stage pressure relief (only in conjunc
tion with 3-way pressure compensator)
If the pressure in the control line reaches the setting of an
upstream pressure-relief valve, the 3-way compensator
opens to tank, thus limiting the pressure in the pressure
gallery inside the block.
2.3.7 External priority function, with “Dynamic
Flow” in the LS line
An external actuator always has priority when flow is sup
plied by pump. Only when the external priority is completely
supplied, rest flow will feed the block functions. A defined
oil flow runs through the LS line to the priority actuator. This
has the effect of shortening the priority function's reaction
time.
2.3.8 LS pressure relief in the priority flow
If the pressure in the control line reaches the LS pressure-
relief setting, the flow to the priority actuator is reduced until
the pressure in the LS line equals the setting of the pres
sure-relief valve. The flow that is no longer required is now
available to other actuators.
2.3.9 LS shut-off
In the type LVS-E-CCL... inlet sections for closed-center op
eration (LS pump), an additional LS shut-off is implemented
using a seat-type directional cartridge valve.
This safety shut-off is used to interrupt the LS signal from the
control block to the pump (by connecting the LS signal in
side the block directly to tank).
2.4 Overview inlet sections
2.4.1 Overview of items, with part number
Model code Part number Model code Part number
LVS-E-CF*-G110A00/P1= 100030365 LVS-E-CCL-G110J24A53/P1= 100033188
LVS-E-CAP-G110A00 100027317 LVS-E-CCL-G110J12A48/P=/P1= 100036604
LVS-E-CB*-G110A00 100030496 LVS-E-CCL-G110J24A48/P=/P1= 100033704
LVS-E-CE*-G110A01/P1= 100029646 LVS-E-CF2-G110A00/P1= 100031115
LVS-E-CE*-G110A48/P=P1= 100032849 LVS-E-CF2H-G110A00/P1= 100036559
LVS-E-CE*-B110A42/P=P1= 100032566 LVS-E-CME-G101A54/P2= 100032775
LVS-E-CCL-G110J12A53/P1= 100036603 LVS-E-CGE-G100A00/P2=/P3 100027273
2.4.2 Inlet sections for systems with fixed-displacement pump (Open Center)
Symbol Description Part number
P
R
LSLS
P1
LVS-E-CF*-G110A00/P1= 100030365
3-way compensator
LS
max
pressure relief adjustable, P1 =
Two-stage pressure relief, P1 =
Control Δp = 12 bar
Q
In
up to 200 l/min
Port threads: P and R = G1”
Give the pressure setting P1 in bar with the ordering information
This results in P = P1 (LS
max
) + Δp