Series MXH. ø6, ø10, ø16, ø20. Compact Slide

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CAT.E27- Compact Slide Series MXH ø, ø, ø1, ø The use of an endless track linear guide produces a table cylinder having excellent rigidity, linearity and non-rotating accuracy.

The use of an endless track linear guide having excellent rigidity, linearity and Compact Slide Series Improved moment tolerance Allowable moment is approximately times greater than the Series MXU Long strokes up to mm are now standard Stroke (mm) Running parallelism to to.mm or less.1mm or less Mounting is possible from directions Lateral mounting (through holes) Lateral mounting (tapped holes) Piping is possible from 3 directions IN OUT OUT port Vertical mounting (tapped holes) Vertical mounting (tapped holes) OUT port (on both sides) IN port (on both sides) IN port Features 1

produces a table cylinder non-rotating accuracy MXH / ø, ø, ø1, ø A table cylinder suitable for short pitch mounting Application example Auto switches offer numerous variations Reed switches, solid state switches and 2 color indicator type solid state switches can be mounted ø bore size is now standard Series variations Model MXH MXH MXH1 MXH Bore size (mm) 1 1 Standard stroke (mm) 2 Features 2

Compact Slide Series MXH ø, ø, ø1, ø How to Order MXH A9 Compact slide Number of auto switches Nil S 2 pcs. 1pc. 1 Bore size mm mm 1mm mm Auto switch type Nil Without auto switch Refer to the table below for auto switch part numbers. Cylinder stroke (mm) Refer to the standard stroke table on P.2. Applicable auto switch types Type Reed switch Solid state switch Special function Diagnostic indication (2 color indicator) Electrical entry Grommet Grommet Indicator light No Yes Yes Wiring (output) 2 wire 3 wire (NPN equiv.) 3 wire (NPN) 3 wire (PNP) 2 wire 3 wire (NPN) 3 wire (PNP) 2 wire Auto switch model Lead wire length (m) Load voltage Electrical entry direction. 3 Applicable load DC AC Vertical Lateral (Nil) (L) (Z) V V 2V 12V or less 12V V V 2V Lead wire length symbol.m... Nil (Example) A93 3m... L (Example) A93L m... Z (Example) F9NWZ Solid state switches marked with a "" are produced upon receipt of order. Refer to pages 12 through 17 for sections related to auto switches. 12V A9V A93V A9V F9NV F9PV F9BV F9B F9NWV F9NW F9PWV F9BWV A9 A93 A9 F9N F9P F9PW F9BW IC circuit IC circuit Relay PLC Relay PLC Detailed specifications P.1 P.1 P.1 1

Compact Slide Series MXH Specifications Bore size (mm) Guide rail width (mm) Fluid Action Piping port size 1MPa: Approx..2kgf/cm ₂ 1 7 9 12 Air Double acting type M x. Minimum operating pressure.12mpa {1.2kgf/cm ₂ }.MPa {.1kgf/cm ₂ }.MPa {.1kgf/cm ₂ } Maximum operating pressure.7mpa{7.1kgf/cm ₂ } Proof pressure 1.MPa{.7kgf/cm ₂ } Ambient and fluid temperature Piston speed Allowable kinetic energy J (kgf cm) Lubrication Cushion Stroke length tolerance Auto switches (optional) Without auto switch: to 7 C (without freezing) With auto switch: to C (without freezing) to mm/s.12(.127).2(.2).(.).1(1.) Non-lube Rubber bumpers at both ends +1. Reed switch D-A9 Solid state switch D-F9 Standard Stroke Table Bore size (mm) Standard strokes (mm),, 1,,, 1,, 2,,,, Theoretical Output Table (N) Bore size (mm) Rod diameter (mm) Operating direction Piston area (mm ₂ ) Operating pressure MPa.3..7 3 OUT IN 2.3 21.2.9.3 1.2. 19. 1. OUT IN 7.. 23. 19. 39.3 33...2 1 OUT IN 1 172.3 1. 1. 11 121 OUT IN 31 2 9.2 79.2 17 132 2 1 Minimum Stroke for Mounting of Auto Switches (mm) Number of auto switches mounted D-A9 D-A9V Applicable auto switch models D-F9 D-F9V D-F9W D-F9WV 1pc. 2pcs. Weight Table (g) Model 1 Stroke (mm) 2 MXH MXH MXH1 MXH 2 117 21 37 7 12 227 7 1 27 1 1 2 91 12 279 2 9 17 29 111 192 323 97 12 21 33 1 23 3 7 2

