Ballscrews. Table of contents

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Transcription:

Ballscrews Table of contents 1. Accuracy rade of HIWIN Ballscrews... 1 1-1. International Standard of Accuracy rade for Ballscrews... 1 1-2. Accuracy rade of Precision Ballscrews... 1 1-3. Standard Combination of rade and Axial Play... 1 2. esign and Selection of HIWIN Ballscrews... 2 2-1. Ballscrews Range... 2 2-2. Standard Ballscrews Spindle and Lead... 2 2-3. Spindle End and Journal Configuration... 3 2-4. imension for Spindle End... 3 2-5. How to Order Ballscrews... 4 3. HIWIN Precision round Ballscrews... 5 3-1. HIWIN Precision round Ballscrew Series... 5 3-2. imensions for HIWIN Precision Ballscrews... 7 3-3. imensions for HIWIN Miniature round Ballscrews... 11 3-4. imensions for HIWIN End Machining round Ballscrew Series... 21 3-5. imensions for HIWIN Ultra High Lead Ballscrew... 34 4. HIWIN Rolled Ballscrews... 36 4-1. Precision Rolled Ballscrews... 36 4-2. High Precision Rolled Ballscrews... 38 5. imensions for HIWIN Rolled Ballscrews... 4 5-1. imensions for HIWIN Rolled Ballscrews... 41 6. imensions for HIWIN Stock Rolled Ballscrews... 43 7. Ballscrew Retrofit Kits for Manual Milling Machines... 44 7-1. Precision round Ballscrews set... 44 8. Multi-Solutions... 46 8-1. E1 self - lubricant cartridge... 46 8-2. R1 Rotating Nut... 46 8-3. High Load rive... 47 8-4. Cool Type... 48 8-5. Super S... 5 9. Accuracy Standards... 53 1. HIWIN Ballscrew Request For uote... 54 *The specifications in this catalogue are subject to change without notification

S99LE16-59 1 1. Accuracy rade of HIWIN Ballscrews 1.1 International Standard of Accuracy rade for Ballscrews e3 Unit :.1mm rade 1 2 3 4 5 6 7 1 ISO, IN 6 12 23 52 21 JIS 3.5 5 8 18 5 21 HIWN 3.5 5 6 8 12 18 23 5 21 1.2 HIWIN Accuracy rade of Precision Ballscrews Unit :.1mm Accuracy rade 1 2 3 4 5 6 e 2π 3 4 4 6 8 8 8 e 3 3.5 5 6 8 12 18 23 Item Thread length ±E e ±E e ±E e ±E e ±E e ±E e ±E e above below - 315 4 3.5 6 5 6 6 12 8 12 12 23 18 23 23 315 4 5 3.5 7 5 7 6 13 1 13 12 25 2 25 25 4 5 6 4 8 5 8 7 15 1 15 13 27 2 27 26 5 63 6 4 9 6 9 7 16 12 16 14 3 23 3 29 63 8 7 5 1 7 1 8 18 13 18 16 35 25 35 31 8 1 8 6 11 8 11 9 21 15 21 17 4 27 4 35 1 125 9 6 13 9 13 1 24 16 24 19 46 3 46 39 125 16 11 7 15 1 15 11 29 18 29 22 54 35 54 44 16 2 18 11 18 13 35 21 35 25 65 4 65 51 2 25 22 13 22 15 41 24 41 29 77 46 77 59 25 315 26 15 26 17 5 29 5 34 93 54 93 69 315 4 3 18 32 21 6 35 62 41 115 65 115 82 4 5 72 41 76 49 14 77 14 99 5 63 9 5 1 6 17 93 17 119 63 8 11 6 125 75 21 115 21 13 8 1 26 14 26 145 1 12 32 17 32 18 1.3 Standard Combination of rade and Axial Play Unit :.1mm rade 1 2 3 4 5 6 Axial Play 5 5 5 1 15 2 25

2 S99LE16-59 2. esign and Selection of HIWIN Ballscrews 2.1 HIWIN Ballscrew Range iameter: 6~1 mm Length: Max 12 Meters Accuracy: 3.5µm/ 3mm (JIS rade) Lead: 1~6 mm 2.2 HIWIN Standard Ballscrew Spindle and Lead HIWIN recommends the use of our standard ballscrews for your application, but we also offer specialty products such as high lead and miniature ballscrews. Type Miniature Standard High Lead Super High Lead lead dia. 1 1.5 2 2.5 3 3.175 4 4.23 5 5.8 6 6.35 8 1 12 12.7 16 2 24 25 25.4 32 4 5 6 8 1 12 15 16 2 22 25 28 32 36 4 45 5 55 63 7 8 1 * : Precision ground grade ballscrews, either left or right hand screws are available.

S99LE16-59 3 2.3 Spindle End and Journal Configuration ( III ) L1 L12 L11 L13 b P9 x t1 ( I ) L3 d1 d5 j6 d6 E L4 L7 ( II ) L5 d1 d5 j6 d6 d1 d5 j6 d7 d8 h7 IN 625 IN 628 IN 72 ( IV ) L9 L12 L11 L13 d1 d5 j6 d7 E b P9 x t1 ( V ) L1 L12 L11 L13 d1 d5 j6 d7 d8 h7 d8 h7 L6 b P9 x t1 2.4 imension for Spindle End Model d1 d5 d6 d7 d8 E L3 L4 L5 L6 L7 L8 L9 L1 L11 L12 L13 bxt1 Recommended Bearing I.II.III IN625 III.IV.V IN625 628 72 1 1 8 7.6 M8x.75 6 6 16 7 29 26.9 39 5 56 18 1 12 3.x1.8 68 738B 12 12 8 7.6 M8x.75 6 6 16 7 29 26.9 39 5 56 18 1 12 3.x1.8 68 738B 14 14 1 9.6 M1x.75 8 8 2 9 37 34 1.15 45 54 62 2 1 14 3.x1.8 62 72BTVP 16 16 12 11.5 M12x1 1 8 21 1 41 38 1.15 46 56 66 2 1 14 4.x2.5 621 731BTVP 2 2 15 14.3 M15x1 12-22 11 47 44 1.15 55 7 84 25 13 16 5.x3. 622 722BTVP 25 25 17 16.2 M17x1 15-23 12 49 46 1.15 56 72 86 25 13 16 5.x3. 623 723BTVP 28 28 2 19 M2x1 16-26 14 58 54 1.35 68 82 1 28 2 18 6.x3.5 624 7622TVP 32 32 25 23.9 M25x1.5 2-27 15 64 6 1.35 79 94 116 36 22 26 7.x4. 625 76225TVP 36 36 25 23.9 M25x1.5 2-27 15 64 6 1.35 79 94 116 36 22 26 7.x4. 625 76225TVP 4 4 3 28.6 M3x1.5 25-28 16 68 64 1.65 86 12 126 42 22 32 8.x4. 626 7623TVP 45 45 35 33.3 M35x1.5 3-29 17 8 76 1.65 97 114 148 5 24 4 1.x5. 627 76235TVP 5 5 4 38 M4x1.5 35-36 23 93 88 1.95 113 126 16 6 24 45 12.x5. 638 7624TVP 55 55 45 42.5 M45x1.5 4-38 25 93 88 1.95 125 138 168 7 24 5 14.x5.5 639 76245TVP 63 63 5 47 M5x1.5 45-33 27 12 97 2.2 14 153 188 8 27 6 14.x5.5 631 7625TVP 7 7 55 52 M55x2. 5 1 44 29 118 113 2.2 154 167 212 9 27 7 16.x6. 6311 76255TVP 8 8 65 62 M65x2. 6 1 49 33 132 126 2.7 171 184 234 1 3 8 18.x7. 6313 76265TVP 1 1 75 72 M75x2. 7 1 53 37 14 134 2.7 195 28 258 12 3 9 2.x7.5 6315 76275TVP We reserve the right to modify and improve value without prior notice. ifferent diameters and leads are available upon request.

4 S99LE16-59 2.5 How to Order HIWIN Ballscrews HIWIN manufactures ballscrews according to customer specifications. Please complete the HIWIN questionnaire (on page 54) and provide the following information needed for designing the ballscrew. 1. Nominal diameter. 6. Accuracy grade (lead deviation, geometrical tolerance). 2. Thread lead. 7. Working speed. 3. Thread length, total length. 8. Maximum static load, working load, preload drag torque. 4. End journal configuration. 9. Nut safety requirements. 5. Nut configuration (see 3-1, 4-3) 1. Lubrication hole position. Start type 1: Single start 2: ouble start 3: Triple start 4: Four start Right hand screw Nominal diameter Lead Number of turns Preload type P : Compression type O : Offset type : High lead double start T : High lead triple start : High lead quaternary start Ballscrew Nomenclature HIWIN ballscrews can be specified as follows: 1R4 1B2 PFWE1 8 1.35 M Nut type S: Single nut : ouble nut Nut shape S : Square nut R : Round F : Nut with flange Circulation type W : Tubes within nut body V : Tubes above nut body B : Bonded tube I : Internal cap H : End cap C : Super S series Note : M : Stainless H : Hollow Shaft Lead deviation in random 3mm travel path within thread length Total length Thread length Optional Functions E1 : Self-lubrication R1 : Rotating Nut C1,C2 : Cool Type Turns per circuit A : 1.5 turns B : 2.5 turns C : 3.5 turns T : 1. turn U : 2.8 turns S : 1.8 turns V :.7 turns K : 1. turn Note : 1. ifferent diameters and leads are available upon request. 2. Right hand thread is standard, left hand thread is available upon request. 3. Longer lengths are available upon request. 4. Stainless steel is available upon request, only if the ball size is less than 2.381 mm. 5. Complete questionnaire on page 121~122 and consult with HIWIN engineers. 6. If you need to order IN 6951 type, please mark IN. 7. Number of turns = Turns per circuit X Number of circuits Ex. B2 signify 2.5 (turns) x 2 (circuits)

S99LE16-59 5 3. HIWIN Precision round Ballscrews 3.1 Precision round Ballscrew Series eneral Type FSV FSW (F) Flange end (S) Single nut, (V) Tube above the nut diameter FV (F) Flange end (S) Single nut (W) Tube within the nut diameter FW (F) Flange end (S) ouble nut (V) Tube above the nut diameter FSI (F) Flange end () ouble nut (W) Tube within the nut diameter RSI (F) Flange end (S) Single nut (I) Internal recirculation cap (R) Round (S) Single nut (I) Internal recirculation cap FI RI (F) Flange end (S) ouble nut (I) Internal recirculation cap (R) Round () ouble nut (I) Internal recirculation cap

6 S99LE16-59 eneral Type PFW -Type 1 PFI (PF) Flange to flange () ouble nut (W)Tube within the nut diameter (PF) Flange to flange () ouble nut (I) Internal recirculation Cap OFSW OFSI (O) Offset pitch preload (F) Flange end (S) Single nut (W) Tube within the nut diameter (O) Offset pitch preload (F) Flange end (S) Single nut (I) Internal recirculation cap High Lead Type FSH FSV Large lead (F) Flange mounted (S) Single nut (H) End cap () ouble start (F) Flange end (S) Single nut (V) Tube above the nut diameter PFW -Type 2 Large lead (PF) Flange end, Compression preload () ouble nut (W) Tube within nut diameter ifferent design required by the drawing approval, please contact with HIWIN engineers for the other type listed above. ouble asterisks( ): Self-Lubricating Ballscrew E1 design is available, except the shaft diameter under 16mm or ball diameter under 2.381mm.

