S605 NPM | Alldatasheet

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Electrical Specs S605D S605D 1S S605T S605T 1S S605Q S605Q 2S S605Q 1S Continuous Current1 8.8Arms 18Arms 8.6Arms 26Arms 8.4Arms 16.8Arms 34Arms Acceleration Current2 35Arms 70Arms 34Arms 103Arms 34Arms 67Arms 134Arms Force Constant (Kf) 47N/arms (10.6lbs/amp) 24N/Arms (5.4lbs/amp) 71N/Arms (16lbs/amp) 24N/Arms (5.4lbs/amp) 93N/Arms (20.9lbs/amp) 47N/Arms (10.6lbs/amp) 23N/Arms (5.2lbs/amp) Back EMF (Ke) 16V/m/s (0.8V/in/s) 7.8V/m/s (0.39V/in/s) 24V/m/s (0.6V/in/s) 7.9V/m/s (0.2V/in/s) 31V/m/s (0.8V/in/s) 16V/m/s (0.41V/in/s) 7.8V/m/s (0.20V/in/s) Electric Time Constant 5.91ms 5.88ms 5.91ms Max. Rated Voltage (AC) 240V Magnetic Pitch (North-North) 240mm (9.4in) Thermal Specs S605D S605T S605Q Max Phase Temperature4 135°C (275°F) Thermal Resistance (Coil) (Kq) 1.3°C/W 0.9°C/W 0.7°C/W 4 The standard temperature difference between the coil and the forcer surface is 40°C. Nippon Pulse Your Partner in Motion Control Is this the proper Linear Shaft Motor for your application? Use our SMART sizing program to assist in your decision. This motor can be customized to fit your application demands; contact your application engineer for more information. 1 Based on a temp rise of coil surface of 110°K over 25°C ambient temperature stalled forcer, and no external cooling or heat sinking. 2 Can be maintained for a maximum of 40 seconds. Higher forces and current possible for short periods of time, consult Nippon Pulse for more information. 3 All winding parameters listed are measured line-to-line (phase-to-phase). Visit nipponpulse.com to download 3D CAD drawings and 2D prints of this motor. www.nipponpulse.com Bus Voltage D: Double (2) windings T: Triple (3) windings Q: Quadruple (4) windings 200-2000mm Blank: Standard WP: Water Resistant HA: Digital Hall Effect Blank: Standard FO: Forcer Only SO: Shaft Only Part Numbering System — — — Shaft Size Forcer Size (A) Parallel Option Usable Stroke (S) Options Options S X XX XXXXst XX XX—605 Blank: Single Motor PL: Parallel Motors These motors have not received a CE Declaration of Conformity, and as such are designated FGA.

Forcer Spacing Distance 50mm Pole (N/S) Distance 120mm Forcer Length 430mm 550mm Flip Forcers No Yes Forcer Spacing Distance Wire Type UL 1330 Wire AWG 24 U Phase Red V Phase White W Phase Black FGA/CE Type Motor Cable 300mm lead wire bare leads. The bending radius of the motor cable should be 16.96mm as suggested by the wire manufacturer. Ground Wire Wire Type UL 1330 Wire AWG 20 Frame Ground Green/Yellow Tandem S605D forcers are possible, but are equivalent to one (1) S605Q forcer and thus are not listed above. Hall Effect Specs Wire Type UL 758 Wire AWG 28 VCC White/Red GND White/Black Sensor 1 Orange/Red Sensor 2 Orange/Black Sensor 3 Gray/Red The bending radius of the sensor cable should be R27.6mm (wire diameter 4.6 * 6) as suggested by the wire manufacturer. This radius should be maintained. Attach the proper high-flex cable as required by your application. Sensor Cable Specs www.nipponpulse.com Forcer Specs S605D S605T S605Q Forcer Length (A) 310mm (12.2in) 430mm (16.9in) 550mm (21.7in) Forcer Width 125 x 120mm (4.9 x 4.72in) Forcer Screw Pitch (P) 105mm (4.13in) 165mm (6.5in) 225mm (8.9in) Forcer Weight 16kg (35.3lbs) 21kg (46.3lbs) 27kg (59.5lbs) Gap 1.75mm (0.07in) Screw M10 Tightening Torque 24 Nm Note: Cable length 300mm. The bending radius of the motor cable should be 36.6mm (wire diameter 8.9 * 6) as suggested by the wire manufacturer. This radius should be maintained. Use supplied connector to attach the proper high-flex cable as required by your application. dep Total Length Stroke LengthForcer Length Support Length Forcer Pitch Screw Mounting Surface counterbore Ø14 depth 9 L = See Shaft Length L1 = Usable Stroke + A L2 = See Support Length A = See Forcer Length P = See Forcer Screw Pitch Tolerances are as follows: Dimension (mm) 0 - 6 7 - 30 31 - 120 121 - 315 316 - 1000 1001 - 2000 2000 - Tolerance (mm) ±0.1 ±0.2 ±0.3 ±0.5 ±0.8 ±1.2 ±1.5 Unless otherwise specified, dimensions are in mm