Series MXH Table Displacement Table displacement due to pitch moment Table displacement (arrow) when a load acts upon the section marked with the arrow at the full stroke of the compact slide F Table displacement due to yaw moment Table displacement (arrow) when a load acts upon the section marked with the arrow at the full stroke of the compact slide F Mp My MXH MXH Displacement (mm).2.1.1.1.12.1....2.11 MXH Displacement (mm).3.2.2.1.1. MXH1 Displacement (mm).3.2.2.1.1. MXH Displacement (mm)..1.12.1 2,. 1,.,..2.22.3.7 Pitch moment Mp(N m).37.7.7.9 Pitch moment Mp(N m).9.9 1.7 1. Pitch moment Mp(N m) 2, 1,, 2, 1,,.3.3.2.2.1 2, 1,,.1..3 1.2 1. 2.1 3.1 Pitch moment Mp(N m) Design Precautions Caution Stroke Stroke Stroke Stroke Displacement (mm) MXH Displacement (mm).3.2.2.1.1. MXH1 Displacement (mm).1.1.12.1....2 MXH Displacement (mm).2.2.1.1...29.39 Yaw moment My(N m).17.33..7.2 Yaw moment My(N m).9. 1.1 1.9 Yaw moment My(N m) 1. 1. 2. 2.7 Yaw moment My(N m) q Bore size selections cannot be made with the above graphs alone. Perform bore size selections with the model selection method provided on pages and. w The displacement may increase after the action of an impact load. When the table is subjected to an impact load, there may be permanent distortion of the guide unit and increased displacement. 3 2, 1,, 2, 1,, 2, 1,, 2, 1,, Stroke Stroke Stroke Stroke

Compact Slide Series MXH Table Accuracy Table displacement due to roll moment Table displacement (at A) when a load acts upon section F at the full stroke of the compact slide MXH. Mr F A Running parallelism Model MXH MXH MXH1 MXH Stroke (st) to to.mm or less.1mm or less Allowable moment (N m) Pitch moment Yaw moment Mp My.7.39.9.2 1. 1.9 3.1 2.7 Roll moment Mr.9 1.37 2.7.9.3 Displacement (mm).3.2.2.1.1...39.9 Roll moment Mr(N m) MXH.9. Displacement (mm).7....3.2.1..39.9.7.9 1.1 1.37 Roll moment Mr(N m) MXH1. Displacement (mm)...3.2.1 MXH.7 1.1 1.7 1.9 2.3 2.7 Roll moment Mr(N m) Displacement (mm).1.9..7....3.2.1.7 1.7 2.3 3.1 3.92.71.9 Roll moment Mr(N m)

Caution Separate confirmation of the theoretical output is necessary. Refer to the theoretical output table on page 2. Determine the selection conditions in order, starting from the upper row in the table below, and choose one of the selection graphs to be used. Selection Conditions: Series MXH Model Selection Method Vertical Horizontal l: Load eccentricity Mounting position m m L L Maximum speed mm/s Load eccentricity lmm Selection graph to to to to L: Overhang (the distance from the cylinder shaft center to the load center of gravity) The direction of L can also be a diagonal direction. (See drawing at right) to L to z x c v b n m,. 1 2 Selection Graphs z to c (Vertical Mounting) m Load center of gravity Cylinder shaft center Graph z Maximum speed (mm/s) or less Graph c Maximum speed (mm/s) or less 1 Weight m(kg) 1 ø ø1 Weight m(kg).1.1 ø ø1 ø ø ø.1 ø Overhang L(mm).1 Overhang L(mm) Graph x Maximum speed (mm/s) or less Weight m(kg) 1.1 ø ø1 ø ø.1 Overhang L(mm)

Compact Slide Series MXH Selection Graphs v to 2 (Horizontal Mounting) Maximum speed mm/s or less Maximum speed mm/s or less Maximum speed mm/s or less Graph v Load eccentricity mm Graph m Load eccentricity mm Graph Load eccentricity mm 1 Weight m(kg) 1 ø ø1 ø Weight m(kg) 1.1 ø ø.1.1.1 Overhang L(mm) Overhang L(mm) Overhang L(mm) ø ø1 ø Weight m(kg).1.1 ø ø1 ø ø Graph b Load eccentricity mm Graph, Load eccentricity mm Graph 1 Load eccentricity mm 1 Weight m(kg) 1 ø ø1 ø ø.1 Overhang L(mm) Weight m(kg) 1.1.1 Overhang L(mm) ø ø1 ø ø Weight m(kg).1.1.1 Overhang L(mm) ø ø1 ø ø Graph n Load eccentricity mm Graph. Load eccentricity mm Graph 2 Load eccentricity mm 1 Weight m(kg) 1 ø 1 ø1 ø.1 ø.1 Weight m(kg) ø.1.1.1 Overhang L(mm) Overhang L(mm) Overhang L(mm) ø ø1 ø Weight m(kg).1.1 ø ø1 ø ø Selection Examples q Selection conditions Mounting: Vertical Maximum speed: mm/s Overhang: mm Load weight:.1kg w Selection conditions Mounting: Horizontal Maximum speed: mm/s Load eccentricity: mm Overhang: mm Load weight:.1kg Refer to Graph c based on vertical mounting and a speed of mm/s. In Graph c, find the intersection of a mm overhang and load weight of.1kg, which results in a determination of ø. Refer to Graph based on horizontal mounting, a speed of mm/s and load eccentricity of mm. In Graph, find the intersection of a mm overhang and load weight of.1kg, which results in a determination of ø1.