S99LE16-59 7 3.2 imensions for HIWIN Precision round Ballscrews FW TYPE Standard L±1.5 T S BC E Z X 1/8PT OIL HOLE Y 3 3 F g6 -.1 -.3 -.1 -.3 Model Size ynamic Nut Flange Bolt Fit Stiffness Static Ball Load Nominal Circuits kgf / µm Load Lead ia. 1x1 K 6 revs Co (kgf ) L F T BC-E X Y Z S ia. C (kgf) 16-5B2 2.5x2 65 1385 2799 4 11 64 12 51 5.5 9.5 5.5 24 16-5B1 16 2.5x1 32 763 14 4 8 64 12 51 5.5 9.5 5.5 24 16-5C1 5 3.175 3.5x1 46 113 1946 4 9 64 12 51 5.5 9.5 5.5 24 2-5B1 2.5x1 38 837 1733 44 8 68 12 55 5.5 9.5 5.5 24 2-5B2 2.5x2 76 1519 3465 44 11 68 12 55 5.5 9.5 5.5 24 2 2-6B1 2.5x1 4 1139 2187 48 92 72 12 59 5.5 9.5 5.5 24 6 3.969 2-6C1 3.5x1 55 1512 341 48 14 72 12 59 5.5 9.5 5.5 24 25-5A2 1.5x2 54 192 2622 5 12 73 11 61 5.5 9.5 5.5 24 25-5B1 2.5x1 46 939 229 5 8 74 12 62 5.5 9.5 5.5 24 5 3.175 25-5B2 2.5x2 9 174 4417 5 11 74 12 62 5.5 9.5 5.5 24 25-5C1 25 3.5x1 68 1252 385 5 9 74 12 62 5.5 9.5 5.5 24 25-6B2 2.5x2 94 234 5524 56 128 82 12 69 6.6 11 6.5 24 6 3.969 25-6C1 3.5x1 66 169 3844 56 14 82 12 69 6.6 11 6.5 24 25-1B1 1 4.763 2.5x1 48 1592 3237 6 122 86 16 73 6.6 11 6.5 24 28-5B1 2.5x1 51 984 2466 55 8 85 12 69 6.6 11 6.5 24 5 28-5B2 2.5x2 98 1785 4932 55 11 85 12 69 6.6 11 6.5 24 28 3.175 28-6A2 1.5x2 59 115 296 55 11 85 12 69 6.6 11 6.5 24 6 28-6B2 2.5x2 98 1776 498 55 123 85 12 69 6.6 11 6.5 24 32-4B2 4 2.381 2.5x2 91 171 3582 54 93 81 12 67 6.6 11 6.5 24 32-5B1 2.5x1 55 139 2833 58 8 84 12 71 6.6 11 6.5 24 32-5B2 5 3.175 2.5x2 19 1886 5666 58 11 84 12 71 6.6 11 6.5 24 32-5C1 3.5x1 76 1388 3967 58 9 84 12 71 6.6 11 6.5 24 32-6B1 2.5x1 57 149 351 62 92 88 12 75 6.6 11 6.5 24 32-6B2 6 3.969 2.5x2 112 2556 72 62 128 88 12 75 6.6 11 6.5 24 32-6C1 3.5x1 78 1888 4936 62 14 88 12 75 6.6 11 6.5 24 32-8A2 1.5x2 7 282 5151 66 135 1 15 82 9 14 8.5 3 32-8B1 2.5x1 58 181 4227 66 11 1 16 82 9 14 8.5 3 32-8B2 32 8 4.763 2.5x2 115 3284 8453 66 158 1 16 82 9 14 8.5 3 32-8B3 2.5x3 168 4653 12678 74 25 18 16 9 9 14 8.5 3 32-8C1 3.5x1 82 2428 5948 66 126 1 16 82 9 14 8.5 3 32-1A2 1.5x2 72 351 6612 74 167 18 15 9 9 14 8.5 3 32-1B1 2.5x1 58 2651 56 74 122 18 16 9 9 14 8.5 3 1 32-1B2 2.5x2 118 481 11199 74 182 18 16 9 9 14 8.5 3 32-1C1 6.35 3.5x1 86 3519 7785 74 142 18 16 9 9 14 8.5 3 32-12B1 2.5x1 62 262 551 74 153 18 18 9 9 14 8.5 3 32-12B2 12 2.5x2 118 481 11199 74 232 18 16 9 9 14 8.5 3 32-12C1 3.5x1 84 3518 7784 74 166 18 16 9 9 14 8.5 3 Remark : Stiffness values listed above are derived from theoretical formula to the elastic deformation between balltrack and balls while preload is 1% of dynamic load rating and axial load is applied.

8 S99LE16-59 FW TYPE Standard L±1.5 T S BC E Z X 1/8PT OIL HOLE Y 3 3 F g6 -.1 -.3 -.1 -.3 Model Size ynamic Nut Flange Bolt Fit Stiffness Static Ball Load Nominal Circuits kgf / µm Load Lead ia. 1x1 K 6 revs Co (kgf ) L F T BC-E X Y Z S ia. C (kgf) 36-6B1 2.5x1 62 1486 3969 65 92 1 12 82 6.6 11 6.5 24 6 3.969 36-6B2 2.5x2 121 2696 7937 65 128 1 12 82 6.6 11 6.5 24 36-12A2 4.763 1.5x2 8 2557 6693 7 155 18 15 9 9 14 8.5 3 12 36-12B1 2.5x1 67 2812 6334 75 126 12 16 98 11 17.5 11 3 36 36-1B2 1 6.35 2.5x2 132 515 12669 75 184 12 18 98 11 17.5 11 3 36-12B2 12 2.5x2 13 515 12668 75 26 12 18 98 11 17.5 11 3 36-8A2 1.5x2 77 2217 5669 7 135 18 15 9 9 14 8.5 3 8 4.763 36-8B2 2.5x2 126 3489 966 7 158 18 15 9 9 14 8.5 3 4-5B1 2.5x1 65 1141 3567 68 84 12 16 84 9 14 8.5 3 5 3.175 4-5B2 2.5x2 132 271 7134 68 114 12 16 84 9 14 8.5 3 4-6B2 6 3.969 2.5x2 136 2817 8855 7 132 14 16 86 9 14 8.5 3 4-8B1 2.5x1 69 23 532 74 11 18 16 9 9 14 8.5 3 4-8B2 2.5x2 137 3634 163 74 158 18 16 9 9 14 8.5 3 8 4.763 4-8B3 2.5x3 2 515 1594 74 21 18 15 9 9 14 8.5 3 4-8C1 3.5x1 96 2679 7438 74 126 18 16 9 9 14 8.5 3 4-1A2 1.5x2 87 3418 8398 82 17 124 18 12 11 17.5 11 3 4-1B1 2.5x1 72 2959 769 84 132 125 18 14 11 17.5 11 3 4 1 6.35 4-1B2 2.5x2 145 537 14138 84 192 125 18 14 11 17.5 11 3 4-1C1 3.5x1 12 3932 9841 84 152 125 18 14 11 17.5 11 3 4-12A2 1.5x2 88 46 944 86 16 128 18 16 11 17.5 11 3 4-12B1 2.5x1 7 3425 7837 86 153 128 18 16 11 17.5 11 4 12 4-12B2 2.5x2 141 6217 15674 86 225 128 18 16 11 17.5 11 4 4-12C1 7.144 3.5x1 13 4637 11146 86 179 128 18 16 11 17.5 11 3 4-16A2 1.5x2 83 47 945 86 214 128 18 16 11 17.5 11 4 4-16B1 16 2.5x1 72 3425 7837 86 182 128 18 16 11 17.5 11 4 4-16B2 2.5x2 143 6216 15674 86 272 128 22 16 11 17.5 11 3 45-1B1 2.5x1 76 3111 7953 88 134 132 18 11 11 17.5 11 3 1 6.35 45-1B2 2.5x2 156 5655 1595 88 194 132 18 11 11 17.5 11 3 45 45-12B2 12 7.938 2.5x2 162 7627 19799 96 23 142 22 117 13 2 13 4 45-16B2 16 7.144 2.5x2 158 6636 17895 9 278 132 18 11 11 17.5 11 3 5-5A2 1.5x2 96 1447 5382 8 17 114 16 96 9 14 8.5 3 5 3.175 5-5A3 1.5x3 143 251 872 8 127 114 16 96 9 14 8.5 3 5-6B2 2.5x2 161 393 11149 84 134 118 16 1 9 14 8.5 3 6 3.969 5-6B3 2.5x3 235 4384 16723 84 17 118 16 1 9 14 8.5 3 5 5-8B1 2.5x1 81 226 675 87 112 128 18 17 11 17.5 11 3 5-8B2 8 4.763 2.5x2 165 44 1349 87 16 128 18 17 11 17.5 11 3 5-8B3 2.5x3 244 5674 2114 87 28 128 18 17 11 17.5 11 3 5-1B1 1 6.35 2.5x1 88 3245 8918 93 133 135 18 113 11 17.5 11 3 Remark : Stiffness values listed above are derived from theoretical formula to the elastic deformation between balltrack and balls while preload is 1% of dynamic load rating and axial load is applied.

S99LE16-59 9 FW TYPE Standard L±1.5 T S BC E Z X 1/8PT OIL HOLE Y 3 3 F g6 -.1 -.3 -.1 -.3 Model Size ynamic Nut Flange Bolt Fit Stiffness Static Ball Load Nominal Circuits kgf / µm Load Lead ia. 1x1 K 6 revs Co (kgf ) L F T BC-E X Y Z S ia. C (kgf) 5-1B2 2.5x2 173 5923 1767 94 194 135 18 114 11 17.5 11 3 5-1B3 1 6.35 2.5x3 255 8394 2655 94 254 135 18 114 11 17.5 11 3 5-1C1 3.5x1 12 4393 12481 94 154 135 18 114 11 17.5 11 3 5-12B1 2.5x1 9 4367 1918 1 159 146 22 122 14 2 13 4 5 5-12B2 12 2.5x2 178 822 2294 12 232 15 22 125 13 2 13 4 5-12C1 7.938 3.5x1 123 5875 1538 12 184 15 22 125 13 2 13 4 5-16B2 16 2.5x2 174 7918 21837 1 28 146 22 122 14 2 13 4 5-2B1 2 2.5x1 9 4367 1918 1 227 146 28 122 14 2 13 4 55-1C1 1 6.35 3.5x1 132 4562 13661 1 154 14 18 118 11 17.5 11 4 55 55-12B2 12 7.938 2.5x2 185 8392 2439 15 232 154 22 127 13 2 13 4 63-8A2 1.5x2 17 2826 1129 14 142 146 18 124 11 17.5 11 4 8 4.763 63-8A3 1.5x3 154 44 15193 14 174 146 18 124 11 17.5 11 4 63-1B2 2.5x2 26 6533 22371 11 196 152 2 13 11 17.5 11 3 1 6.35 63-1B3 63 2.5x3 35 9258 33556 11 256 152 2 13 11 17.5 11 3 63-12B2 12 7.938 2.5x2 214 8943 2862 118 232 166 22 141 13 2 13 4 63-16B2 16 2.5x2 28 14862 469 124 296 172 22 147 13 2 13 4 9.525 63-2B2 2 2.5x2 28 14862 469 124 334 172 22 147 13 2 13 4 7-1B2 2.5x2 228 6843 2511 124 196 17 2 145 13 2 13 4 1 6.35 7-1B3 2.5x3 334 9698 37516 124 256 17 2 145 13 2 13 4 7-12B2 7 2.5x2 236 9382 31275 13 232 178 22 152 13 2 13 4 12 7.938 7-12B3 2.5x3 336 13296 46912 13 32 178 22 152 13 2 13 4 7-2B2 2 9.525 2.5x2 3 15644 5152 13 325 186 28 158 18 26 17.5 6 8-1B2 2.5x2 251 722 28538 13 2 178 22 152 13 2 13 4 1 6.35 8-1B3 2.5x3 368 127 4287 13 26 178 22 152 13 2 13 4 8-12B2 2.5x2 257 9797 35422 136 232 185 22 159 13 2 13 4 12 7.938 8-12B3 2.5x3 38 13884 53132 136 32 185 22 159 13 2 13 4 8 8-16B2 2.5x2 34 16485 58851 145 32 21 28 174 18 26 17.5 5 16 8-16B3 2.5x3 498 23363 88276 145 398 21 28 174 18 26 17.5 5 9.525 8-2B2 2.5x2 338 16485 58851 145 345 21 28 174 18 26 17.5 5 2 8-2B3 2.5x3 498 23363 88276 145 47 21 28 174 18 26 17.5 5 1-12B2 2.5x2 31 1761 44596 16 24 224 28 188 18 26 17.5 5 12 7.938 1-12B3 2.5x3 452 15251 66894 16 312 224 28 188 18 26 17.5 5 1-16B2 2.5x2 4 18123 74425 17 38 248 32 25 22 32 21.5 6 1 16 1-16B3 2.5x3 595 25684 11637 17 44 248 32 25 22 32 21.5 6 9.525 1-2B2 2.5x2 4 18123 74425 17 35 248 32 25 22 32 21.5 6 2 1-2B3 2.5x3 595 25684 11637 17 475 248 32 25 22 32 21.5 6 Remark : Stiffness values listed above are derived from theoretical formula to the elastic deformation between balltrack and balls while preload is 1% of dynamic load rating and axial load is applied.

1 S99LE16-59 FSH TYPE Standard 4- X THRU BC E M6x1P OIL HOLE M T L S M 3 3 g6 H F Model Size ynamic Stiffness Static Nut Flange Bolt Fit Ball Load Nominal Circuits kgf / µm Load Lead ia. 1x1 K 6 revs Co (kgf ) L F T BC-E H X S M ia. C (kgf) 15-2S1 15 2 1.8x1 18 543 917 34 45 55 1 45 36 5.5 24 16-16S2 1.8x2 35 86 169 32 48 53 1 42 38 4.5 26 16-16S4 1.8x4 68 157 337 16 16 16-16S2 1.8x2 35 86 169 3.175 33 48 58 1 45 38 6.6 26 16-16S4 1.8x4 68 157 337 2-2S2 1.8x2 42 97 212 39 48 62 1 5 46 5.5 27.5 2-2S2 2 2 1.8x2 42 97 212 2-2S4 1.8x4 81 176 424 38 58 62 1 5 46 5.5 32.5 3 25-25S2 1.8x2 53 147 341 25 25 3.969 25-25S4 1.8x4 15 267 683 47 67 74 12 6 56 6.6 39.5 3 32-32S2 1.8x2 66 29 52 32 32 4..762 32-32S4 1.8x4 128 38 14 58 85 92 15 74 68 9 48 4-4S2 1.8x2 82 342 874 4 4 6.35 4-4S4 1.8x4 159 622 1748 72 12 114 17 93 84 11 6 5-5S2 1.8x2 1 53 1328 5 5 7.938 5-5S4 1.8x4 193 911 2656 9 125 135 2 112 14 14 83.5 Remark : Stiffness values listed above are derived from theoretical formula to the elastic deformation between balltrack and balls while preload is 5% of dynamic load rating and axial load is applied.