100 Stroke is less than the electrical cycle length. Contact Nippon Pulse.150 200 670mm (26.4in) 790mm (31.1in) 910mm (35.8in) 250 720mm (28.3in) 840mm (33.1in) 960mm (37.8in) 300 770mm (30.3in) 890mm (35in) 1010mm (39.8in) 350 820mm (32.3in) 940mm (37in) 1060mm (41.7in) 400 870mm (34.3in) 990mm (39in) 1110mm (43.7in) 450 920mm (36.2in) 1040mm (40.9in) 1160mm (45.7in) 500 970mm (38.2in) 1090mm (42.9in) 1210mm (47.6in) 550 1020mm (40.2in) 1140mm (44.9in) 1260mm (49.6in) 600 1070mm (42.1in) 1190mm (46.9in) 1310mm (51.6in) 650 1120mm (44.1in) 1240mm (48.8in) 1360mm (53.5in) 700 1170mm (46.1in) 1290mm (50.8in) 1410mm (55.5in) 750 1220mm (48in) 1340mm (52.8in) 1460mm (57.5in) 800 1310mm (51.6in) 1430mm (56.3in) 1550mm (61in) 850 1360mm (53.5in) 1480mm (58.3in) 1600mm (63in) 900 1410mm (55.5in) 1530mm (60.2in) 1650mm (65in) 950 1460mm (57.5in) 1580mm (62.2in) 1700mm (66.9in) 1000 1510mm (59.4in) 1630mm (64.2in) 1750mm (68.9in) 1050 1560mm (61.4in) 1680mm (66.1in) 1800mm (70.9in) 1100 1610mm (63.4in) 1730mm (68.1in) 1850mm (72.8in) 1150 1650mm (65in) 1780mm (70.1in) 1900mm (74.8in) 1200 1710mm (67.3in) 1830mm (72in) 1950mm (76.8in) 1250 1750mm (68.9in) 1880mm (74in) 2000mm (78.7in) 1300 1810mm (71.3in) 1930mm (76in) 2050mm (80.7in) 1350 1860mm (73.2in) 1980mm (78in) 2100mm (82.7in) 1400 1910mm (75.2in) 2030mm (79.9in) 2150mm (84.6in) 1450 1960mm (77.2in) 2080mm (81.9in) 2200mm (86.6in) 1500 2010mm (79.1in) 2130mm (83.9in) 2250mm (88.6in) 1550 2100mm (82.7in) 2180mm (85.8in) 2300mm (90.6in) 1600 2150mm (84.6in) 2230mm (87.8in) 2350mm (92.5in) 1650 2200mm (86.6in) 2280mm (89.8in) 2400mm (94.5in) 1700 2250mm (88.6in) 2330mm (91.7in) 2450mm (96.5in) 1750 2300mm (90.6in) 2380mm (93.7in) 2500mm (98.4in) 1800 2350mm (92.5in) 2430mm (95.7in) 2550mm (100.4in) 1850 2400mm (94.5in) 2480mm (97.6in) 2600mm (102.4in) 1900 2450mm (96.5in) 2530mm (99.6in) 2650mm (104.3in) 1950 2500mm (98.4in) 2580mm (101.6in) 2700mm (106.3in) 2000 2550mm (100.4in) 2630mm (103.5in) 2750mm (108.3in) Shaft Length (L) Shaft Mass Forcer Spacing Distance Tandem Forcer Stroke S605D S605T S605Q 100 Stroke is less than the electrical cycle length. Contact Nippon Pulse.150 700 23.64kg (52.1lb) 25kg (55lb) 27.4kg (60.4lb) 850 27.21kg (60lb) 28kg (61.7lb) 30.4kg (67lb) 1150 33.25kg (73.3lb) 34kg (75lb) 36.4kg (80.3lb) 1300 36.27kg (80lb) 37kg (81.7lb) 39.5kg (87lb) 2000 50.35kg (111lb) 51.1kg (112.7lb) 53.5kg (118lb) www.nipponpulse.com Additional stroke lengths are available (up to 3000mm). Contact Nippon Pulse for more information.