Series MXH Construction MXH (ø) MXH (ø) @ y @1!7 w q!9 t! i! @ y @1! w q!9 t!! i!!1 r! @2 u o!3 @ e!1 r u @2 @3!3 @ e!2 MXH1, (ø1, ø) @ y @1!7 w q!9 t! i!!1 r u @2 @3!3 @ e!2 Parts list No. Description Material 1 2 3 7 9 11 Cylinder tube Rod cover Head cover Piston rod Linear guide Table Piston Magnet Magnet holder Steel ball A Steel ball B Aluminum alloy Brass Brass Aluminum alloy Stainless steel Aluminum alloy Brass Aluminum alloy Magnet material Synthetic rubber Brass High carbon chrome bearing steel High carbon chrome bearing steel Note Hard anodized ø, ø electroless nickel plated ø1, ø white chromated Hard anodized ø, ø ø1, ø ø, ø nickel plated ø1, ø ø Parts list No. Description 12 C type snap ring for hole 13 Bumper 1 Bumper 1 Seal retainer 1 Round head Phillips screw 17 Hexagon socket head cap screw 1 Hexagon socket head cap screw 19 Hexagon socket head plug Nut 21 Rod seal 22 Piston seal 23 Piston gasket 2 Gasket Material Carbon tool steel Urethane Urethane Stainless steel Carbon steel Chrome molybdenum steel Chrome molybdenum steel Chrome molybdenum steel Brass NBR NBR NBR NBR Note ø, ø1, ø ø ø black zinc chromated ø, ø1, ø nickel plated Nickel plated Nickel plated Nickel plated ø, ø1, ø 7

Compact Slide Series MXH Dimensions/ø LT 1 9 LA LB J-M3 x. Depth. -M3 x. Depth.. 3-M x.7 through Bottom hole dia. ø3.3 -ø counter bore depth 3.3 17 19 3 39. NS. 31 + Stroke 39. + Stroke 1 19 1 Plug for port (hexagon socket head set screw) -M x. x l Guide rail width 2-M x. -M3 x. Depth. 1 9 1... + Stroke -M3 x. Depth. Stroke (mm) 1 2 J LA 2 LB 2 LT 2 2 2 2 2 2 72 2 92 NS 1 1 2 2

Series MXH Dimensions/ø LT 19 11 11 LA LB J-M x.7 Depth -M x.7 Depth 7. 3-M x. through Bottom hole dia. ø.3 -ø7. counter bore depth. Plug for port (hexagon socket head set screw) -M x. x l -M x.7 Depth Guide rail width 7 2-M x. 11 1 21. 7 13 23 7. 11. 12 NS 3 + Stroke. + Stroke + Stroke 12. -M x.7 Depth. 23 13. Stroke (mm) 1 2 J LA 2 LB 2 LT 9 9 9 9 9 9 79 9 99 NS 1 1 2 2 9

Compact Slide Series MXH Dimensions/ø1 LT 2 1 1 LA LB J-M x.7 Depth 9 -M x.7 Depth 3-M x. through Bottom hole dia. ø.3 -ø7. counter bore depth. 9 Plug for port (hexagon socket head set screw) -M x. x l 27 2 27 2 2. 3. 21. -M x.7 Depth Guide rail width 9 2-M x. 17 2.... 1 2 NS 12. 17 1 2 + Stroke + Stroke 12 + Stroke -M x.7 Depth Stroke (mm) 1 2 J LA 2 LB 2 LT 7 7 9 NS

Series MXH Dimensions/ø LT 31 1 LA LB J-M x. Depth 9. -M x. Depth 11 Plug for port (hexagon socket head set screw) 3-M x 1. through -M x. x l Bottom hole dia. ø.1 -ø9.3 counter bore depth -M x. depth Guide rail width 12 2-M x. 7 7 3 3 32 3 32 3.. 2. 9. 32 11 NS 1 1. 2. + Stroke + Stroke 1 + Stroke -M x. depth Stroke (mm) 1 2 J LA 2 LB 2 LT 7 7 9 11 NS 2 2 7 7 11

Series MXH Auto Switch Specifications Auto Switches/Proper Mounting Position for Stroke End Detection A 22 D-A9 D-F9 D-F9W W B A (22) D-A9V D-F9V D-F9WV Dimension inside ( ) is for model D-A9V. W B Double acting type (mm) Bore size D-A9, D-A9V D-F9W, D-F9 D-F9WV, D-F9V (mm) A W B A W B A W B 1 12. 11. 1. 2. 3. 2. 2.. 2. 3... 1. 1. 22.. 7. 2. 2.. 2. 7... 1. 1. 22... 2. 2. 7... Note 1) Negative dimensions in the chart are for mountings which do not extend beyond the cylinder body. Note 2) In the case of mm and mm strokes, there may be times when a switch does not turn OFF or when 2 switches turn ON at the same time, etc., due to the operating range. When setting up switches, set them about 1 to mm beyond the values shown in the table above. 12

Series MXH Auto Switch Mounting Watchmakers screw driver Set screw Caution Auto switch Auto switch mounting tool When fastening the auto switch set screw (included with auto switch), use a watchmakers screw driver with a handle to mm in diameter. Fastening torque Fasten with a torque of. to.n m. Note) When used with side piping, it is not possible to mount a D-F9V type auto switch on the side to which the piping is connected. Auto switch groove positions (mm) -ø.2 Auto switch mounting groove Bore size (mm) 1 A 1 19 2 B.9. 13.7 17.1 B A 13