S99LE16-59 11 3.3 imensions for HIWIN Miniature round Ballscrews FSI TYPE ( Shaft O 6, Lead 1. ) Miniature 7.5.5 C'.8 AA' 7 L3 (3) L2 22.5 (1) L1 HRC (58~62).25 C C R.2 MAX 7 3 2MAX B INCOMPLETE THREA 3.5 15.8 B.9 B C.3 C.3 4.5-.8 6 -.2 -.7 C.3 M6x.75P 9.5 -.22 M6 -.162 P5.513 -.22 -.122 A 24 -.6 12-.17 A' WITHOUT WIPER 6 C.2 M2.5x.45Px5 P 4-3.4 THRU BC 18 8 -.2 - SECTION 3 16 3 - VIEW Ballscrew ata irection Right Hand Lead (mm) 1. Lead Angle 2.99 P.C.. (mm) 6.1 Steel Ball (mm) φ.8 Circuits 1x3 ynamic Load C (kgf) 66 Static Load Co (kgf) 111 Axial Play (mm).5 MAX rag Torque (kgf-cm).13 MAX.3 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 4 R6-1.T3-FSI-65-15-.8 65 75 15 3 7 R6-1.T3-FSI-95-135-.8 95 15 135 3 1 R6-1.T3-FSI-125-165-.8 125 135 165 3

12 S99LE16-59 FSI TYPE ( Shaft O 8, Lead 1. ) Miniature R.5 L3 (37) L2 9 1 27 (12) L1 HRC (58~62).25 C' 16.25 C 4.5 C.8 AA'.8 B.8 AA' 8 +.1.9 B 6.8 9 4 +.1 R.2 C B.8 MAX C.2 C' R.5 6-.8 C.5 8 M8x1P -.26 M8-.26 -.26 P7.35-.138 -.2 -.8 C.2 11.5 7 A 27 14 -.6 -.17 8 A' WITHOUT WIPER R.2 MAX 6 -.2 -.1 5.7-.6 1 -.2 4-3.4 THRU BC 21 - SECTION 3 3 18 - VIEW Ballscrew ata irection Right Hand Lead (mm) 1. Lead Angle 2.25 P.C.. (mm) 8.1 Steel Ball (mm) φ.8 Circuits 1x3 ynamic Load C (kgf) 79 Static Load Co (kgf) 157 Axial Play (mm).5 MAX rag Torque (kgf-cm).18 MAX.5 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 4 R8-1.T3-FSI-8-138-.8 8 92 138 3 7 R8-1.T3-FSI-11-168-.8 11 122 168 3 1 R8-1.T3-FSI-14-198-.8 14 152 198 3 15 R8-1.T3-FSI-19-248-.8 19 22 248 3

S99LE16-59 13 FSI TYPE ( Shaft O 8, Lead 2. ) Miniature R.5 1 9 (37) 27.5 C.8 AA' C.25 C R.2 MAX (12) 8 4 L3 B 4 L2 L1 (HRC 58~62) 26.8 B.9 B C.2 9.4 C'.8 AA' +.1 6.8 +.1.8 C' R.5 6-.8 C.5 8 M8x1P -.26 M8-.26 -.26 P7.35 -.138 -.2 -.8 C.2 11.5 6.5 A 29 -.6 16-.17 8 A' R.2 MAX WIPER BOTH ENS 6 5.7 -.6 -.2 -.1 4-3.4 THRU BC 23 1 -.1 - SECTION 3 2 3 - VIEW Ballscrew ata irection Right Hand Lead (mm) 2 Lead Angle 4.44 P.C.. (mm) 8.2 Steel Ball (mm) φ 1.5 Circuits 1x3 ynamic Load C (kgf) 17 Static Load Co (kgf) 267 Axial Play (mm).5 MAX rag Torque (kgf-cm).2 MAX.5 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 4 R8-2T3-FSI-8-138-.8 8 92 138 3 7 R8-2T3-FSI-11-168-.8 11 122 168 3 1 R8-2T3-FSI-14-198-.8 14 152 198 3 15 R8-2T3-FSI-19-248-.8 19 22 248 3

14 S99LE16-59 FSI TYPE ( Shaft O 1, Lead 2. ) Miniature (37) 1 27.4 C.5 C.8 AA' 9 R.2 C MAX R.5 (12) 8 4 B L3 5 L2 L1 (HRC 58~62) 28.8 B.9 B C.5 9 C'.4 C'.8 AA' 6.8 +.1.8 +.1 R.5 6 - -.8 C.5 M8x1P -.26 M8-.26 -.26 P7.35-.138 8 -.2 -.8 C.2 11.5 8 A 35 -.6 18-.17 A' 1 WIPER BOTH ENS R.2 MAX 6 5.7 -.6 -.2 -.1 4-4.5 THRU BC 27 1 -.1 - SECTION 3 22 3 - VIEW Ballscrew ata irection Right Hand Lead (mm) 2 Lead Angle 3.57 P.C.. (mm) 1.2 Steel Ball (mm) φ 1.5 Circuits 1x3 ynamic Load C (kgf) 196 Static Load Co (kgf) 348 Axial Play (mm).5 MAX rag Torque (kgf-cm).1~.24.5 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 5 R1-2T3-FSI-1-158-.8 1 112 158 3 1 R1-2T3-FSI-15-28-.8 15 162 28 3 15 R1-2T3-FSI-2-258-.8 2 212 258 3 2 R1-2T3-FSI-25-38-.8 25 262 38 3

S99LE16-59 15 FSI TYPE ( Shaft O 1, Lead 2.5 ) Miniature R.5 1 9 37.5 C.8 (27) (12) L1 (HRC 58~62) 32.4 AA' C C R.2 MAX 8 4 L3 B 5 L2.8 B.9 B C.5 9 C'.4.8 6.8 C' AA' +.1.8 R.5 +.1 6 -.8 C.5 C.2 M8x1P -.26 M8-.26 -.2 8 -.8 11.5 A 7.5 19 -.7 -.2 R.2 1 A' MAX WIPER BOTH ENS -.2 6 -.1 5.7 -.6 P7.35 -.26 -.138 36 4-4.5 THRU BC 28 1 -.1 - SECTION 3 23 3 - VIEW Ballscrew ata irection Right Hand Lead (mm) 2.5 Lead Angle 4.46 P.C.. (mm) 1.2 Steel Ball (mm) φ 2 Circuits 1x3 ynamic Load C (kgf) 274 Static Load Co (kgf) 438 Axial Play (mm).5 MAX rag Torque (kgf-cm).2~.3.5 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 5 R1-2.5T3-FSI-1-158-.8 1 112 158 3 1 R1-2.5T3-FSI-15-28-.8 15 162 28 3 15 R1-2.5T3-FSI-2-258-.8 2 212 258 3 2 R1-2.5T3-FSI-25-38-.8 25 262 38 3

16 S99LE16-59 FSI TYPE ( Shaft O 12, Lead 2 ) Miniature R.5 15.5 C 45 3.4 C.8 AA' 1 C R.2 MAX (15) 1 5 L3 B 5 L2 L1 (HRC 58~62) 28.8 B.9 B 1 C.5.9 C'.4 C'.8 AA' +.1 7.9 +.1 R.5 8 -.9 C.5 M1x1P M1 -.26 -.26 P9.35 -.26 -.138 1 -.2 -.8 C.2 14 1 A 37 -.7 2-.2 12 A' R.2 MAX WIPER BOTH ENS 8 7.6-.8 -.4 -.12 12 -.1 4-4.5 THRU BC 29 - SECTION 3 24 3 - VIEW Ballscrew ata irection Right Hand Lead (mm) 2 Lead Angle 2.99 P.C.. (mm) 12.2 Steel Ball (mm) φ 1.5 Circuits 1x3 ynamic Load C (kgf) 217 Static Load Co (kgf) 43 Axial Play (mm).5 MAX rag Torque (kgf-cm).4~.35.5 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 5 R12-2T3-FSI-11-18-.8 11 125 18 3 1 R12-2T3-FSI-16-23-.8 16 175 23 3 15 R12-2T3-FSI-21-28-.8 21 225 28 3 2 R12-2T3-FSI-26-33-.8 26 275 33 3 25 R12-2T3-FSI-31-38-.8 31 325 38 3

S99LE16-59 17 FSI TYPE ( Shaft O 12, Lead 2.5 ) Miniature R.5 (15).5 C 1 45 3.8 AA'.4 C C R.2 MAX (15) 1 5 L3 B 5 L2 L1 (HRC 58~62) 32.8 B.1 B C.5 1 7.9 +.1 C'.4 C'.8 AA'.9 +.1 R.5 8 -.9 C.5 M1x1P M1 P9.35 -.26 -.26 -.26 -.138 1 -.2 -.8 C.2 14 1.5 A 38 21 -.7 -.2 12 A' R.2 MAX WIPER BOTH ENS 8 7.6 -.4 -.12 -.8 4-4.5 THRU BC 3 3 3 12 -.1 - SECTION 25 - VIEW Ballscrew ata irection Right Hand Lead (mm) 2.5 Lead Angle 3.73 P.C.. (mm) 12.2 Steel Ball (mm) φ 2 Circuits 1x3 ynamic Load C (kgf) 39 Static Load Co (kgf) 546 Axial Play (mm).5 MAX rag Torque (kgf-cm).4~.35.1 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 5 R12-2.5T3-FSI-11-18-.8 11 125 18 3 1 R12-2.5T3-FSI-16-23-.8 16 175 23 3 15 R12-2.5T3-FSI-21-28-.8 21 225 28 3 2 R12-2.5T3-FSI-26-33-.8 26 275 33 3 25 R12-2.5T3-FSI-31-38-.8 31 325 38 3

18 S99LE16-59 FSW TYPE ( Shaft O 12, Lead 5 ) Miniature 15 (45) 3.4 C (15) L3 1 L2 L1 (HRC 58~62) 4.8 B 1.4 C'.5 C.8 AA'.8 AA' R.5 1 C R.2 MAX 1 5 B.1 B C.5 C' 7.9.9 +.1 +.1 R.5 8-.9 C.5 1 M1x1P M1 P9.35 -.26 -.26 -.26 -.138 -.2 -.8 C.2 14 9.5 A 12 5 3 -.7 -.2 R.2 A' MAX WIPER BOTH ENS 8 3 32 3 15 45 7.6 -.8 -.4 -.12 4-4.5THRU, 8x4P BC 4 12 -.1 - SECTION M6x1Px6P - VIEW Ballscrew ata irection Right Hand Lead (mm) 5 Lead Angle 7.4 P.C.. (mm) 12.25 Steel Ball (mm) φ 2.381 Circuits 2.5x1 Axial Play (mm).5 or less ynamic Load C (kgf) 241 382 Static Load Co (kgf) 319 637 rag Torque (kgf-cm).1~.45.1 MAX Spacer Ball 1 : 1 - Stroke HIWIN Code L1 L2 L3 Accuracy grade 5 R12-5B1-FSW-11-18-.8 11 125 18 3 1 R12-5B1-FSW -16-23-.8 16 175 23 3 15 R12-5B1-FSW -21-28-.8 21 225 28 3 2 R12-5B1-FSW -26-33-.8 26 275 33 3 25 R12-5B1-FSW -31-38-.8 31 325 38 3 35 R12-5B1-FSW -41-48-.8 41 425 48 3 45 R12-5B1-FSW -51-58-.8 51 525 58 3

S99LE16-59 19 FSW TYPE ( Shaft O 12, Lead 1 ) Miniature R.5 15.5 C (45) 3.4 C.8 AA' 1 C R.2 MAX (15) 1 5 B L3 1 L2 L1(HRC 58~62) 5.8 B.1 B C.5 C' 1.4 C'.8 AA' 7.9.9 R.5 8-.9 C.5 M1x1P -.26 M1-.26 -.26 P9.35-.138 C.2 14 12 A' R.2 MAX WIPER BOTH ENS 8 3 32 3 4-4.5THRU, BC 4 8x4P 15 45 +.1 +.1 -.2 1-.8 9.5 A 5 -.7 3-.2 7.6-.8 -.4 -.12 12-.25 - SECTION M6x1Px6P (OIL HOLE) - VIEW Ballscrew ata irection Right Hand Lead (mm) 1 Lead Angle 14.57 P.C.. (mm) 12.25 Steel Ball (mm) φ 2.381 Circuits 2.5x1 Axial Play (mm).5 or less ynamic Load C (kgf) 241 382 Static Load Co (kgf) 319 637 rag Torque (kgf-cm).1~.5.15 MAX Spacer Ball 1 : 1 - Stroke HIWIN Code L1 L2 L3 Accuracy grade 1 R12-1B1-FSW -16-23-.8 16 175 23 3 15 R12-1B1-FSW -21-28-.8 21 225 28 3 25 R12-1B1-FSW -31-38-.8 31 325 38 3 35 R12-1B1-FSW -41-48-.8 41 425 48 3 45 R12-1B1-FSW -51-58-.8 51 525 58 3

