Fitting Type: Branch Tee, Size Combination: Tubing: 1" x 7/8"; Thread: 1/2", Piping Type: Male, Thread: NPT, Packaging: Packaging Equivalent to Class M5.5 w/PVDF Nut
Fitting Type: B (Branch Tee), Size Combination: 6A (Tubing: 1" x 7/8"; Thread: 1/2"), Piping Type: M (Male), Thread: N (NPT), Packaging: 2 (Packaging Equivalent to Class M3.5 w/PVDF Nut)
SMC high purity HYPER FITTING series LQ* responds to the latest demands in process control. From parts cleaning to assembly and packaging, all processes are controlled for cleanliness, and the use of new PFA virtually eliminates particle generation and TOC (total organic carbon) allowing confident use for the most demanding applications. If chemistries or flow requirements are changed during
This is a legacy product. Please contact us for the latest version.sales@ocaire.com LQ FITTING. FITTING, HIGH PURITY, THD CONN. CONNECTORS. LQ. .06613 lb. 22.
This is a legacy product. Please contact us for the latest version.sales@ocaire.com LQ FITTING. FITTING, HIGH PURITY, THD CONN. CONNECTORS. LQ. .06613 lb. 22.
17 16 6 12 16 34.5 33.5 23.5 20 4 4 LQ3B2B-M 1/4" 20.5 26.5 6 LQ3B3A-M 3/8" 1/8" 22.5 TH TIH 4 4 LQ3B3B-M 1/4" 23.5 29.5 6.4 6.4 LQ3B3C-M 3/8" 24 30.5 10 LQ3B4A-M 1/2" 1/4" 27 26.5 5 22.5 19.5 9 18 21 47.5 44.5 25 6 6 LQ3B4B-M 3/8" 27.5 34 9.5 9.5 LQ3B4C-M 1/2" 29 37 LQ3B5A-M 3/4" 3/8" 32.5 33 6 24.5 22.5 10 20 24 52.5 50.5 29 39 37 10 10 LQ3B5B-M 1/2" 34 42 LQ3B5C-M 3/4" 34.5 44 16 16 LQ3B6A-M
LN, MN type: with 2 sockets.
M3 1 3 mn x g M1E mn x g mn x g M3E M3E x FE x Y FE FE Note) Regardless of the mounting orientation, dynamic moment is calculated using the formulas above.
Parker Swivel designator Quick Coupling Division 8145 Lewis Road Minneapolis, MN 55427 www.parker.com/quickcouplings D-5 Quick Coupling Division 8145 Lewis Road Minneapolis, MN 55427 www.parker.com/quickcouplings In-Line PS Series Swivels Housing O-Ring Back-up Ring Materials Of Construction Cap Screw Bearing Housing*:.Carbon Steel O-Ring Retaining Ring Shaft*:.Carbon Steel Plating:* .
Note 1) "LN" and "MN" include 2 sockets. Note 2) "D" and "DO" are not available for SY3000. Note 3) DIN43650C standard DIN terminal "Y" is also available.
: Without lead wire L P B: Locking slotted type E: Push-turn locking lever type H: 600 mm lead wire LN: Without lead wire LO: Without connector MO: Without connector L P 1 4632 LN and MN types are with 2 sockets.
Composite Center of Gravity Calculation m3 = mn = 0.88 + 4.35 + 0.795 + 0.5 = 6.525 kg 1 m3 X = x (mn x xn) 1 6.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 0.5 x 150) = 138.5 mm 1 m3 Y = x (mn x yn) 1 6.525 = (0.88 x 0 + 4.35 x 0 + 0.795 x 111 + 0.5 x 210) = 29.6 mm 1 m3 Z = x (mn x zn) 1 6.525 = (0.88 x 5 + 4.35 x 42.5 + 0.795 x 42.5 + 0.5 x 42.5) = 37.4 mm 4.
ME M 1 3 mn x g ME mn x g ME x FE x Y ME FE FE Note) Regardless of the mounting orientation, dynamic moment is calculated with the formulae above.
mm Round head combination screw Note) DC AC CEcompliant LN, MN type: With 2 sockets.
Nil None With vacuum switch Nil L Lead wire length 0.6 m Grommet type Electrical entry E Lead wire length 3 m Lead wire length 0.6 m Lead wire length 3 m Connector type G Grommet (Lead wire length 300 mm) Grommet (Lead wire length 600 mm) C CL CN H With lead wire L type plug connector Connector type L Without lead wire LN Without connector LO With lead wire M Without lead wire MN Without
"LN", "MN" types: with 2 sockets. For connector cable of M8 connector, refer to page 562.
MN MO Refer to Table (3) on page 13-3-35 regarding lead wire with connector part no.
: Without lead wire D: With connector LN: Without lead wire LO: Without connector MO: Without connector DO: Without connector H: Lead wire length 600 mm Type LN, MN: with 2 sockets.
: Without lead wire MO: Without connector V 6 VDC S 5 VDC R 3 VDC The LN or MN option includes 2 sockets for single solenoid valves and 3 sockets for double solenoid valves.
Wn Mass mn X-axis xn xa xb xc xd Y-axis yn ya yb yc yd Z-axis zn za zb zc zd X 1 mt = x (mn x xn)w Wa Wb Wc Wd ma mb mc md Y 1 mt = x (mn x yn)e D1 mt = x {mn x (A + zn)} r Z -X (n = a,b,c,d) Refer to the following sections 1 to 4 to calculate the center of gravity and the total load.