Reed switches D-A9 3 wire/2 wire Auto Switch Specifications Auto switch part no. D-A9 Electrical entry direction Wiring system Applicable load Lateral D-A9V Vertical 2 wire IC circuit, Relay, PLC D-A93 Lateral D-A93V Vertical Relay, PLC D-A9 D-A9V Lateral Vertical 3 wire IC circuit Auto switch internal circuits Lead wire colors inside [ ] are old colors not conforming to IEC standards. D-A9 (V) Reed switch D-A93(V) Reed switch LED D-A9(V) Resistor Zener diode LED Resistor Diode to prevent reverse current Reed switch Contact protection box CD-P11 CD-P12 DC (+) Load OUT Black [White] DC () Auto Switch Dimensions OUT (±) OUT ( ) Contact protection box CD-P11 CD-P12 ± (+) DC power () OUT (+) OUT () Load voltage/ Load current range and maximum load current Contact protection circuit Internal voltage drop Indicator light AC 2V DC or less/ma AC V DC or less/ma AC V DC or less/ma including 3m 1Ω or less ( ) None Lead wires... Oil resistant vinyl cabtire cord, ø2.7,.m D-A9(V), D-A93(V).1mm² x 2 wire (brown, blue [red, black]) D-A9(V).1mm² x 3 wire (brown, black, blue [red, white, black]) Insulation resistance... MΩ or more with a VDC megohmmeter (between lead wire and case) Withstand voltage... VAC for 1min. (between lead wire and case) Auto Switch Weight Table Lead wire length.m Lead wire length 3m Contact Protection Boxes Part No. CD-P11 CD-P12 Model Voltage VAC 2VDC D-A9 1 lead wire length D-A9V 1 D-A9 type switches do not have internal contact protection circuits. Use a contact protection box when operating an induction load, when the lead wire length is m or more, and with VAC. Lead wire length Switch connection side.m Load connection side.m Since D-A9(V) switches have no particular voltage specification below VAC, select a contact protection box based on the level of voltage to be used. 2VDC/ to ma VAC/ to ma D-A93 1 CD-P11 None to VDC/mA 2.7V or less.v or less Red LED lights up when ON Surge absorber CD-P12 Zener diodes Ambient temp.... to C Leakage current... Operating time... 1.2ms Impact resistance... m/s² {.G} Enclosure... IEC29 Standard IP7 (JISC9) watertight type "L" appears at the end of the part number when the lead wire length is 3m. Example) D-A9L D-A93V 1 Choke coil D-A9 1 OUT OUT Choke coil OUT(+) OUT() D-A9 M2. x l Slotted-head set screw ø2.7 D-A93, D-A9 M2. x l Slotted-head set screw Indicator light D-A93V, D-A9V M2. x l Slotted-head set screw 22 2 2. ø 2 22 (). Most sensitive position D-A9V M2. x l Slotted-head set screw 22 2 ø2.7 ø Unit: g D-A9V 1 Contact protection box internal circuits Lead wire colors inside [ ] are old colors not conforming to IEC standards. 2. 2 22 () () Indicator light ø2.7. ø Most sensitive position 9.1.1. Most sensitive position () ø2.7 9.1.1. Most sensitive position 1

Solid State Switches D-F9 3 wire/2 wire Auto Switch Specifications Auto switch part no. Electrical entry direction Wiring system Output system Applicable load Power supply voltage Current consumption Load voltage Load current Internal voltage drop Leakage current Indicator light D-F9N Lateral NPN type D-F9NV D-F9P Vertical Lateral 3 wire IC circuit, 2VDC Relay, PLC 12 2VDC (. to 2VDC) ma or less 2VDC or less ma or less. or less at 1.V or less ( a load current ) of ma PNP type D-F9PV Vertical ma or less.v or less D-F9B Lateral D-F9BV Vertical 2 wire 2VDC Relay, PLC 2VDC ( to 2VDC) to ma V or less µa or less at 2VDC.mA or less at 2VDC Red LED lights up when ON Lead wires... Oil resistant vinyl cabtire cord, ø2.7,.m D-F9N(V), D-F9P(V).1mm² x 3 wire (brown, black, blue [red, white, black]) Operating time... 1ms or less Impact resistance... m/s² {2G} D-F9B(V).1mm² x 2 wire (brown, blue [red, black]) Enclosure... IEC29 Standard IP7 Insulation resistance... MΩ or more with a VDC megohmmeter (between lead wire and case) Withstand voltage...vac for 1min. (between lead wire and case) Indicator light... Lights up when ON (JISC9) watertight type "L" appears at the end of the part number when the lead wire length is 3m. Example) D-F9NL Ambient temp.... to C Auto Switch Weight Table Model D-F9N Lead wire length.m. Lead wire length 3m 3. D-F9P. 3. D-F9B 31 D-F9NV 7 37 D-F9PV 7 37 Unit: g D-F9BV 31 Auto switch internal circuits Lead wire colors inside [ ] are old colors not conforming to IEC standards. Auto Switch Dimensions D-F9N (V) DC (+) D-F9N, D-F9P, D-F9B 2. Mounting screw M2. x l Slotted-head set screw Indicator light ø2.7 Main switch circuit OUT Black [White] 2 DC () (Black) 2. 22 () D-F9P (V) DC (+) Most sensitive position Main switch circuit OUT Black [White] DC() D-F9NV, D-F9PV, D-F9BV. 2. Mounting screw M2. x l Slotted-head set screw Indicator light D-F9B (V) Main switch circuit OUT (+) ().2 3. 2.7 2.3 OUT() 3.1 Most sensitive position 1