2 S99LE16-59 FSW TYPE ( Shaft O 14, Lead 8 ) Miniature R.5 15 (45) 1 3.6 C.9 AA' 46.4 C 11.8 B C R.2 MAX (15) 1 5 B L3 L2 L1(HRC 58~62).12 B C.5 C' 22.4 C'.9 AA' 9.15 1.15 +.1 +.14 R.5 1 -.9 C.5 M12x1P -.26 M12-.26 P11.35 -.26 -.138 12 -.3 -.11 C.2 15 1.5 A 34 -.9 -.25 14 A' WIPER BOTH ENS R.2 MAX 1 3 34 3 4-5.5THRU, 9.5X5.5P BC 45 17 5 M5x.8Px12P 9.6 -.9 -.4 -.12 57 12 -.1 - SECTION M6x1Px6P (OIL HOLE) - VIEW Stroke HIWIN Code L1 L2 L3 Accuracy grade Ballscrew ata irection Right Hand Lead (mm) 8 Lead Angle 9.89 P.C.. (mm) 14.6 Steel Ball (mm) φ 3.175 Circuits 2.5x1 Axial Play (mm).5 or less ynamic Load C (kgf) 448 71 Static Load Co (kgf) 68 1215 rag Torque (kgf-cm).15~.79.24 MAX Spacer Ball 1 : 1-1 R14-8B1-FSW-189-271-.8 189 24 271 3 15 R14-8B1-FSW-239-321-.8 239 254 321 3 2 R14-8B1-FSW-289-371-.8 289 34 371 3 25 R14-8B1-FSW-339-421-.8 339 354 421 3 3 R14-8B1-FSW-389-471-.8 389 44 471 3 35 R14-8B1-FSW-439-521-.8 439 454 521 3 4 R14-8B1-FSW-489-571-.8 489 54 571 3 45 R14-8B1-FSW-539-621-.8 539 554 621 3 5 R14-8B1-FSW-589-671-.8 589 64 671 3 55 R14-8B1-FSW-639-721-.8 639 654 721 3 6 R14-8B1-FSW-689-771-.8 689 74 771 3 7 R14-8B1-FSW-789-871-.8 789 84 871 3 6 R14-5B1-FSW-689-771-.8 689 74 771 3

S99LE16-59 21 3.4 imensions for HIWIN End Machining round Ballscrew Series FSW TYPE ( Shaft O 15, Lead 1 ) Standard R.5.9 C (45) 15 3 (15) 1.14 AA'.4C C R.2 MAX 1 5 1 L3 11 OIL HOLE 6 B L2 L1 (HRC 58~62) 51.11 B.15 B 1 C.5 22.4 C'.14 AA' 9.15 1.15 +.1 12 A 15 3 34 3 4-5.5THRU, 9.5X5.5P BC 45 17 5 +.14 C' R.5 1-.9 C.5 M12x1P -.26 M12-.26 -.26 P11.35-.144 12 -.3 -.11 C.2 15 -.9 34-.25 A' WIPER BOTH ENS R.2 MAX M5x.8Px12P 9.6-.9 -.4 1-.12 57 12-.25 - SECTION - VIEW 2-M6x1Px6P Stroke HIWIN Code L1 L2 L3 Accuracy grade Ballscrew ata irection Right Hand Lead (mm) 1 Lead Angle 11.53 P.C.. (mm) 15.6 Steel Ball (mm) φ 3.175 Circuits 2.5x1 Axial Play (mm).5 or less ynamic Load C (kgf) 46 729 Static Load Co (kgf) 645 129 rag Torque (kgf-cm).15~.79.24 MAX Spacer Ball 1 : 1-1 R15-1B1-FSW- 189-271-.18 189 24 271 5 15 R15-1B1-FSW- 239-321-.18 239 254 321 5 2 R15-1B1-FSW- 289-371-.18 289 34 371 5 25 R15-1B1-FSW- 339-421-.18 339 354 421 5 3 R15-1B1-FSW- 389-471-.18 389 44 471 5 35 R15-1B1-FSW- 439-521-.18 439 454 521 5 4 R15-1B1-FSW- 489-571-.18 489 54 571 5 45 R15-1B1-FSW- 539-621-.18 539 554 621 5 5 R15-1B1-FSW- 589-671-.18 589 64 671 5 55 R15-1B1-FSW- 639-721-.18 639 654 721 5 6 R15-1B1-FSW- 689-771-.18 689 74 771 5 7 R15-1B1-FSW- 789-871-.18 789 84 871 5 8 R15-1B1-FSW- 889-971-.18 889 94 971 5 1 R15-1B1-FSW- 189-1171-.18 189 114 1171 5

22 S99LE16-59 FSW TYPE ( Shaft O 2, Lead 5 ) Standard 2.9 C (6).18 AA' 15 4 C.5 C R.2 MAX 9 L3 L2 (25) L1 7 1 56 1 11.1 B.12 B 2MAX INCOMPLETE B THREA X C' 25.5 C'.14 AA' 1.15 +.1 1.15 +.14 12-.11 M15x1P C.3 -.26 M15-.26 -.26 P14.35-.144 -.4 15-.12 19.5 A -.9 44-.25 WIPER BOTH ENS 2 C.3 14.3-.11 M6x1Px15P A' -.4 15-.12 67 26 8 6-5.5THRU, BC 55 9.5x5.5P.4.1 2 +.5 17 -.25 M6x1Px6P (OIL HOLE).2 1.1 15 +.1 F.4x.2IN59 X ETAIL - SECTION 45 45 - VIEW Ballscrew ata irection Right Hand Lead (mm) 5 Lead Angle 4.42 P.C.. (mm) 2.6 Steel Ball (mm) φ 3.175 Circuits 2.5x2 Axial Play (mm) ynamic Load C (kgf) 952 Static Load Co (kgf) 1732 rag Torque (kgf-cm).28~1.32 Spacer Ball 1 : 1 Stroke HIWIN Code L1 L2 L3 Accuracy grade 15 R2-5B2-FSW-225-335-.18 225 25 335 5 2 R2-5B2-FSW-275-385-.18 275 3 385 5 3 R2-5B2-FSW-375-485-.18 375 4 485 5 4 R2-5B2-FSW-475-585-.18 475 5 585 5 5 R2-5B2-FSW-575-685-.18 575 6 685 5 7 R2-5B2-FSW-775-885-.18 775 8 885 5

A S99LE16-59 23 FSW TYPE ( Shaft O 2, Lead 1 ) Standard R.5 2.9 C.14 AA' L3 (6) L2 25 4 (25) L1 (HRC 58~62) 1 54 1.4 C'.4 C 13.11 B OIL HOLE 6.14 AA' 15 R.2 C MAX 15 5 B.15 B C.3 1.15 +.1 +.14 1.15 C' R.5 12 -.11 C.5 M15x1P -.26 M15 -.26 -.26 P14.35-.144 -.4 15-.12 C.3 19.5 16.5 74 46 -.9 -.25 2 A' WIPER BOTH ENS R.2 MAX M6x1Px15P 14.3-.11 -.4 15-.12 3 46 3 4-6.6THRU, 11x6.5P BC 59 17-.25 24 66 - SECTION 2-M6x1Px6P - VIEW Ballscrew ata irection Right Hand Lead (mm) 1 Lead Angle 8.7 P.C.. (mm) 2.8 Steel Ball (mm) φ 3.969 Circuits 2.5x1 Axial Play (mm).5 MAX ynamic Load C (kgf) 718 1139 Static Load Co (kgf) 194 2187 rag Torque (kgf-cm).2~1.2.3 MAX Spacer Ball 1 : 1 - Stroke HIWIN Code L1 L2 L3 Accuracy grade 2 R2-1B1-FSW- 289-399-.18 289 314 399 5 3 R2-1B1-FSW- 389-499-.18 389 414 499 5 4 R2-1B1-FSW- 489-599-.18 489 514 599 5 5 R2-1B1-FSW- 589-699-.18 589 614 699 5 6 R2-1B1-FSW- 689-799-.18 689 714 799 5 7 R2-1B1-FSW- 789-899-.18 789 814 899 5 8 R2-1B1-FSW- 889-999-.18 889 914 999 5 9 R2-1B1-FSW- 989-199-.18 989 114 199 5 1 R2-1B1-FSW- 189-1199-.18 189 1114 1199 5 11 R2-1B1-FSW- 1189-1299-.18 1189 1214 1299 5 14 R2-1B1-FSW- 1289-1399-.18 1289 1314 1399 5

24 S99LE16-59 FSW TYPE ( Shaft O 2, Lead 2 ) Standard 2.9 C R.5 (6) 4.4 C.14 AA' 15 R.2 C MAX (25) 15 5 1 L3 13 OIL HOLE 7 B L2 L1 (HRC 58~62) 63.11 B.15 B 1 C.3 C' 25.4 C'.14 AA' 1.15 +.1 +.14 1.15 R.5 12 -.11 C.5 C.3 M15x1P M15 -.26 -.26 P14.35 -.26 -.144 -.4 15-.12 19.5 16.5 A 46 -.9 -.25 2 A' R.2 MAX WIPER BOTH ENS M6x1Px15P 14.3 -.11 -.4 15-.12 74 3 46 3 4-6.6THRU, 11x6.5P BC 59 17 -.25 24 66 - SECTION 2-M6x1Px6P - VIEW Ballscrew ata irection Right Hand Lead (mm) 2 Lead Angle 17.1 P.C.. (mm) 2.8 Steel Ball (mm) φ 3.969 Circuits 1.5x1 Axial Play (mm).5 MAX ynamic Load C (kgf) 453 719 Static Load Co (kgf) 641 128 rag Torque (kgf-cm).2~1.2.3 MAX Spacer Ball 1 : 1 - Stroke HIWIN Code L1 L2 L3 Accuracy grade 2 R2-2A1-FSW- 31-42-.18 31 335 42 5 3 R2-2A1-FSW- 41-52-.18 41 435 52 5 4 R2-2A1-FSW- 51-62-.18 51 535 62 5 5 R2-2A1-FSW- 61-72-.18 61 635 72 5 6 R2-2A1-FSW- 71-82-.18 71 735 82 5 7 R2-2A1-FSW- 81-92-.18 81 835 92 5 8 R2-2A1-FSW- 91-12-.18 91 935 12 5 9 R2-2A1-FSW- 11-112-.18 11 135 112 5 1 R2-2A1-FSW- 111-122-.18 111 1135 122 5 11 R2-2A1-FSW- 121-132-.18 121 1235 132 5 14 R2-2A1-FSW- 151-162-.18 151 1535 162 5

S99LE16-59 25 FSW TYPE ( Shaft O 25, Lead 5 ) Standard (8) 27 53.7 C 16.5 C.16 AA' C (3) 14 1 15 X 2MAX INCOMPLETE THREA B L3 L2 L1 55 11.13 B.15 B 15 X 15.35 1.35 C' 53.5 C'.16 AA' +.1 +.14 16 15-.11 M2x1P -.26 M2-.26 -.26 P19.35-.144 -.5 2-.14 A 73 -.9 5-.25 25 A' WIPER BOTH ENS 2 -.5 19-.21 -.14 M2x1P M2 P19.35 -.26 -.26 -.26 -.144 6-5.5THRU, BC 61 9.5x5.5P 28.4 8 2.1 +.5 22-.35 M6x1Px6P (OIL HOLE) +.1 1.1 15.2 F.4x.2IN59 X ETAIL - SECTION 45 45 - VIEW Ballscrew ata irection Right Hand Lead (mm) 5 Lead Angle 3.56 P.C.. (mm) 25.6 Steel Ball (mm) φ 3.175 Circuits 1.5x2 Axial Play (mm) ynamic Load C (kgf) 173 Static Load Co (kgf) 229 rag Torque (kgf-cm).36~1.44 Spacer Ball 1 : 1 Stroke HIWIN Code L1 L2 L3 Accuracy grade 15 R25-5B2-FSW-22-349-.18 22 25 349 5 2 R25-5B2-FSW-27-399-.18 27 3 399 5 3 R25-5B2-FSW-37-499-.18 37 4 499 5 4 R25-5B2-FSW-47-599-.18 47 5 599 5 5 R25-5B2-FSW-57-733-.18 57 6 733 5 6 R25-5B2-FSW-67-833-.18 67 7 833 5 7 R25-5B2-FSW-77-933-.18 77 8 933 5 9 R25-5B2-FSW-97-1133-.18 97 1 1133 5 1 R25-5B2-FSW-117-1333-.18 117 12 1333 5

26 S99LE16-59 FSW TYPE ( Shaft O 32, Lead 5 ) Standard L3 (95) L2 62 33 62 (35) L1 15 12 15 56 15.5 C 12.5 C'.13 B.7 C.17 AA'.14 AA' +.1.19 B 16.35 +.14 2 2MAX 1.35 2 C INCOMPLETE B C' X THREA X 2-.13 M25x1.5P -.5 -.32 25-.14 M25 A A' -.268 -.1 -.32 P24.26 58 -.182 -.29 WIPER BOTH ENS 85 23.9 25 32 -.21 -.5 -.14 M25x1.5P -.32 M25-.268 P24.26 -.32 -.182 8 6-6.6THRU, BC 71 11x6.5P 32 1.1.4 2.1 +.5 15 27-.35 M6x1Px6P (OIL HOLE).2 +.1 F.4x.2IN59 X ETAIL - SECTION 45 45 - VIEW Ballscrew ata irection Right Hand Lead (mm) 5 Lead Angle 2.79 P.C.. (mm) 32.6 Steel Ball (mm) φ 3.175 Circuits 2.5x2 Axial Play (mm) ynamic Load C (kgf) 1188 Static Load Co (kgf) 2833 rag Torque (kgf-cm).48~1.92 Spacer Ball 1 : 1 Stroke HIWIN Code L1 L2 L3 Accuracy grade 15 R32-5B2-FSW-265-415-.18 265 3 415 5 25 R32-5B2-FSW-365-515-.18 365 4 515 5 35 R32-5B2-FSW-465-615-.18 465 5 615 5 45 R32-5B2-FSW-565-715-.18 565 6 715 5 55 R32-5B2-FSW-665-857-.18 665 7 857 5 65 R32-5B2-FSW-765-957-.18 765 8 957 5 85 R32-5B2-FSW-965-1157-.18 965 1 1157 5 15 R32-5B2-FSW-1165-1357-.18 1165 12 1357 5 135 R32-5B2-FSW-1465-1657-.18 1465 15 1657 5

