12 26 4 15 Accessory option: Hexagon socket head screw (special screws) 3 3 6 6 2-2H9 +0.025 0 depth 2 10 10 Groove for auto switch mounting 2-M3 x 0.5 thread depth 4 Mounting thread 11 22 12-3-12 13 Series MHF2 Low Profile Air Gripper Dimensions MHF2-8D1 2.5H9 +0.025 0 depth 2.5 28 2.5H9 +0.025 0 depth 2.5 MHZ MHF MHL MHR 2-M3 x 0.5 thread depth 7 Mounting thread MHK Courtesy of Steven Engineering
13 10 13 6.5 A 14.8 30 7 24 A 15.8 Z 3 Cross section AA (N-1) x H G H 6 depth 4.5 5H9 +0.030 Bottom through-hole 3.3 NN-M4 x 0.7 thread depth 8 0 5H9 +0.030 depth 4.5 0 F E (mm) Model Z E F G H N J MXW8-25 157 55 48 47 32 3 64 MXW8-50 182 53 76 46 30 4 71 Note) Adjuster bolt (Y) shown in the section above is attached only on B type (with shock absorber). 8-7-10 11 Long Stroke Slide Table
MHK2-20 20 10 Standard: Chloroprene rubber (CR) Black Optional: Fluoro rubber (FKM) Black Silicon rubber (Si) White MHK2-25 25 14 Bore size (mm) Opening/Closing stroke (mm) Long stroke 12 16 20 25 MHKL2-12 12 11 Standard stroke 4 6 10 14 11 14 18 22 MHKL2-16 16 14 Long stroke type Series MHKL2 MHKL2-20 20 18 MHKL2-25 25 22 12-6-2 12-6-3 3 Wedge Cam Operation Slide Guide Air Gripper Series
10 MHW 0.3 MPa 0 0 MRHQ 10 20 30 40 50 10 20 30 40 50 60 60 Gripping point L (mm) Gripping point L (mm) Misc.
B B For D-F8 Operating range at proper mounting position (Lm/2) Most sensitive position Operating range of single auto switch (Lm) 11-6-10
35) 10 (10) 16.5 19.2 18.4 21.6 20.5 23.2 22.4 25.6 05 20 10 A A 30 (25) 10 (10) 1 15 10 For D-F9, D-M9 Operating angle m: Value of the operating range Lm of a single auto switch converted to an axial rotating angle.
Model Gripping force per finger Gripping force Note 1) Open/ Close stroke (Both sides) mm Bore size mm 10 16 20 25 Note 2) Weight g Model External Internal 60 125 250 455 4 6 10 14 17 40 66 104 9.8 30 42 65 11-MHZ2-10D 11-MHZ2-16D 11-MHZ2-20D 11-MHZ2-25D In-line electrical entry Lead wire type Explanatory drawing L Note 1) Values based on pressure of 0.5 MPa, gripping point L = 20 mm, at
151 14 20 18 36 10 57.5 195.2 7 11.2 6.6 59 33 158.4 71.5 64 79.5 78 5.5 76.5 8 65.5 54 62 72 40 185 209 10 199 14 22 18 36 10 64.5 215.7 8 14.7 9 71 39 173.4 83.5 79 94 95 6.6 91 9 78 67 76 89 50 202 235 14 221 20 28 22 44 14 76.5 219.2 9 16.2 11 84.5 46 177.4 97 95 109.5 113 9 107 9 91 80 92 108 60 203 238 14 224 20 30 22 44 14 89.5 Dimensions for auto switch model D-F79W. 10-12-25 25
151 14 20 18 36 10 57.5 195.2 7 11.2 6.6 59 33 158.4 71.5 64 79.5 78 5.5 76.5 8 65.5 54 62 72 40 185 209 10 199 14 22 18 36 10 64.5 215.7 8 14.7 9 71 39 173.4 83.5 79 94 95 6.6 91 9 78 67 76 89 50 202 235 14 221 20 28 22 44 14 76.5 219.2 9 16.2 11 84.5 46 177.4 97 95 109.5 113 9 107 9 91 80 92 108 60 203 238 14 224 20 30 22 44 14 89.5 Dimensions for auto switch model D-F79W. 10-12-25 25