2 Color Indicator Type Solid State Switches D-F9W 3 wire/2 wire Auto Switch Specifications Auto switch part no. Electrical entry direction D-F9NW Lateral D-F9NWV Vertical D-F9PW Lateral D-F9PWV Vertical D-F9BW Lateral D-F9BWV Vertical Wiring system 3 wire 2 wire Output system NPN type PNP type Applicable load Power supply voltage Current consumption IC circuit, 2VDC Relay, PLC 12 2VDC (. to 2VDC) ma or less 2VDC Relay, PLC Load voltage Load current 2VDC or less ma or less ma or less 2VDC ( to 2VDC) to ma. or less at a Internal voltage drop 1.V or less( load current of ) ma.v or less V or less Leakage current µa or less at 2VDC.mA or less at 2VDC Indicator light Operating position: Red LED lights up Optimum operationg position: Green LED lights up Auto switch internal circuits Lead wire colors inside [ ] are old colors not conforming to IEC standards. D-F9NW(V) 3 wire Main switch circuit DC (+) OUT Black [White] Lead wires... Oil resistant vinyl cabtire cord, ø2.7,.m D-F9NW (V), D-F9PW (V).1mm² x 3 wire (, Black, ) [Red, White, Black] D-F9BW(V).1mm² x 2 wire (, ) [Red, Black] Insulation resistance... MΩ or more with a VDC megohmmeter (between lead wire and case) Withstand voltage... VAC for 1min. (between lead wire and case) Ambient temp.... to C Operating time...1ms or less Impact resistance...m/s² {2G} Enclosure... IEC29 Standard IP7 (JISC9) watertight type "L" appears at the end of the part number when the lead wire length is 3m. Example) D-F9NWL Auto Switch Weight Table Unit: g Model Lead wire length.m Lead wire length 3m D-F9NW. 3. D-F9NWV 7. 37 D-F9PW. 3. D-F9PWV 7. 37 D-F9BW.7 31 D-F9BWV. 31 Auto Switch Dimensions D-F9PW(V) 3 wire DC () DC (+) D-F9NW, D-F9PW, D-F9BW 2. Mounting screw M2. x l Slotted-head set screw Indicator light ø2.7 Main switch circuit OUT Black [White] DC () 2. 2 22 () D-F9BW(V) 2 wire OUT (+) OUT () D-F9NWV, D-F9PWV, D-F9BWV Most sensitive position Main switch circuit. 2. Mounting screw M2. x l Slotted-head set screw Indicator light Indicator light/display method Operating range ON Indicator Red Green Red OFF () 3. ø2.7 2.3 Optimum operating position.2 3.1 Most sensitive position 1

Series MHX Auto Switch Connections and Examples Basic Wiring Solid state 3 wire, NPN Main switch circuit Black [White] Load (Power supply for switch and load are separate.) Main switch circuit Black [White] Load Solid state 3 wire, PNP Main switch circuit Black [White] 2 wire <Solid state> Examples of Connection to PLC (Sequence Controller) Specification for sink input Specification for source input 3 wire, NPN Black 3 wire, PNP Switch [White] Input Load Switch Main switch circuit Main switch circuit Black [White] Input Load Load 2 wire <Reed switch> Indicator light, protection circuit, etc. Indicator light, protection circuit, etc. Load Load Connect according to the applicable PLC input specifications, as the connection method will vary depending on the PLC input specifications. COM PLC internal circuit 2 wire 2 wire Input COM Input PLC internal circuit Switch Switch COM PLC internal circuit Connection Examples for AND (Series) and OR (Parallel) 3 wire AND connection for NPN output (Using relays) The indicator lights will light up when both switches are turned ON. 2 wire with 2 switch AND connection 2 wire with 2 switch OR connection Switch 1 Switch 2 Black Switch 1 [White] Relay Black Switch 2 [White] Relay Load = 2V - V x 2 pcs. = 1V Example: Power supply is 2VDC Voltage decline in switch is V Load Relay contact When two switches are connected in series, a load may malfunction because the load voltage will decline when in the ON state. The indicator lights will light up if both of the switches are in the ON state. Load voltage at ON = Power supply Residual voltage - voltage x 2 pcs. Switch 1 Switch 2 COM AND connection for NPN output (Performed with switches only) Black Switch 1 [White] Load Black Switch 2 [White] PLC internal circuit Load = 1mA x 2 pcs. x 3kΩ = V Example: Load impedance is 3kΩ Leakage current from switch is 1mA OR connection for NPN output Switch 1 Switch 2 <Solid state> When two switches are connected in parallel, malfunction may occur because the load voltage will increase when in the OFF state. leakage load Load voltage at OFF = current x 2 pcs. x impedance Black [White] Load Black [White] <Reed switch> Because there is no current leakage, the load voltage will not increase when turned OFF, but due to the number of switches in the ON state, the indicator lights will sometimes get dark or not light up, because of dispersion and reduction of the current flowing to the switches. 17