S99LE16-59 27 FSV TYPE ( Shaft O 16, Lead 16 ) Standard 15.9 C R.5 (45) 3.4 C.14 AA' 1 R.2 C MAX (2) 1 5 1 L3 11 OIL HOLE 6 B L2 L1 (HRC 58~62) 55.11 B.15 B 1 C.5 C' 22.4 C'.14 AA' 9.15 1.15 +.1 +.14 R.5 1 C.5 -.9 12 M12x1P -.26 M12-.26 -.26 P11.35-.144 -.3 -.11 C.2 15 13 A 57 34 -.9 -.25 4-5.5THRU, 9.5X5.5P BC 45 16 A' WIPER BOTH ENS R.2 M5x.8Px12P MAX 9.6-.9 3 34 1 -.4 -.12 3 12 -.25 5 17 2 MAX - SECTION 2-M6x1Px6P 19 MAX - VIEW Stroke HIWIN Code L1 L2 L3 Accuracy grade Ballscrew ata irection Right Hand Lead (mm) 16 Lead Angle 17.5 P.C.. (mm) 16.6 Steel Ball (mm) φ 3.175 Circuits 1.5x2 Axial Play (mm).5 MAX ynamic Load C (kgf) 34 481 Static Load Co (kgf) 41 819 rag Torque (kgf-cm).15~.79.24 MAX Spacer Ball 1 : 1-1 R16-16A1-FSV-184-271-.18 184 24 271 5 15 R16-16A1-FSV-234-321-.18 234 254 321 5 2 R16-16A1-FSV-284-371-.18 284 34 371 5 25 R16-16A1-FSV-334-421-.18 334 354 421 5 3 R16-16A1-FSV-384-471-.18 384 44 471 5 35 R16-16A1-FSV-434-521-.18 434 454 521 5 4 R16-16A1-FSV-484-571-.18 484 54 571 5 45 R16-16A1-FSV-534-621-.18 534 554 621 5 5 R16-16A1-FSV-584-671-.18 584 64 671 5 55 R16-16A1-FSV-634-721-.18 634 654 721 5 6 R16-16A1-FSV- 684-771-.18 684 74 771 5 7 R16-16A1-FSV- 784-871-.18 784 84 871 5 8 R16-16A1-FSV- 884-971-.18 884 94 971 5 1 R16-16A1-FSV- 184-1171-.18 184 114 1171 5

28 S99LE16-59 FSV TYPE ( Shaft O 25, Lead 2 ) Standard 27 16 (8) 53.1 C.18 AA' C.4 C R.2 MAX (3) 2 1 L3 L2 L1(HRC 58~62) 15 85 15 12.11B.15B C.3 C' 53.4C'.13 AA' 15.35 +.1 1.35 +.14 16 R.5 C.5 15 -.11 M2x1P -.26 M2-.26 -.26 P19.35-.144 2 -.5 -.14 C.3 25 21 A 71 -.9 44 -.25 25 A' WIPER BOTH ENS R.2 MAX 2 19 -.5 -.14 -.21 M2x1P -.26 M2-.26 -.26 P19.35-.144 C.5 23 3 3MAX 3 22-.35 - SECTION 4-6.6THRU BC 57 34MAX M6x1Px6P (OIL HOLE) - VIEW Ballscrew ata irection Right Hand Lead (mm) 2 Lead Angle 13.75 P.C.. (mm) 26 Steel Ball (mm) φ 4.763 Circuits 2.5x2 Axial Play (mm).5 MAX ynamic Load C (kgf) 13 1591 Static Load Co (kgf) 1619 3236 rag Torque (kgf-cm).4~2.5.25 MAX Spacer Ball 1 : 1 - Stroke HIWIN Code L1 L2 L3 Accuracy grade 6 R25-2B1-FSV- 75-913-.18 75 78 913 5 8 R25-2B1-FSV- 95-1113-.18 95 98 1113 5 1 R25-2B1-FSV- 115-1313-.18 115 118 1313 5 12 R25-2B1-FSV- 135-1513-.18 135 138 1513 5 14 R25-2B1-FSV- 155-1713-.18 155 158 1713 5 16 R25-2B1-FSV- 175-1913-.18 175 178 1913 5 2 R25-2B1-FSV- 215-2313-.18 215 218 2313 5

S99LE16-59 29 FSV TYPE ( Shaft O 25, Lead 25 ) Standard 27 16 (8) 53.1 C.18 AA' C.4 C R.2 MAX (3) 2 1 L3 L2 L1 (HRC 58~62) 15 75 15 12.11B B.15B C.3 C' 53.4C'.13 AA' 15.35 +.1 1.35 +.14 16 C.5 R.5 15 -.11 M2x1P -.26 M2-.26 -.26 P19.35-.144 2 -.5 -.14 C.3 25 21 A 71 44 -.9 -.25 25 A' R.2 MAX WIPER BOTH ENS 19 -.21 -.5 2-.14 M2x1P -.26 M2-.26 -.26 P19.35-.144 C.5 23 3 3MAX 3 22 -.35 - SECTION 4-6.6THRU BC 57 34MAX M6x1Px6P (OIL HOLE) - VIEW Ballscrew ata irection Right Hand Lead (mm) 25 Lead Angle 17.1 P.C.. (mm) 26 Steel Ball (mm) φ 4.763 Circuits 1.5x2 Axial Play (mm).5 MAX ynamic Load C (kgf) 642 118 Static Load Co (kgf) 964 1926 rag Torque (kgf-cm).4~2.5.24 MAX Spacer Ball 1 : 1 - Stroke HIWIN Code L1 L2 L3 Accuracy grade 6 R25-25A1-FSV- 75-913-.18 75 78 913 5 8 R25-25A1-FSV- 95-1113-.18 95 98 1113 5 1 R25-25A1-FSV-115-1313-.18 115 118 1313 5 12 R25-25A1-FSV-135-1513-.18 135 138 1513 5 14 R25-25A1-FSV-155-1713-.18 155 158 1713 5 16 R25-25A1-FSV-175-1913-.18 175 178 1913 5 2 R25-25A1-FSV-215-2313-.18 215 218 2313 5

3 S99LE16-59 FW TYPE ( Shaft O 36, Lead 1 ) Standard 1 +.13 +.4 12 61.7 C L3 (165) L2 14 (2) L1.4 C 193 1.5 18.12 B.14 AA'.15 B 26 3MAX C B INCOMPLETE X THREA 2 X.4 C'.14 AA' C' 14 26 12 1 +.13 +.4 25-.13 3-.9 25-.9 M3x1.5P -.32 M3-.268 P29.26 -.32 -.182 A 12 -.1 75 -.29 -.1 75 -.3 36 A' WIPER BOTH ENS M25x1.5P -.32 M25 -.268 -.32 P24.26-.182 1.1 8.1 2.4 +.1.2 +.5 15 F.4x.2IN59 X ETAIL 6-11THRU, 17.5x11P BC 98 1/8PTx1P (OIL HOLE) 45 45 45 - VIEW Ballscrew ata irection Right Hand Lead (mm) 1 Lead Angle 4.86 P.C.. (mm) 37.4 Steel Ball (mm) φ 6.35 Circuits 2.5x2 Axial Play (mm) ynamic Load C (kgf) 515 Static Load Co (kgf) 12668 rag Torque (kgf-cm) 6.64~12.34 Spacer Ball - Stroke HIWIN Code L1 L2 L3 Accuracy grade 25 R36-1B2-FW-48-685-.18 48 5 685 5 45 R36-1B2-FW-68-885-.18 68 7 885 5 75 R36-1B2-FW-98-1269-.18 98 1 1269 5 115 R36-1B2-FW-138-1669-.18 138 14 1669 5 155 R36-1B2-FW-178-269-.18 178 18 269 5

S99LE16-59 31 FW TYPE ( Shaft O 4, Lead 1 ) Standard 1 +.13 +.4 12 61.7 C (165) 14 (2).4 C.14 AA' 26 C 3MAX INCOMPLETE THREA X B 18 L3 L2 L1 193 1.5.13 B.2 B 2 X 14.4 C'.13 AA' C' 26 12 1 +.13 +.4 25-.13 M3x1.5P -.32 M3-.268 -.32 P29.26-.182 3-.9 A 124 82 -.12 -.1 82-.34 -.3 4 A' WIPER BOTH ENS 3 -.9 M3x1.5P -.32 M3-.268 P29.26 -.32 -.182 1.1 +.1.1 2.4.2 8 +.5 15 6-11THRU, 17.5x11P 4 BC 12 1/8PTx1P (OIL HOLE) F.4x.2IN59 X ETAIL 45 - VIEW 45 Ballscrew ata irection Right Hand Lead (mm) 1 Lead Angle 4.4 P.C.. (mm) 41.4 Steel Ball (mm) φ 6.35 Circuits 2.5x2 Axial Play (mm) ynamic Load C (kgf) 5369 Static Load Co (kgf) 14138 rag Torque (kgf-cm) 8.26~13.78 Spacer Ball - Stroke HIWIN Code L1 L2 L3 Accuracy grade 25 R4-1B2-FW-48-687-.18 48 5 687 5 35 R4-1B2-FW-58-787-.18 58 6 787 5 45 R4-1B2-FW-68-887-.18 68 7 887 5 55 R4-1B2-FW-78-169-.18 78 8 169 5 75 R4-1B2-FW-98-1269-.18 98 1 1269 5 95 R4-1B2-FW-118-1469-.18 118 12 1469 5 115 R4-1B2-FW-138-1669-.18 138 14 1669 5 135 R4-1B2-FW-158-1869-.18 158 16 1869 5 155 R4-1B2-FW-178-269-.18 178 18 269 5 215 R4-1B2-FW-238-2669-.18 238 24 2669 5

32 S99LE16-59 OFSW TYPE ( Shaft O 32, Lead 1 ) Standard +.13 8+.4 51.7 C 1 L3 (14) L2 89 (2) L1 15 1 15.5 C 15.13 B.2 AA'.19 B 26 3MAX C B INCOMPLETE X THREA X 89.5 C'.17 AA' 26 C' 1 +.13 8 -.4 2-.13 M25x1.5P -.32 M25-.268 -.32 P24.26-.182 25-.9 A 18 -.1 74 -.29 WIPER BOTH ENS 25 32 -.9 A' M25x1.5P -.32 M25-.268 P24.26 -.32 -.182 8.1 2.4 +.5 6-9THRU, 14x8.5P BC 9 M6x1Px8P (OIL HOLE) 41 1.1 15.2 +.1 F.4x.2IN59 X ETAIL 45 - VIEW 45 Ballscrew ata irection Right Hand Lead (mm) 1 Lead Angle 5.44 P.C.. (mm) 33.4 Steel Ball (mm) φ 6.35 Circuits 2.5x1 Axial Play (mm) ynamic Load C (kgf) 265 Static Load Co (kgf) 5599 rag Torque (kgf-cm) 3.58~7.44 Spacer Ball - Stroke HIWIN Code L1 L2 L3 Accuracy grade 25 R32-1B1-OFSW-38-56-.18 38 4 56 5 35 R32-1B1-OFSW-48-66-.18 48 5 66 5 45 R32-1B1-OFSW-58-76-.18 58 6 76 5 55 R32-1B1-OFSW-68-929-.18 68 7 929 5 65 R32-1B1-OFSW-78-129-.18 78 8 129 5 85 R32-1B1-OFSW-98-1229-.18 98 1 1229 5 15 R32-1B1-OFSW-118-1429-.18 118 12 1429 5 135 R32-1B1-OFSW-148-1729-.18 148 15 1729 5 165 R32-1B1-OFSW-178-229-.18 178 18 229 5

S99LE16-59 33 OFSW TYPE ( Shaft O 4, Lead 12 ) Standard L3 (151) L2 89 62 89 (2) L1 117 2.5 C 18.5 C'.15 B.9 C.2 AA'.18 AA'.22 B 26 3MAX 26 +.13 +.13 1+.4 12 C INCOMPLETE B C' 12 1+.4 THREA X X 25-.13 M3x1.5P -.32 M3-.268 -.32 P29.26-.182 3-.9 A 128 4 A' -.12 86-.34 WIPER BOTH ENS 3-.9 M3x1.5P -.32 M3 -.268 P29.26 -.32 -.182 6-11THRU, BC 16 17.5x11P 48 8 2.1 +.5 1/8PTx1P (OIL HOLE).4 1.1 15.2 +.1 F.4x.2IN59 X ETAIL 45 - VIEW 45 Ballscrew ata irection Right Hand Lead (mm) 12 Lead Angle 5.25 P.C.. (mm) 41.6 Steel Ball (mm) φ 7.144 Circuits 2.5x1 Axial Play (mm) ynamic Load C (kgf) 3425 Static Load Co (kgf) 7837 rag Torque (kgf-cm) 5.93~11.1 Spacer Ball - Stroke HIWIN Code L1 L2 L3 Accuracy grade 5 R4-12B1-OFSW-68-939-.18 68 7 939 5 8 R4-12B1-OFSW-98-1239-.18 98 1 1239 5 12 R4-12B1-OFSW-138-1639-.18 138 14 1639 5 16 R4-12B1-OFSW-178-239-.18 178 18 239 5 23 R4-12B1-OFSW-248-2739-.18 248 25 2739 5