www.nipponpulse.com For assistance in selecting the best motor for your application, contact Nippon Pulse to speak with an applications engineer. 1-540-633-1677 Note: Metric units guaranteed. Imperial (United States customary) units are calculated. THM Option Thermocouple Thermal sensor Themocouple K type (marked each phase name) Attached to the surface of inside of coil Length 3000mm Shaft Diameter (D) - 60.5mm ±0.2 Stroke Support Length (L2) Max. Bending 0~550 80mm 0.00mm 551~750 80mm 0.15mm 751~1500 100mm 0.60mm 1501~max 120mm 1.10mm Support and Bending Wire Type UL 2570FA Wire AWG 14 U Phase Red V Phase White W Phase Black Lead Wire 300mm lead wire bare leads. The bending radius of the motor cable should be 36.6mm as suggested by the wire manufacturer. Receptacle Housing VLR-03V Plug Housing VLP-03V Retainer VLS-03V Pin Contact SVM-61T-P2.0 Socket Contact SVF-61T-P2.0 Connector (Motor Cable) To be installed by the user. Total Length (L)=Stroke (S)+Forcer Length (A)+(Support Length (L2)x2)

The design of the Linear Shaft Motor allows you to replace traditional linear mo- tion systems, such as a standard ball screw, with the Linear Shaft Motor and achieve higher speed and resolution. To achieve the highest performance with the Linear Shaft Mo- tor system, the entire system structure must be optimized. Be aware there are various design considerations which are somewhat different from traditional servo system practices. These are the main components needed to make a Linear Shaft Motor system, as well as factors to consider when designing a system. To configure a system using the Linear Shaft Motor, the following peripheral devices are required: A. Linear Shaft Motor B. Servo Driver C. Linear encoder (optical or magnetic) Item D (Linear Guide) is a necessary part of a system, but consideration must be given to the application, demand specifications, environmental conditions, and which will be moving--the forcer or the shaft. The other items, E through G, are optional and will need to be selected depend- ing on the application. Configuring the Linear Shaft Motor Steps to putting together a Linear Shaft Motor System Choose the Linear Shaft Motor based on force and stroke requirements. Choose the shaft supports based on design and motor specifications. Choose the linear guide (bearings) based on cost and smoothness (performance) constraints. Choose the linear encoder to achieve the required position resolution. Choose the servo driver to match the power requirements of the Linear Shaft Motor. Choose the OTL, limit switches/other components and assemble the Linear Shaft Motor system. F Cable Carrier E Shaft Support B Servo Driver G Table C -2 Linear Encoder C -1 Linear Scale D -1 Linear Rail D -2 Bearing Block A -2 Forcer A -1 Shaft E Shaft Support Nippon Pulse Your Partner in Motion Control System Design Linear Shaft Motor