Series MXH Safety Instructions These safety instructions are intended to prevent a hazardous situation and/or equipment damage. These instructions indicate the level of potential hazard by a label of "Caution", "Warning" or "Danger". To ensure safety, be sure to observe ISO 1 Note 1), JIS B 37 Note 2) and other safety practices. Caution : Operator error could result in injury or equipment damage. Warning : Operator error could result in serious injury or loss of life. Danger : In extreme conditions, there is a possible result of serious injury or loss of life. Note 1) ISO 1 : Pneumatic fluid power -- Recommendations for the application of equipment to transmission and control systems. Note 2) JIS B 37 : Pneumatic system axiom. Warning 1. The compatibility of pneumatic equipment is the responsibility of the person who designs the pneumatic system or decides its specifications. Since the products specified here are used in various operating conditions, their compatibility for the specific pneumatic system must be based on specifications or after analysis and/or tests to meet your specific requirements. 2. Only trained personnel should operate pneumatically operated machinery and equipment. Compressed air can be dangerous if an operator is unfamiliar with it. Assembly, handling or repair of pneumatic systems should be performed by trained and experienced operators. 3. Do not service machinery/equipment or attempt to remove components until safety is confirmed. 1. Inspection and maintenance of machinery/equipment should only be performed after confirmation of safe locked-out control positions. 2. When equipment is to be removed, confirm the safety process as mentioned above. Cut the supply pressure for this equipment and exhaust all residual compressed air in the system. 3. Before machinery/equipment is restarted, take measures to prevent shooting-out of cylinder piston rod, etc. (Bleed air into the system gradually to create back-pressure.). Contact SMC if the product is to be used in any of the following conditions: 1. Conditions and environments beyond the given specifications, or if product is used outdoors. 2. Installation on equipment in conjunction with atomic energy, railway, air navigation, vehicles, medical equipment, food and beverages, recreation equipment, emergency stop circuits, press applications, or safety equipment. 3. An application which has the possibility of having negative effects on people, property, or animals, requiring special safety analysis. 1

Series MXH Actuator Precautions 1 Be sure to read before handling. Warning Precautions on design 1. There is a possibility of dangerous sudden action by air cylinders if sliding parts of machinery are twisted due to external forces, etc. In such cases, human injury may occur; e.g., by catching hands or feet in the machinery, or damage to the machinery itself may occur. Therefore, the machine should be designed to avoid such dangers. 2. A protective cover is recommended to minimize the risk of personal injury. If a stationary object and moving parts of a cylinder are in close proximity, personal injury may occur. Design the structure to avoid contact with the human body. 3. Securely tighten all stationary parts and connected parts so that they will not become loose. When a cylinder operates with high frequency or a cylinder is installed where there is a lot of vibration, ensure that all parts remain secure.. A deceleration circuit or shock absorber, etc., may be required. When a driven object is operated at high speed or the load is heavy, a cylinder s cushion will not be sufficient to absorb the shock. Install a deceleration circuit to reduce the speed before cushioning, or install an external shock absorber to relieve the shock. In this case, the rigidity of the machinery should also be examined.. Consider a possible drop in operating pressure due to a power outage, etc. When a cylinder is used in a clamping mechanism, there is a danger of work dropping if there is a decrease in clamping force due to a drop in circuit pressure caused by a power outage, etc. Therefore, safety equipment should be installed to prevent damage to machinery and human injury. Suspension mechanisms and lifting devices also require consideration for drop prevention.. Consider a possible loss of power source. Measures should be taken to protect against human injury and equipment damage in the event that there is a loss of power to equipment controlled by air pressure, electricity or hydraulics, etc. 7. Design circuitry to prevent sudden lurching of driven objects. When a cylinder is driven by an exhaust center type directional control valve or when starting up after residual pressure is exhausted from the circuit, etc., the piston and its driven object will lurch at high speed if pressure is applied to one side of the cylinder because of the absence of air pressure inside the cylinder. Therefore, equipment should be selected and circuits designed to prevent sudden lurching, because there is a danger of human injury and/or damage to equipment when this occurs.. Consider emergency stops. Design so that human injury and/or damage to machinery and equipment will not be caused when machinery is stopped by a safety device under abnormal conditions, a power outage or a manual emergency stop. 9. Consider the action when operation is restarted after an emergency stop or abnormal stop. Design the machinery so that human injury or equipment damage will not occur upon restart of operation. When the cylinder has to be reset at the starting position, install manual safety equipment. Warning Selection 1. Check the specifications. The products advertised in this catalog are designed according to use in industrial compressed air systems. If the products are used in conditions where pressure, temperature, etc., are out of specification, damage and/or malfunction may be caused. Do not use in these conditions. Consult SMC if you use a fluid other than compressed air. 2. Intermediate stops. When intermediate stopping of a cylinder piston is performed with a 3 position closed center type directional control valve, it is difficult to achieve stopping positions as accurate and minute as with hydraulic pressure, due to the compressibility of air. Furthermore, since valves and cylinders, etc. are not guaranteed for zero air leakage, it may not be possible to hold a stopped position for an extended period of time. Contact SMC in case it is necessary to hold a stopped position for an extended period. Caution 1. Operate the piston within a range such that collision damage will not occur at the end of the stroke. Operate within a range such that damage will not occur when the piston having inertial force stops by striking the cover at the stroke end. Refer to the cylinder type selection procedure for the range within which damage will not occur. 2. Use a speed controller to adjust the cylinder drive speed, gradually increasing from a low speed to the desired speed setting. 19