34 S99LE16-59 3.5 imensions for HIWIN Ultra High Lead Ballscrew FSH TYPE ( Shaft O 16, Lead 32 ) Ultra High Lead.9 C' C.5 15 C.5 (45) 3 1.4 C'.14 AA' 5 1 C.2 C' (12) C.5 L3 L2 L1 HRC 58~62 34 1 13.5 OIL HOLE 5.11 B B C.5 22.4 C.14 AA' 9.15 1.15 C +.1 +.14 1 -.9 M12x1P M12 -.26 -.26 P11.35 -.26 -.144 12 -.3 -.11 R.2 MAX 15 13 A 55 34 -.9 -.25 16 A' 9.6-.9 1 -.4 -.12 R.2 MAX M5x.8Px12P 4-5.5THRU BC 45 M6x1P 12 + -.2 5 - SECTION 3 3 36 - VIEW Ballscrew ata irection Right Hand Lead (mm) 32 Lead Angle 31.53 P.C.. (mm) 16.6 Steel Ball (mm) φ 3.175 Circuits.7x2 Axial Play (mm) 432 ynamic Load C (kgf) 755 Static Load Co (kgf).5 MAX rag Torque (kgf-cm).15~1..24 MAX Spacer Ball 1 : 1 - Stroke HIWIN Code L1 L2 L3 Accuracy grade 3 2R16-32V2-FSH-382-471-.18 382 44 471 5 5 2R16-32V2-FSH-582-671-.18 582 64 671 5 8 2R16-32V2-FSH-882-971-.18 882 94 971 5 12 2R16-32V2-FSH-1282-1371-.18 1282 134 1371 5

S99LE16-59 35 FSH TYPE ( Shaft O 2, Lead 4 ) Ultra High Lead.9 C C.5 2 C.5 (6) 4 (15).4 C'.14 AA' 15 C 5 R.2 MAX 14 C.5 L3 L2 L1 HRC 58~62 41 1 2 5.11 B OILHOLE B C.5 C' 25.4 C.14 AA' 1.15 1.15 +.1 +.14 -.4 12-.11 15-.12 M15x1P -.26 M15 -.26 -.26 P14.35 -.144 C.3 19.5 17 A -.1 38-.3 58 -.9 38-.25 2 A' R.2 MAX 14.3 15 -.11 -.4 -.12 M6x1Px15P M6x1Px8P 4-5.5THRU BC 48 17-.25 - SECTION 3 4 3 - VIEW Ballscrew ata irection Right Hand Lead (mm) 4 Lead Angle 31.47 P.C.. (mm) 8.8 Steel Ball (mm) φ3.175 Circuits.7x2 ynamic Load C (kgf) 5 Static Load Co (kgf) 987 Axial Play (mm).5 MAX rag Torque (kgf-cm).2~1.2.3 MAX Spacer Ball - - Stroke HIWIN Code L1 L2 L3 Accuracy grade 4 2R2-4V2-FSH-56-62-.18 56 535 62 5 6 2R2-4V2-FSH-76-82-.18 76 735 82 5 8 2R2-4V2-FSH-96-12-.18 96 935 12 5 1 2R2-4V2-FSH-116-122-.18 116 1135 122 5 12 2R2-4V2-FSH-136-142-.18 136 1335 142 5 16 2R2-4V2-FSH-176-182-.18 176 1735 182 5

36 S99LE16-59 4. HIWIN Rolled Ballscrew HIWIN rolled ballscrews manufactured by a feature a rolled screw spindle instead of one that is ground. Rolled ballscrews not only have the benefit of low friction and smooth running for a linear feeding system compared to traditional screws, but also feature quick lead times and lower production costs. HIWIN uses the most advanced technology in the ballscrew rolling process by carefully controlling the manufacturing procedure, material selection, rolling process, heat treating, machining and assembly. HIWIN rolled ballscrews can be classified into two grades. They are: Precision rolled grade (PR) High precision rolled grade (HR) In general, both grades use the same preload method as precision ground ballscrews, except that there are some differences in the lead error definition and geometry tolerances. Each type of rolled ballscrew can be ordered according to the nut dimension of precision ground ballscrews. The dimensions of general type rolled ballscrews are listed in Chapter 4-4. The geometric tolerances are shown in Table 4.4 and Table 4.6. If the ends of the spindles are unmachined, the geometric tolerance is not applied. The production scale of each type of ballscrew and the accuracy classification are described as below (the unit of length used is in mm). 4.1 Precision Rolled Ballscrews Table 4.1 gives the lead accuracy of the precision rolled ballscrews. The lead accuracy is measured by accumulated lead error of each 3 mm section. The maximum axial play of the precision rolled ballscrew is shown in Table 4.2. These ballscrews can have the same preload as precision ground ones. The category of the precision rolled ballscrews is listed in Table 4.3, Fig. 4.1, and Table 4.4 which shows the geometric tolerance of the general rolled ballscrews. HIWIN has a variety of precision rolled ballscrews for customers urgent requirements. Table 4.1 : Accuracy grade of HIWIN precision rolled ballscrew. Cumulative lead PR1 PR2 PR3 PR4 error / 3 mm ±.23 ±.5 ±.1 ±.21 Table 4.2 : Maximum axial play of HIWIN precision rolled ballscrew. Ball diameter (mm) 2 2.381 3.175 3.969 4.763 6.35 7.144 7.938 9.525 Axial play.6.7.1.12.15.16.17.18

S99LE16-59 37 PRT4 C Lt PRT4 C' PRT2 AA' PRT1 AA' PRT2 AA' PRT3 C C C' 2do 2do bearing seat A A' bearing seat L2 L1 f do L1 L2 Fig. 4.1 eometric tolerance of HIWIN precision rolled ballscrew Table 4.3 : Category of HIWIN precision rolled ballscrew. Nominal diameter do ( mm ) Lead 2 2.5 3 4 5 5.8 6 8 1 12 16 2 25 32 4 5 Max.screw length 8 8 1 1 12 12 14 14 15 15 16 16 2 2 25 25 28 25 32 32 36 36 4 4 45 46 5 5 55 55 63 575 : Right and left hand ballscrews : Right hand ballscrews only Table : 4.4 eometric tolerance range of HIWIN precision rolled ballscrew Unit : µm Nominal diameter do ( mm ) PRT1 PRT2 PRT3 Lt / do L1 L2 2 4 6 8 1 < 5 < 125 < 2 < 5 < 125 < 2 12/14 6 8 12 2 32 4-12 - - 6 16 6 8 12 2 32 4 - - 12 - - 6 2 6 8 12 2 32 4 5-16 - 6 25/28 6 8 12 2 32 4 5-16 - 6 32/36 6 8 12 2 32 4 5-16 - 6 4/45 6 8 12 2 32 4 5-16 - 6 5 6 8 12 2 32 4 5 63 2 6 63 6 8 12 2 32 4 5 63 2 8 * Note : The geometric tolerance of grade PR4 is not included. PRT4

38 S99LE16-59 4.2 High Precision Rolled Ballscrews The lead accuracy of the high precision rolled ballscrew is shown in table 4.5. Fig. 4.2 and Table 4.6 show the geometrics tolerance of preloaded high precision rolled ballscrews. Since outside spindles of these ballscrews are made to meet accuracy tolerances, the geometric tolerance can be maintained at the highest precision level. The preload method of this type is the same as that of precision ground type. Therefore it is comparable to the relative grade precision ground ballscrew with a lower cost and shorter lead time. Table 4.7 gives the standard axial backlash of non-preloaded high precision rolled ballscrews. Table 4.8 shows the high precision rolled ballscrew. Since the rolled ballscrews have different heat treatment processes, it is harder to machine by regular machine methods. HIWIN will machine the journal ends to your specifications. Table 4.5 Lead accuracy of HIWIN high precision rolled ballscrew Unit : µm Accuracy rade Item Thread length (mm) ±E e above below HR1-315 23 23 315 4 25 25 4 5 27 26 5 63 3 29 63 8 35 31 8 1 4 35 1 125 46 39 125 16 54 44 16 2 65 51 2 25 77 59 25 28 93 69 HRT2 HRT4 C AA' 2do Lt HRT1 AA' 2do HRT4 C' HRT2 AA' HRT3 C C B C' 2do 2do bearing seat A A' bearing seat L2 L1 f do L1 L2 Fig. 4.2 eometric tolerance of HIWIN high precision rolled ballscrew

S99LE16-59 39 Table 4.6 eometric tolerance range of HIWIN high precision rolled ballscrew Unit : µm Nominal diameter do ( mm ) HRT1 HRT2 HRT3 Lt/do L1 L2 2 4 < 5 < 125 < 2 < 5 < 125 < 2 PRT4 16 5 64 25 - - 1 - - 5 2 5 64 25 32-12 - 5 25 5 64 25 32-12 - 5 32 5 64 25 32-12 - 5 4 5 64 25 32-12 - 5 5 5 64 25 32 4-16 5 Table 4.7 Axial play of standard non-preloaded high precision rolled ballscrews Accuracy grade HR1 Max. axial play.2 Table 4.8 Category of the high precision rolled ballscrews Nominal diameter do ( mm ) Lead 5 1 Max.screw length 16 64 2 8 25 1 32 12 4 16 5 3 : Right and left hand ballscrews : Right hand ballscrews only

4 S99LE16-59 5. imensions for HIWIN Rolled Ballscrews page eneral Type page FSW RSV 138 139 Flange end, Single nut, Tube within the nut diameter Round, Single nut, Tube above the nut diameter RSB FSB 14 141 Round, Single nut, Bonded return tube FSV Flange end, Single nut, Bonded return tube SSV 142 143 Flange end, Single nut, Tube above the nut diameter Square, single nut, Tube above the nut diameter page High Lead Type page FSH 144 144 Large lead,flange mounted, Single nut, End cap *ifferent design required by the drawing approval, please contact with HIWIN engineers for the other type listed above. *ouble asterisks( ): Self-Lubricating Ballscrew E1 design is available, except the shaft diameter under 16mm or ball diameter under 2.381mm.

S99LE16-59 41 5.1 imensions for HIWIN Rolled Ballscrews FSW TYPE Standard L T S BC E Z X T<12 M6x1P T>12-1/8PT OIL HOLE Y 3 3 F g6 -.1 -.3 Model Size ynamic Nut Flange Static Ball Load Fit Nominal Circuits ia. 1x1 6 Load Bolt Lead revs Co ( kgf ) L F BC-E T ia. C ( kgf ) X Y Z S 8-2.5B1 8 2.5x1 218 317 34 26 47 35 8 5.5 9.5 5.5 8 2.5 2. 1-2.5B1 2.5x1 252 45 34 28 52 38 8 5.5 9.5 5.5 8 1 1-4B1 2.5x1 34 466 41 3 53 41 1 5.5 9.5 5.5 1 4 2.381 12-4B1 12 2.5x1 344 574 41 3 5 4 1 5.5 9.5 5.5 12 16-5B1 16 2.5x1 679 1226 43 4 64 51 1 5.5 9.5 5.5 12 2-5C1 2 5 3.175 3.5x1 11 2149 5 44 68 55 12 5.5 9.5 5.5 12 25-5B2 2.5x2 1534 3975 6 5 74 62 12 5.5 9.5 5.5 12 25 25-1B1 1 4.763 2.5x1 1459 2983 65 6 86 73 16 6.6 11 6.5 12 32-5B2 32-1B2 32 5 3.175 2.5x2 172 598 6 58 84 71 12 6.6 11 6.5 12 2.5x2 4379 1345 98 74 18 9 16 9 14 8.5 15 4-1B2 4 2.5x2 4812 12732 12 84 125 14 18 11 17.5 11 15 1 6.35 5-1C2 5 3.5x2 7146 22477 126 94 135 114 18 11 17.5 11 2 63-1C2 63 3.5x2 7869 2829 128 11 152 13 2 11 17.5 11 2

42 S99LE16-59 FSH TYPE High Lead 4- x THRU BC E M6x1P OIL HOLE M T L S M 3 3 g6 H F Model Size Nominal ia. Lead Ball ia. Circuits ynamic Load 1x1 6 revs C ( kgf ) Static Load Co ( kgf ) Nut Flange Bolt Fit L F T BC-E H X S M 16-16S2 1.8x2 71 138 16-16S4 1.8x4 129 276 16 16 16-16S2 1.8x2 71 138 16-16S4 3.175 1.8x4 129 276 32 48 53 1 42 38 4.5 26 33 48 58 1 45 38 6.6 26 2-2S2 1.8x2 8 174 39 48 62 1 5 46 5.5 27.5 2-2S2 2 2 1.8x2 8 174 2-2S4 1.8x4 145 348 25-25S2 1.8x2 121 28 25 25 3.969 25-25S4 1.8x4 219 56 32-32S2 1.8x2 172 428 32 32 4.763 32-32S4 1.8x4 311 853 4-4S2 1.8x2 281 717 4 4 6.35 4-4S4 1.8x4 51 1433 5-5S2 1.8x2 412 189 5 5 7.938 5-5S4 1.8x4 747 2178 38 58 62 1 5 46 5.5 32.5 3 47 67 74 12 6 56 6.6 39.5 3 58 85 92 15 74 68 9 48 72 12 114 17 93 84 11 6 9 125 135 2 112 14 14 83.5