Minimum Auto Switch Mounting Stroke (mm) Auto switch model Bore size (mm) D-A9 A9V D-M9 D-M9V D-F9W D-F9WV D-F9BAL Number of auto switches 2 pcs. 10 5 15 10 20 10 15 20 1 pc. 5 5 15 5 20 10 15 2 pcs. 10 5 10 10 20 10 10 25,32,40,50 1 pc. 5 5 10 5 20 10 10 2 pcs. 10 5 10 10 15 10 10 63 1 pc. 5 5 10 5 15 5 5 Besides the models listed in How to Order, the following auto switches are applicable
-6 = 9.0 x 10-6 (kgm2) Moment of inertia around Z axis IA = IZ1 + m1r12 X 10-6 z r2 Z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis IZ2 = {m2 (d2 + e2)/12} x 10-6 IZ2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) IB = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) I =
-6 = 9.0 x 10-6 (kgm2) Moment of inertia around Z axis IA = IZ1 + m1r12 X 10-6 z r2 Z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis IZ2 = {m2 (d2 + e2)/12} x 10-6 IZ2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) IB = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) I =
A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)
A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)
-15 -20 -30 -10 -15 -10 -15 -20 -30 -10 -15 -10 -15 -20 -30 -10 -15 1 9h9 M3 x 0.5 0.88 6 M3 x 0.5 0.88 6 3 6 M3 x 0.5 0.88 6 3 6 12h9 2 2 2 MHK 1.5 M4 x 0.7 2.1 8 M4 x 0.7 2.1 8 4 8 M4 x 0.7 2.1 8 4 8 14h9 M5 x 0.8 4.3 10 2 M5 x 0.8 4.3 10 5 10 M5 x 0.8 4.3 10 5 10 16h9 MHS 1 9h9 3 3 3 1.5 6 M3 x 0.5 0.88 M3 x 0.5 0.88 6 6 M3 x 0.5 0.88 6 6 3 3 12h9 MHC How to Locate Finger and Attachment
0.7 29 40 30 10 70 3.5 20.9 4 25 2.5 25 5 14 MXY12 M5 x 0.8 31 52 40 15 86 8.5 30.9 5 3 36 32 6 18 PH TB Z T WR RL QW R RH WE WD Q W PR P PL TH Model MXY6 5.1 2.9 88 4 12 60 5 7 30 11 13 3(depth 3) 3(depth 3) 2.5 9 20 25.5 MXY8 6.1 98 3.4 4 15 70 6.5 7 38 19 13 3(depth 3) 3(depth 3) 3 10 25 32 MXY12 7.8 114 4.5 21 5 8.5 90 7 50 29 18 4(depth 4) 4(depth 4) 4 13 33 42 n QL Model 50 100 150
AF ,AR , , , ,1 ISO VG32. 5 , 5 8 - 3-2. 1 B 1 3 3-3. 3-4. 9 - () 3-5. ,, (-)90 , 5.2 Nm A 10 - 3-6. ,,, RS2H5079Nm RS2H63801214Nm -5 3-7. M4 M41.5Nm -6 11 - 4. A GR-S-010(10g) -7 5. -8-9 -8 -9 12 - , 3 6. 6-1. 1) 2) 3) 4) 5) 6) 7) 8) 9) 10) 11) 12) 13 - / 6-2.
(mm) 02 04 06 08 10 13 16 20 25 32 40 50 2 4 6 8 10 13 16 20 25 32 40 50 Pad type 02 04 06 08 10 13 16 20 25 32 40 50 2 4 6 8 10 13 16 20 25 32 40 50 Pressure gauge position Thread dia.
(valve open/closed), Seal Material: FKM (1349-80), Amount of leakage(Pa·m3/s): 1.3 × 10-10 (FKM) / 1.3 × 10-11 (FKM) (internal/external)