Series MXH Actuator Precautions 2 Be sure to read before handling. Caution Mounting 1. Be certain to match the rod shaft center with the load and direction of movement when connecting. When not properly matched, problems may arise with the rod and tubing, and damage may be caused due to friction on areas such as the inner surface of the tubing, bushings, rod surface and seals. 2. Do not scratch or dent the sliding parts of the cylinder tube or piston rod, etc., by striking or grasping them with other objects. Cylinder bores are manufactured to precise tolerances, so that even a slight deformation may cause faulty operation. Moreover, scratches or dents, etc. in the piston rod may lead to damaged seals and cause air leakage. 3. Do not use until you verify that the equipment can operate properly. After mounting, repair or modification, etc., connect the air supply and electric power, and then confirm proper mounting by means of appropriate function and leak inspections.. Instruction manual. The product should be mounted and operated after thoroughly reading the manual and understanding its contents. Keep the instruction manual where it can be referred to as needed. Caution Piping 1. Preparation before piping. Before piping is connected, it should be thoroughly blown out with air (flushing) or washed to remove cutting chips, cutting oil and other debris from inside the pipe. 2. Wrapping of pipe tape. When screwing together pipes and fittings, etc., be certain that cutting chips from the pipe threads and sealing material do not get inside the piping. Also, when pipe tape is used, leave 1. to 2 thread ridges exposed at the end. Wrapping direction Expose approx. 2 threads Caution Pipe tape Lubrication 1. Lubrication of non-lube type cylinder. The cylinder is lubricated at the factory and can be used without any further lubrication. However, in the event that it will be lubricated, use class 1 turbine oil (with no additives) ISO VG32. Stopping lubrication later may lead to malfunction due to the loss of the original lubricant. Therefore, lubrication must be continued once it has been started. Warning Air Supply 1. Use clean air. If compressed air includes chemicals, synthetic oils containing organic solvents, salt or corrosive gases, etc., it can cause damage or malfunction. Caution 1. Install air filters. Install air filters at the upstream side of valves. The filtration degree should be µm or finer. 2. Install an air dryer, after cooler, etc. Air that includes much condensate causes malfunction of valves and other pneumatic equipment. To prevent this, install an air dryer or after cooler, etc. 3. Use the product within the specified range of fluid and ambient temperature. Take measures to prevent freezing, since moisture in circuits will be frozen under - C, and this may cause damage to seals and lead to malfunction. Refer to the Air Cleaning Equipment catalog for details on compressed air quality. Warning Operating Environment 1. Do not use in environments where there is a danger of corrosion. Refer to the construction drawings regarding cylinder materials. 2. In dirty areas, such as dusty locations or where water, oil, etc. splash on the equipment, take suitable measures to protect the rod. Warning Maintenance 1. Maintenance should be done according to the procedure indicated in the instruction manual. If handled improperly, malfunction and damage of machinery or equipment may occur. 2. Machine maintenance, and supply and exhaust of compressed air. When machinery is serviced, first confirm measures to prevent dropping of driven objects and run-away of equipment, etc. Then cut off the supply pressure and electric power, and exhaust all compressed air from the system. When machinery is restarted, confirm that operation is normal with actuators in the proper positions. Caution 1. Drain flushing. Remove condensate from air filters regularly. (Refer to specifications.)

Series MXH Specific Product Precautions 1 Be sure to read before handling. Refer to pages 1 through for safety instructions and precautions. Auto Switch Mounting Precautions When installing in close proximity Caution q In compact slides with D-A9 or D-F9 type auto switches, there is a danger of auto switch malfunction if the mounting pitch is less than the dimensions shown in Table 1. Be sure to allow at least the indicated interval. If it is not possible to maintain the intervals shown below, shielding will be necessary. Attach a steel plate or magnetic shielding plate (MU-S2), etc. to the relative position on a cylinder which will be close to an auto switch. (Inquire regarding details.) Auto switch malfunction will result if shielding plates are not used. Operating Direction with Different Pressure Ports q The compact slide can be piped from 3 directions. Confirm the pressure ports and operating direction. (See drawing below.) OUT Caution OUT port (on both sides) IN OUT port Table 1 Bore size (mm) MXH MXH MXH1 MXH d 1 (mm) L 21 2 3 7 IN port (on both sides) IN port Caution Operating Precautions q Positively do not put fingers between the table and cylinder tube, as they can be caught when the piston rod retracts, If fingers are caught in a cylinder, there is a danger of injury due to the strong cylinder output, and therefore caution must be exercised. w Operate within the limits of the maximum movable weight and allowable moment. e When the output of the compact slide will be directly applied to the table, it should be applied along the rod axis. (See drawing below.) Stroke Direction Backlash Caution Since the connection between the piston rod and table is a floating structure, there is a maximum table backlash of.1mm in the stroke direction. (See drawing below.) Piston rod and table connection r Be sure to attach a speed controller, and adjust the speed to mm/s or less. 21