S99LE16-59 43 6. imensions for HIWIN Stock Rolled Ballscrews FSI TYPE ( IN 6951 part 5 form B ) Stock 45 TYPE 1 22.5 3 TYPE 2 15 M6x1P(M8x1P) OIL HOLE L7 L1 L11 L2 3 5 4 g6 -.2 -.3 H1 H1 6 Model Size Nominal ia. 16-5T3 16 Lead Ball ia. Circuits ynamic Load 1x1 6 revs C ( kgf ) Static Load Co ( kgf ) 4 Flange Hole No. 5 6 H1 L1 L2 L7 L11 M-Oil Hole 3 664 1196 28 38 6 5.5 48 4 1 44 1 5 M6x1P 2-5T3 3 733 1495 36 47 6 6.6 58 44 1 44 1 5 M6x1P 2 2-5T4 5 3.175 4 939 1993 36 47 6 6.6 58 44 1 52 1 5 M6x1P 25-5T3 3 88 282 4 51 6 6.6 62 48 1 44 1 5 M6x1P 25-5T4 25 4 1127 2776 4 51 6 6.6 62 48 1 52 1 5 M6x1P 25-1T3 1 4.763 3 143 2914 4 51 6 6.6 62 48 16 74 1 5 M6x1P 32-5T3 3 18 2773 5 65 6 9 8 62 1 46 12 6 M6x1P 32-5T4 5 3.175 4 1291 3697 5 65 6 9 8 62 1 53 12 6 M6x1P 32-5T6 32 6 183 5545 5 65 6 9 8 62 1 66 12 6 M6x1P 32-1T3 3 2264 483 5 65 6 9 8 62 16 74 12 6 M6x1P 1 6.35 32-1T4 4 29 644 5 65 6 9 8 62 16 85 12 6 M6x1P 4-5T4 4 1414 4621 63 78 8 9 93 7 1 53 14 7 M8x1P 5 3.175 4-5T6 6 24 6932 63 78 8 9 93 7 1 66 14 7 M8x1P 4 4-1T3 3 2652 6367 63 78 8 9 93 7 16 74 14 7 M8x1P 1 6.35 4-1T4 4 3396 8489 63 78 8 9 93 7 16 87 14 7 M8x1P 5-5T4 4 1562 594 75 93 8 11 11 85 1 57 16 8 M8x1P 5 3.175 5-5T6 6 2214 891 75 93 8 11 11 85 1 7 16 8 M8x1P 5-1T3 5 3 345 8334 75 93 8 11 11 85 16 78 16 8 M8x1P 5-1T4 1 6.35 4 3899 11112 75 93 8 11 11 85 16 89 16 8 M8x1P 5-1T6 6 5526 16668 75 93 8 11 11 85 16 112 16 8 M8x1P

44 S99LE16-59 7. Ballscrew Retrofit Kits for Manual Milling Machines 7.1 Precision round Ballscrew Set 1. Precision ground, lead accuracy within ±.5 /ft. 2. Stock size meet various CNC systems requirements. 3. High strength and long service life. X-AXIS R.H. 2-.42 RILL THRU. BC 2.3 1.12 max 2.52 45 3 1.48 max 2.677.5.156 RILL THRU. 4.93 4. 3.2 1.1.13.16 C.63 AA'.31 C.75.75xW.122.125.24.25 1/2" - 2 UNF C.6245.6242 1.3.7871.7868 1.15 A B.4.2 2.87 A B 2.28±.59.47.87 B.63 B 1.687 1.686 1.685 1.681 A' 1.26 1.25 4.5.13.67 1.15 1.3 C' 4.5 3.2.16 C'.63 AA'.31 C'.75xW.122.75.125.5.6245.6242.24.25.7871.7868 1/2" - 2 UNF 3 Y - AXIS L.H. 2-.42 RILL THRU. BC 2.3 1.12 max 2.38.5.75 4.93 1.6 3.2 1.1.13.16 C.63 AA'.31 C.75xW.122.125 C C B 2.28±.59.47.87 B.63 B.4.2 1.48 max.156 RILL THRU..24.25 1/2" - 2 UNF.6245.6242 1.3.7871.7868 A 1.15 1.685 1.687 1.681 1.686 2.87 A' 1.26 1.25

S99LE16-59 45 Precision ground ballscrew set X AXIS (B325X) 4in HOUSIN (B325H) Y AXIS (B325Y) Traverse Screw (X Axis) in Traverse Screw A B Part Number 32 42 24.7 B325X-32 36 46 28.7 B325X-36 42 52 34.7 B325X-42 48 58 4.7 B325X-48 Crossfeed Screw (Y Axis) in. Table Size C Pare Number 9 2.3 13.77 B325Y-9 12 23.3 16.77 B325Y-12 16 27.3 2.77 B325Y-16 P.C.ia. 1.28" Ball ia..125" Lead Angle 2.84 Circuits 2.5x2 Lead 5TPI Static Load 12491 lbf ynamic Load(1x1 6 revs) 4158 lbf Lead Accuracy.3"/2π;.5"/ft rag Torque(Preload) 3.5in-lb (28lbs)

46 S99LE16-59 8. Multi-Solutions 8.1 E1 Self - lubricant cartridge Specification number : Example: R4-1B2 - FSWE1-8 - 1 -.8 HIWIN E1 code China Patent No. 364546 ermany Patent No. 2992112. Japan Patent No. 366118 Taiwan Patent No.231 U.S.A. Patent No. 6247556 E1 : Economy first & Ecology first Specification : Nut type: FSV, FV, FSW, FW, PFW, OFSW, FSV, FSH Please contact HIWIN engineers with other specifications you may need. In order to achieve lubrication efficiency; please notify HIWIN engineers of the ballscrew installation direction. 8.2 R1 Rotating Nut China Patent No. 422327 ermany Patent No. 118647.4 Taiwan Patent No.166845 U.S.A. Patent No. 646188B1 Application: Semi-conductor industries, Robots, Wood working machines, Laser cutting machines, Transporting equipment. Specification: Example: 2R4-4S2-FSHR1-8-1-.18 HIWIN R1 code C H L ±1.5 T t 4-M BC e A 3 3 m 6- xthru BC E dh7 Bh7 F g6 Model Bearing ynamic Load(kgf) Nut Flange Bolt Bush Static Load(kgf) L C F T t BC-E BC-e θ M X d B H A Oil hole 16-16S2 1299 1826 52 25 44 11.4 68 13 6 6 26 2 M4x.7P 4.5 33 4 11 2 M4x.7P 2-2S2 1762 2531 62 3 5 12 78 13 6 7 31 2 M5x.8P 4.5 39 5 11 2 M4x.7P 25-25S2 1946 336 72 37 63 16.5 92 13 6 81 38 2 M6x1P 5.5 47 58 15.5 3 M4x.7P 32-32S2 315 535 8 47 8 21 15 2 9 91 48 25 M6x1P 6.6 58 66 2 3 M6x.75P 4-4S2 48 8148 11 62 98 22.5 14 2 9 123 61 25 M8x1.25P 9 73 9 21.5 3 M6x.75P

S99LE16-59 47 8.3 High Load rive Application: High-load ball screw can be used for application on injection molding machines, die casting machines, general presses, power cylinders, robots, etc. Features: 1. Heavy Load A. 2~3 times greater load capacity than general standard series. B. High axial load and acceleration. C. Special lubrication design for short stroke. 2. Accuracy JIS C5 and JIS C7 3. High Speed Operation and Long Life Enforced ball circulation systems for high speed operation and to achieve longer service life. 4. Option HIWIN Self-lubricant E1 Series. L 5- xthru H max T M 1/8PTx1P OIL HOLE BC E W max 3 3 F Model No. Shaft diameter Lead Turns Circuits ynamic C N (kgf) Static Co N (kgf) L F T E X H W M 5-16B2 2.5x2 235 (24) 497 (57) 95 165 127 28 11 9 68 69 11 5 5-16B3 2.5x3 334 (341) 746 (761) 95 213 127 28 11 9 68 69 117 55-16B2 2.5x2 255 (26) 535 (546) 1 165 132 28 115 9 71 74 11 55 55-16B3 2.5x3 361 (368) 84 (82) 1 213 132 28 115 9 71 74 117 16 63-16B2 2.5x2 28 (286) 613 (625) 15 165 137 28 12 9 73 82 11 63 63-16B3 2.5x3 398 (46) 918 (937) 15 213 137 28 12 9 73 82 117 8-16B2 2.5x2 322 (329) 765 (781) 12 17 158 32 139 11 81 98 16 8-16B3 8 2.5x3 458 (467) 115 (117) 12 218 158 32 139 11 81 98 122 8-25B3 25 2.5x3 65 (663) 21 (25) 145 338 185 4 165 11 12 1 14 1-16B3 16 2.5x3 493 (53) 143 (146) 14 218 178 32 159 11 91 117 122 1-25B3 1 2.5x3 738 (753) 2596 (2649) 159 338 199 4 179 11 19 118 14 25 1-25B4 2.5x4 945 (964) 3461 (3532) 159 413 199 4 179 11 19 118 165

48 S99LE16-59 8.4 Cool Type esign Principle: The Cool Type series feature using forced cooling fluid to pass through the nut, minimizes heat generation and thermal expansion during ballscrew operation. Cool Type I as shown in Figure 8.1: Cooling fluids are circulated in passages that inside the nut, and remove heat as shown in Figure 8.2 In cooperation with the hollow shaft design, it offers high thermal control and maintains high accuracy. This combination is the most suitable for high-speed machine tools. Cool Type II as shown in Figure 8.3: Flowing fluids are circulated through a space, Inside the nut, and remove heat as shown in Figure 8.4. It is the most suitable for electric-driven injection molding machines, presses, and power units. The Cool type II, compared with the standard specifications, will make a minor external dimension change to the nut. Please contact HIWIN for exact dimensions. PT 1/8 fitting ermany Patent No. 1119226 ermany Patent No. 2119457. Taiwan Patent No. 193878 Fig. 8.1 Cool Type I Fig. 8.3 Cool Type II Passages Space Cooler Fig. 8.2 Cool Type I with cooler Cooler Fig. 8.4 Cool Type II with cooler

S99LE16-59 49 Features: 1. Optimized design for high reliability Using computer simulation and FEM analysis, the Cool Type ballscrew features excellent thermal protection and high reliability. 2. Higher speed rotation and extra high m-n value (up to 2,) Cool Type ballscrews will reduce high-speed rotation aftereffect, problems. 3. Prevent thermal distortion Optimized heat transfer design minimizes heat generation and prevents thermal distortion. 4. Strengthen durability uring extended operation, ball-to-ball friction generates heat that in turn reduces service life. Cool Type ballscrews minimize heat buildup and therefore are more durable. 5. Extended lubricant life cycle A reduction in heat generation also prevents lubrication breakdown - which, in turn, extends the lubricant life. 6. Keep temperature uniform and reduce warm-up time Warm-up time is reduced because the cooling system keeps the nut and shaft at a constant temperature. 7. Higher feeding accuracy The cooling effect of the Cool Type ballscrew protects against thermal expansion that would normally effect feeding accuracy. FEM analysis for Cool Type ballscrew Application: Cool Type 1 and a hollow shaft design: High speed machine tools and machining centers. Cool Type 2 : Electric-driven injection molding machines, presses, power units and other replaceable hydraulic drives. Specification: 1. We recommend shaft diameter above ø32mm for the Cool Type 2. Nut type: FSV, FSW, PFW, OFSW, FSV, FSH, FSI, etc. 3. Please contact HIWIN with other specifications you may need. 4. The Cool Type II, compared with the standard specifications, will have a minor external dimension change to the nut, please contact HIWIN for exact dimensions.. Specification number: Example: R5-3C1 - OFSWC1-118 - 1539 -.8 C1: HIWIN Cool Type ballscrew for type I Example: R63-16B3 - RSWC2-4 - 6-.5 C2: HIWIN Cool Type ballscrew for type II

