3 e r !2 !1 u t w y CHK CHN CHM CHM CHS CH2 o !
Taper ring Steel balls P f R R Enhanced locking efficiency Greater locking efficiency as well as stable locking and unlocking operation has been achieved by arranging a large number of steel ball bearings in circular rows. The floating taper ring provides alignment and stable locking force with respect to piston rod eccentricity.
ML2B32 15N Va 0.25m/s 0.5MPa L1 0.05m L2 0.05m W W 1 L L1 W W W M We M3 V M1 V <> W max=60N( Va P 19) a1= W = 15 =0.25 W max 60 M 2 max=2Nm( Va P 19) a2= M = 0.75 =0.375 M max 2 <> We=1.410VaW=1.4100.2515=52.2N M max=3.5Nm( V=1.4Va) M 3 WeL 1 =52.50.05 1 =0.88Nm 3 3 a3= M 3 = 0.88 =0.25 M 3max 3.5 M max=12Nm( V=1.4Va) M 1 WeL 1 1 =52.50.05 1 =0.88Nm 3 3 a4= M 1 =
4 t i w r !5 Rod end male thread CHQWB32 to CHQWB100 e o !0 y q !2 !1 !4 t w r !3 i !5 Rod end male thread Description Material Note Parts List Replacement Parts: Seal Kit No. Bore size (mm) Seal kit no.
Connection thread Delta Branch: KGUD H (width across flats) Effective area (mm 2) Connection thread R Model A P Weight (g) Applicable tubing O.D.
i' r' il r: "r l i r i , ,,: ,. .-:,, ii' r, , n One-touch connection reduces installation time and costs. n Rugged, vibration resistant composite body. n Various shapes and configurations to meet vehicle applications and make installation easier. tr Nylon tubing n Pipe fittings D0T/$trlFrlltinm lu $efies Taile 0l Conleilts Body lil 0ne-Iouclt Page H Male Connector . . .
Base, Body Seal material Aluminum NBR, FKM, EPDM LQ Port A Port A LVN Port P TI/ TIL Port R Energized open Energized closed PA PAX PB Model Manifold base model Port A Rc Port P Rc Port R Rc VVXA311-stations VVXA312-stations VVXA321-stations VVXA322-stations Manifold Manifold stations Manifold B mount 2 to 10 stations 1 8 1 4 1 8 1 4 1 4 1 4 17-3-105 6 The VX series will be revised shortly
Communication connector (PROFIBUS-DP): M12, 5 pins (plug) 3 2 5 R 1 4 0 0 0 0 BUS 3 Description Function No. 1 1 12 1 1 Terminal +5V VP X 1 2 2 P PWR Signal N R x D/T x D(N) 2 3 3 1 GND terminal DGND 3 Signal P R x D/T x D(P) 4 Shield ground SHIELD 5 Power connector: M12, 5 pins (Boss configuration differs from plug and communication connector.)
Rod Center Mounting Basic Fool ,r ' flange , trunn~~~ 1 !
Modify the detecting position while the auto switch is secured at the position of (3) in the figure. y r a w t Auto switch mounting bracket b Auto switch mounting screw M2.5 x 0.45 x 6 L q Cylinder BQ2-012 is a set of a and b shown above.
D-M9 D-A9 Ports Ports Compact Guide Cylinder Variations Series Bearing Bore size [mm] Cushion Piping Standard stroke [mm] 12 16 20 25 32 40 50 Basic type MGPK Slide bearing 12, 16: 10 to 150 20, 25: 20 to 200 32 to 50: 25 to 200 Ball bushing Rubber Top/Side ported Top ported (12 and 16 only) CONTENTS How to Order p. 3 Dimensions p. 8 Specifications p. 4 Model Selection p. 10 Weight
Connection status of the NFC reader/writer When the PC detects the NFC reader/writer connected to its USB port, "R/W detected" is displayed. Otherwise, "R/W not-detected" is displayed.
R. Fittings & Tubing Air Cylinders Rotary Actuators HB HT HC X N A H HA CB W K 2 x plug 2 x P HP (Piping port) 4 x J x E T 4 x counterbore dia.
r e t y i u OUT IN (Port 1) (Port 2) o Poppet Component Parts No.
SRP (IN side) SRF VCHR ITV IC r r ITVX IN (Inlet pressure) OUT (Outlet pressure) IN (Inlet pressure) OUT (Outlet pressure) PVQ VEF VEP q q VER e e VEA Figure 2 Backflow Figure 1 Normal VY1 VBA VBAT AP100 When the inlet pressure is higher than the set pressure, the check valve w closes and operates as a normal regulator (Figure 1).
SRH (IN side) SRP SRF ITV IC r r ITVH IN (Inlet pressure) OUT (Outlet pressure) IN (Inlet pressure) OUT (Outlet pressure) ITVX PVQ q q VY1 e e VBA VBAT Figure 2 Backflow Figure 1 Normal AP100 When the inlet pressure is higher than the set pressure, the check valve w closes and operates as a normal regulator (Figure 1).
(Panel mounting hole: See Dimensions.) 2 r o t c e n n o C h c n I c i r t e M 8 / 1 1 0 P M D K 2 . 3 3 2 P M D K e u l B 2 3 / 5 3 0 P M D K 4 4 0 P M D K r o t c e n n o C g u l P d e R 4 / 1 7 0 P M D K 6 6 0 P M D K 6 1 / 5 9 0 P M D K 8 8 0 P M D K 8 / 1 1 0 P M D K 2 . 3 3 2 P M D K r o t c e n n o c t e k c o S ) g n i k c a p h t i W ( e u l B 2 3 / 5 3 0 P M D K 4 4