Series MXH Specific Product Precautions 2 Be sure to read before handling. Refer to pages 1 through for safety instructions and precautions. Caution Mounting q When mounting a compact slide, tighten the screws properly at a torque value within the limiting range. Compact Slide Mounting A compact slide can be mounted from directions. Make a selection suitable for the applicable machinery and work pieces, etc. Lateral Mounting (Through Holes) Lateral Mounting (Tapped Holes) Model MXH MXH MXH1 MXH Bolts M3 x. M x.7 M x.7 M x. Max. fastening torque N m{kgf cm} 1.1 {11} 2. {2} 2. {2}.1 {2} l1 12.7 1.. 2. Model MXH MXH MXH1 MXH Bolts M x.7 M x. M x. M x 1 Max. fastening torque N m{ kgf cm} 2. {2}.1 {2}.1 {2}.1 {3} l1 12.7 1.. 2. l 9. 11.2 1.2 1. Vertical Mounting (Tapped Holes) Axial Mounting (Tapped Holes) Model MXH MXH MXH1 MXH Bolts M3 x. M x.7 M x.7 M x. Max. fastening torque N m {kgf cm} 1.1 {11} 2. {2} 2. {2}.1 {2} l. Model MXH MXH MXH1 MXH Bolts M3 x. M x.7 M x.7 M x. Max. fastening torque N m{ kgf cm} 1.1 {11} 2. {2} 2. {2}.1 {2} l. 22

Series MXH Specific Product Precautions 3 Be sure to read before handling. Refer to pages 1 through for safety instructions and precautions. Caution Mounting q When mounting a compact slide, tighten the screws properly at a torque value within the limiting range. Work Piece Mounting Work pieces can be mounted on 2 surfaces of the compact slide. Front Mounting Top Mounting Model MXH MXH MXH1 MXH Bolts M3 x. M x.7 M x.7 M x. Max. fastening torque N m {kgf cm} 1.1 {11} 2. {2} 2. {2}.1 {2} l. 7. 11 Model MXH MXH MXH1 MXH Bolts M3 x. M x.7 M x.7 M x. Max. fastening torque N m {kgf cm} 1.1 {11} 2. {2} 2. {2}.1 {2} l. 9 9. Work piece mounting Work pieces can be mounted on 2 surfaces of the compact slide. Since the table is supported by the linear guide, take care not to apply strong impact or large moment, etc. when mounting work pieces. Hold the table when fastening work pieces to it with bolts, etc. If the body is held while tightening bolts, etc., the guide section will be subjected to large moment, and there may be a loss of precision. For connection with a load having an external support/guide mechanism, select an appropriate connection method and perform careful alignment. Use caution, as scratches or nicks, etc. on the sliding parts of the piston rod can cause malfunction and air leakage. 23

SMC'S GLOBAL MANUFACTURING, DISTRIBUTION AND SERVICE NETWORK EUROPE AUSTRIA SMC Pneumatik GmbH. CZECH SMC Czech s.r.o. FINLAND SMC Pneumatiikka OY FRANCE SMC Pneumatique SA GERMANY SMC Pneumatik GmbH HUNGARY SMC Hungary Kft. IRELAND SMC Pneumatics (Ireland) Ltd. ITALY/ROMANIA ~ SMC Italia S.p.A. NETHERLANDS SMC Controls BV. NORWAY SMC Pneumatics Norway A/S RUSSIA SMC Fluid Application GmbH SLOVAKIA SMC Slovakia s.r.o. SLOVENIA SMC Slovenia d.o.c. SPAIN/PORTUGAL SMC Espana, S.A. EUROPE SWEDEN SMC Pneumatics Sweden AB SWITZERLAND SMC Pneumatik AG. UK SMC Pneumatics (U.K.) Ltd. ASIA CHINA SMC (China) Co., Ltd. HONG KONG SMC Pneumatics (Hong kong) Ltd. INDIA SMC Pneumatics (India) Pvt. Ltd. MALAYSIA SMC Pneumatics (S.E.A.) Sdn. Bhd. PHILIPPINES SMC Pneumatics (Philippines), Inc. SINGAPORE SMC Pneumatics (S.E.A.) Pte. Ltd. SOUTH KOREA SMC Pneumatics Korea Co., Ltd. TAIWAN SMC Pneumatics (Taiwan) Co., Ltd. THAILAND SMC Thailand Ltd. NORTH AMERICA CANADA SMC Pneumatics (Canada) Ltd. MEXICO SMC Corporation (Mexico) S.A. de C.V. USA SMC Pneumatics Inc. SOUTH AMERICA ARGENTINA SMC Argentina S.A. BOLIVIA SMC Pneumatics Bolivia S.R.L. CHILE SMC Pneumatics (Chile) S.A. VENEZUELA SMC Neumatica Venezuela S.A. OCEANIA AUSTRALIA SMC Pneumatics (Australia) Pty. Ltd. NEW ZEALAND SMC Pneumatics (N.Z.) Ltd. 1-1- Shimbashi, Minato-ku, Tokyo JAPAN Tel: 3-32-27 Fax: 3-3-2 1st printing May, 199 D-SMC.L.A. P-73 (M) Specifications are subject to change without prior notice and any obligation on the part of the manufacturer. Printed in Japan.