5 S99LE16-59 8.5 Super S Pattern Nomenclature: Ex: R4-1K4 -FSC -12-16 -.8 4 turns Cassette type Single nut Nut with flange Performance: Specification: 2R4-4K4 - FSC - 12-16 -.8 Lead: 4 mm Acceleration: 1g (9.8m/sec2) m-n Value: 12, Application: CNC Machinery, Industrial Machinery, Electronic Machinery, Precision Machines and other High Speed Machinery. Features: 1.Low noise (5~7dB lower than traditional series) The patented design of the return unit will reduce noises caused by the impact of the ballnut s balls, greatly reducing the noise intensity. 2.Space-saving and lightweight design The ballnut diamenter is 18%~32% smaller than traditional series. 3.m-N value up to 18, The patented design of the return unit improves the strength of the return structure, achieving a m-n value of up to 18,. 4.High acceleration and deceleration velocity The pathway of the specialized return unit, as well as the ballnut s strengthened design diminish the impact experienced by the balls, Therefore, it can sustain peak performance in more rigorous operating environments, such as high acceleration and deceleration. 5.Accuracy grade Precision ground ballscrews available in JIS rade C~C7; Rolled ballscrews available in JIS rade C6~C1. db Noise Level db (A) 65 6 55 5 45 4 35 3 Traditional Series 25 Super S Series 2 2 4 6 8 1 12 14 16 18 2 9 85 8 75 7 65 6 55 khz Analy of noise frequency 5 5 1 15 2 25 3 35 Speed (rpm) Traditional Series Super S Series

S99LE16-59 51 FSC TYPE TYPE 1 22.5 TYPE 2 3 M HOLE L7 L1 L11 L2 Form A (6) Form B L1 6 4 5 d1 L8 Form C 45 45 3 15 15 3 F g6 -.5 -.3 WIPER BOTH ENS L9 Model Size ynamic Nut Flange Bolt Static Ball Load Nominal Circuits Load Lead ia. 1x1 6 revs ia. Co(kgf) L1 L2 TYPE Form A Form B Form C L7 4 5 M L1 L11 C(kgf) (6) (L8) (L9) 2-1K3 1 K3 1134 266 36 16 48 1 58 44 51 12 47 6.6 M6x1P 8 6 2 2-2K2 2 3.175 K2 766 1736 36 25 57 1 58 44 51 12 47 6.6 M6x1P 8 6 25-25K2 25 25 K2 845 2174 4 3 7 1 62 48 55 12 51 6.6 M6x1P 8 6 32-1K5 1 K5 5641 14488 57 2 77 1 87 69 78 13 72 9 M6x1P 8 6 32-12K5 12 K5 563 1446 57 25 87 1 87 69 78 13 72 9 M6x1P 8 6 32-16K4 16 6.35 K4 4573 1139 57 2 9 1 87 69 78 13 72 9 M6x1P 8 6 32-2K3 K3 3488 834 57 25 87 1 87 69 78 13 72 9 M6x1P 8 6 32 32-2K4 K4 4535 11318 57 25 17 1 87 69 78 13 72 9 M6x1P 8 6 2 32-2K3 K3 194 5438 5 25 88 1 8 62 71 13 65 9 M6x1P 8 6 32-2K4 3.969 K4 2476 738 5 25 18 1 8 62 71 13 65 9 M6x1P 8 6 32-32K2 32 K2 1288 3532 5 4 88 1 8 62 71 13 65 9 M6x1P 8 6 36-1K4 K4 4917 1322 61 16 7 2 91 68 79.5 15 76 9 M8x1P 1 7 1 36-1K5 K5 611 16449 61 2 8 2 91 68 79.5 15 76 9 M8x1P 1 7 36-12K4 36 6.35 K4 497 132 61 2 75 2 91 68 79.5 15 76 9 M8x1P 1 7 12 36-12K5 K5 5998 16423 61 25 87 2 91 68 79.5 15 76 9 M8x1P 1 7 36-36K2 36 K2 2541 6548 61 4 95 2 91 68 79.5 15 76 9 M8x1P 1 7 4-6K6 6 3.969 K6 3852 1332 63 1 58 2 93 7 81.5 15 78 9 M8x1P 1 7 4-1K4 K4 556 13798 63 16 7 2 93 7 81.5 15 78 9 M8x1P 1 7 4-1K5 1 K5 6181 17429 63 2 8 2 93 7 81.5 15 78 9 M8x1P 1 7 4-1K6 K6 7273 216 63 2 9 2 93 7 81.5 15 78 9 M8x1P 1 7 4-12K4 K4 546 13778 63 2 75 2 93 7 81.5 15 78 9 M8x1P 1 7 4-12K5 12 K5 6169 1744 63 25 87 2 93 7 81.5 15 78 9 M8x1P 1 7 38 4-12K6 6.35 K6 726 213 63 25 99 2 93 7 81.5 15 78 9 M8x1P 1 7 4-16K4 K4 523 13729 63 2 9 2 93 7 81.5 15 78 9 M8x1P 1 7 16 4-16K5 K5 6141 17341 63 25 16 2 93 7 81.5 15 78 9 M8x1P 1 7 4-2K4 K4 4993 13666 63 25 18 2 93 7 81.5 15 78 9 M8x1P 1 7 2 4-2K5 K5 614 17262 63 25 128 2 93 7 81.5 15 78 9 M8x1P 1 7 4-4K2 4 K2 259 6568 63 45 12 2 93 7 81.5 15 78 9 M8x1P 1 7 45-6K6 6 3.969 K6 4173 1684 68 1 58 2 98 75 86.5 15 83 9 M8x1P 1 7 45-16K4 K4 5548 16818 7 2 93 2 15 8 92.5 18 88 11 M8x1P 1 9 16 45-16K5 45 K5 6783 21244 7 25 19 2 15 8 92.5 18 88 11 M8x1P 1 9 45-2K4 K4 5524 16762 7 25 18 2 15 8 92.5 18 88 11 M8x1P 1 9 2 45-2K5 K5 6753 21173 7 25 128 2 15 8 92.5 18 88 11 M8x1P 1 9 5-1K4 K4 5769 1845 75 16 7 2 11 85 97.5 18 93 11 M8x1P 1 9 1 5-1K6 K6 8299 28161 75 2 9 2 11 85 97.5 18 93 11 M8x1P 1 9 5-12K4 K4 5763 18435 75 25 81 2 11 85 97.5 18 93 11 M8x1P 1 9 12 5-12K6 K6 829 28138 75 25 15 2 11 85 97.5 18 93 11 M8x1P 1 9 6.35 5-16K4 K4 5747 18396 75 2 96 2 11 85 97.5 18 93 11 M8x1P 1 9 16 5-16K6 K6 8267 2878 75 25 128 2 11 85 97.5 18 93 11 M8x1P 1 9 5 5-2K4 K4 5727 18346 75 25 112 2 11 85 97.5 18 93 11 M8x1P 1 9 2 5-2K6 K6 8238 281 75 25 152 2 11 85 97.5 18 93 11 M8x1P 1 9 5-25K4 K4 5695 18268 75 3 129 2 11 85 97.5 18 93 11 M8x1P 1 9 25 5-25K6 K6 8193 27883 75 3 179 2 11 85 97.5 18 93 11 M8x1P 1 9 5-4K2 K2 34 884 75 45 19 2 11 85 97.5 18 93 11 M8x1P 1 9 4 5-4K3 K3 4392 1375 75 45 149 2 11 85 97.5 18 93 11 M8x1P 1 9 55-6K6 55 6 3.969 K6 4527 19779 12 1 6 2 144 12 128 18 122 11 M8x1P 1 9

52 S99LE16-59 FC TYPE TYPE 1 TYPE 2 Form A 22.5 3 M HOLE L1 L7 L1 L11 L2 (6) Form B 6 4 5 d1 L8 Form C 45 45 3 15 15 3 F g6 -.5 -.3 -.5 -.3 WIPER BOTH ENS L9 Model Size ynamic Nut Flange Bolt Static Ball Load Nominal Circuits ia. 1x1 4 Load Lead revs ia. Co(kgf) L1 L2 TYPE Form A Form B Form C L7 4 5 M L1 L11 C(kgf) (6) (L8) (L9) 2-1K3 1 K3 1134 266 36 16 99 1 58 44 51 12 47 6.6 M6x1P 8 6 2 2-2K2 2 3.175 K2 766 1736 36 25 117 1 58 44 51 12 47 6.6 M6x1P 8 6 25-25K2 25 25 K2 845 2174 4 3 143 1 62 48 55 12 51 6.6 M6x1P 8 6 32-1K5 1 K5 5641 14488 57 2 158 1 87 69 78 13 72 9 M6x1P 8 6 32-12K5 12 K5 5626 14459 57 25 178 1 87 69 78 13 72 9 M6x1P 8 6 32-16K4 16 6.35 K4 4573 1139 57 2 184 1 87 69 78 13 72 9 M6x1P 8 6 32-2K3 K3 3488 834 57 25 178 1 87 69 78 13 72 9 M6x1P 8 6 32 32-2K4 K4 4535 11318 57 25 218 1 87 69 78 13 72 9 M6x1P 8 6 2 32-2K3 K3 194 5438 5 25 18 1 8 62 71 13 65 9 M6x1P 8 6 32-2K4 3.969 K4 2476 738 5 25 22 1 8 62 71 13 65 9 M6x1P 8 6 32-32K2 32 K2 1288 3532 5 4 18 1 8 62 71 13 65 9 M6x1P 8 6 36-1K4 K4 4917 1322 61 16 144 2 91 68 79.5 15 76 9 M8x1P 1 7 1 36-1K5 K5 611 16449 61 2 164 2 91 68 79.5 15 76 9 M8x1P 1 7 36-12K4 36 6.35 K4 497 132 61 2 154 2 91 68 79.5 15 76 9 M8x1P 1 7 12 36-12K5 K5 5998 16423 61 25 178 2 91 68 79.5 15 76 9 M8x1P 1 7 36-36K2 36 K2 2541 6548 61 4 194 2 91 68 79.5 15 76 9 M8x1P 1 7 4-6K6 6 3.969 K6 3852 1332 63 1 12 2 93 7 81.5 15 78 9 M8x1P 1 7 4-1K4 K4 556 13798 63 16 144 2 93 7 81.5 15 78 9 M8x1P 1 7 4-1K5 1 K5 6181 17429 63 2 164 2 93 7 81.5 15 78 9 M8x1P 1 7 4-1K6 K6 7273 216 63 2 184 2 93 7 81.5 15 78 9 M8x1P 1 7 4-12K4 K4 546 13778 63 2 154 2 93 7 81.5 15 78 9 M8x1P 1 7 4-12K5 12 K5 6169 1744 63 25 178 2 93 7 81.5 15 78 9 M8x1P 1 7 38 4-12K6 6.35 K6 726 213 63 25 22 2 93 7 81.5 15 78 9 M8x1P 1 7 4-16K4 K4 523 13729 63 2 184 2 93 7 81.5 15 78 9 M8x1P 1 7 16 4-16K5 K5 6141 17341 63 25 216 2 93 7 81.5 15 78 9 M8x1P 1 7 4-2K4 K4 4993 13666 63 25 22 2 93 7 81.5 15 78 9 M8x1P 1 7 2 4-2K5 K5 614 17262 63 25 26 2 93 7 81.5 15 78 9 M8x1P 1 7 4-4K2 4 K2 259 6568 63 45 28 2 93 7 81.5 15 78 9 M8x1P 1 7 45-6K6 6 3.969 K6 4173 1684 68 1 12 2 98 75 86.5 15 83 9 M8x1P 1 7 45-16K4 K4 5548 16818 7 2 19 2 15 8 92.5 18 88 11 M8x1P 1 9 16 45-16K5 45 K5 6783 21244 7 25 222 2 15 8 92.5 18 88 11 M8x1P 1 9 45-2K4 K4 5524 16762 7 25 22 2 15 8 92.5 18 88 11 M8x1P 1 9 2 45-2K5 K5 6753 21173 7 25 26 2 15 8 92.5 18 88 11 M8x1P 1 9 5-1K4 K4 5769 1845 75 16 144 2 11 85 97.5 18 93 11 M8x1P 1 9 1 5-1K6 K6 8299 28161 75 2 184 2 11 85 97.5 18 93 11 M8x1P 1 9 5-12K4 K4 5763 18435 75 25 166 2 11 85 97.5 18 93 11 M8x1P 1 9 12 5-12K6 K6 829 28138 75 25 214 2 11 85 97.5 18 93 11 M8x1P 1 9 6.35 5-16K4 K4 5747 18396 75 2 196 2 11 85 97.5 18 93 11 M8x1P 1 9 16 5-16K6 K6 8267 2878 75 25 26 2 11 85 97.5 18 93 11 M8x1P 1 9 5 5-2K4 K4 5727 18346 75 25 228 2 11 85 97.5 18 93 11 M8x1P 1 9 2 5-2K6 K6 8238 281 75 25 38 2 11 85 97.5 18 93 11 M8x1P 1 9 5-25K4 K4 5695 18268 75 3 262 2 11 85 97.5 18 93 11 M8x1P 1 9 25 5-25K6 K6 8193 27883 75 3 362 2 11 85 97.5 18 93 11 M8x1P 1 9 5-4K2 K2 34 884 75 45 222 2 11 85 97.5 18 93 11 M8x1P 1 9 4 5-4K3 K3 4392 1375 75 45 32 2 11 85 97.5 18 93 11 M8x1P 1 9 55-6K6 55 6 3.969 K6 4527 19779 12 1 124 2 144 12 128 18 122 11 M8x1P 1 9

S99LE16-59 53 9. Accuracy Standards HIWIN is equipped with the latest hi-tech inspection equipment that fully meet all the requirements of IN and JIS quality standards. All HIWIN products pass a final inspection in accordance with to IN or JIS standards. Every HIWIN precision ballscrew possesses an Inspection Certificate inspected by laser lead precision measurements that meet with IN or JIS standards. Customers can be absolutely assured they will get a ballscrew with excellent lead accuracy.