Contents 9.4 Cooling capacity . 9-9 9.4.1 HRR010-A -10. 9-9 9.4.2 HRR010-W-10. 9-9 9.4.3 HRR010-A -20. 9-10 9.4.4 HRR010-W-20. 9-10 9.5 Heating capacity . 9-11 9.5.1 HRR010-A-10. 9-11 9.5.2 HRR010-W-10. 9-11 9.5.3 HRR010-A-20. 9-12 9.5.4 HRR010-W-20. 9-12 9.6 Pump capacity. 9-13 9.6.1 HRR010-A/W-10 . 9-13 9.6.2 HRR010-A/W-10-T1 . 9-13 9.7 Required facility water flow (for water-cooled type
Bore size 32 to 63: Select a model with 50 strokes or less. 1 CJ5 CG5 5 10 20 30 40 50 Transfer speed: v (m/min) HY Bore size 32 to 63 C M 1000 63 Mass of transferred object: m (kg) 50 40 32 100 D-X Individual -X 10 5 10 20 30 40 50 Technical data Transfer speed: v (m/min) 877 Series HYG Construction t !7 !5 !0 i e o !6 u !8 !1 !1 y 32 to 63 @0 With auto switch (Built-in magnet type) w !
Note 2) Without valve mechanism. q 00 10 20 30 40 e w w q w q q w e q w (1) Numbers in K indicate the constructing order from the left hand side (upper stream) with a view from front. Ex.) Symbol 00 AF+AR+AL 10 AW+AL (Available only for AC1010 to 4010.) 20 AF+AR 30 AF+AFM+AR (Available only for AC2030 to 4030.)
HRR050-A-20/40.9-10 HRR Series HRX-OM-X071 Contents 9.3.2 HRR050-W-20/40. 9-10 9.4 Cooling capacity . 9-11 9.4.1 HRR050-A-20. 9-11 9.4.2 HRR050-W-20. 9-11 9.4.3 HRR050-A-40. 9-12 9.4.4 HRR050-W-40. 9-12 9.5 Heating capacity . 9-13 9.5.1 HRR050-A/W-20. 9-13 9.5.2 HRR050-A/W-40. 9-13 9.6 Pump capacity. 9-14 9.6.1 HRR050-A/W-20. 9-14 9.6.2 HRR050-A/W-40. 9-14 9.7 Required facility water flow
Example: Set 20 W (100 W 20%) for the 100-W external Regenerative resistor with natural convection cooling method: Pn600 = 2 (unit: 10 W) Note 1. If Pn600 is not set to the optimum value, alarm A.320 will occur. 2. When set to the factory setting (Pn600 = 0), the DRIVERs built-in option has been used.
x Width 925 x Depth 955] HRS150-W -20-A 459 [208] HRS150-A-20
Load A Displacement LER50 LER10 LER50 (Basic type) LER10 (Basic type) 200 Displacement (m) Displacement (m) 400 150 350 120 10 20 30 40 LERH50 (High precision type) 50 LERH10 (High precision type) 0 20 40 60 80 100 120 0 5 10 15 20 25 30 Load (N) Load (N) LER30 300 LER30 (Basic type) 250 Displacement (m) 200 50 130 150 LERH30 (High precision type) 0 10 20 30 40 50 60 70 Load (N) Deflection
HRX-OM-Q026-V Operation Manual Installation Operation Original Instructions Thermo Chiller HRSH Series HRSH100-A-20HRSH100-A-40HRSH100-A-20-S HRSH150-A-20HRSH150-A-40HRSH150-A-20-S HRSH200-A-20HRSH200-A-40HRSH200-A-20-S HRSH250-A-20HRSH250-A-40HRSH250-A-20-S HRSH300-A-20HRSH300-A-40HRSH100-W-20HRSH100-W-40HRSH100-W-20-S HRSH150-W-20HRSH150-W-40HRSH150-W-20-S HRSH200-W-20HRSH200-W-40HRSH200
Example)IS10M-30-6LP q Body size Description Symbol 20 30 40 50 60 Set pressure length Nil 6 Note 1) 0.1 to 0.4 MPa 0.1 to 0.6 MPa a Semi-standard + Nil L Z 0.5 m 3 m 5 m Lead wire length w b + Nil P Note 2) MPa MPa/psi dual scale 500 Pressure unit of the scale plate Note 1) Set pressure range of 6P (L, Z) is 0.2 to 0.6 MPa (30 to 90 psi).
Example: Set 20 W (100 W 20%) for the 100-W external regenerative resistors with natural convection cooling method: Pn600 = 2 (unit: 10 W) Note 1. If Pn600 is not set to the optimum value, alarm A.320 will occur. 2. When set to the factory setting (Pn600 = 0), the DRIVERs built-in option has been used.
2 20 20 10 10 10 5 4 3 4 5 3 4 5 3 2 2 2 1 1 1 1 5 10 20 10 5 1 20 30 10 5 1 20 30 Transfer speed (m/min) Transfer speed (m/min) Transfer speed (m/min) Lever-type weight of transferred object and transfer speed graphs (graphs (2) and (3)) show the values at room temperature (20 to 25C).
H MM NN MQ10-M MQ16-M MQ20-M MQ25-M MQ28-M 10 10.5 M5 x 0.8 M3 x 0.5 16 11.5 M6 x 1.0 M4 x 0.7 20 13.5 M8 x 1.25 M5 x 0.8 25 16.5 M10 x 1.25 M6 x 1.0 28 22.5 M14 x 1.5 M8 x 1.25 Clevis pin d Dd9 m m l t L t Applicable bore (mm) Applicable snap ring Part no.
OB Counterbore depth RB 2 x 4-OA effective depth RA J I 4-N through 0.2 D W E M K L B + Stroke 0.2 A + Stroke M E Bore size (mm) Stroke range (mm) A OA B C D E F H RB I J K L M N OB Q RA W Y 10 10 to 40 39.5 M4 x 0.7 31.5 6 6 29 5.5 M3 x 0.5 4 38 5 8 20 3.5 6.5 14.5 7 5 16 10 to 60 44 M6 x 1.0 34 8 8 36 5.5 M4 x 0.7 7 47 7 10 25.5 5.4 9 18 10 5 20 10 to 60 47.5 M6 x 1.0 37.5 10 10 40
VA or less 10 W or less 20 VA or less 10 W or less 20 VA or less 10 W or less 20 VA or less 10 W or less Power consumption Between case and AC line: 1500 VAC for 1 min.
F I LT E R (N)AF800-12 (1 14) (N)AF800-14 (1 12) (N)AF900-20 (2) H O W T O O R D E R A I R F I LT E R W I T H A U T O D R A I N (N)AF811-12 (1 14) (N)AF811-14 (1 12) (N)AF911-20 (2) ACCESSORIES A I R F I LT E R Filter Elements 11345-5B NAF800 11352-5B NAF900 Note) (N)AF AF Japanese NAF North American Courtesy of Steven Engineering, Inc. !
VA or less 10 W or less 20 VA or less 10 W or less 20 VA or less 10 W or less 20 VA or less 10 W or less Power consumption Between case and AC line: 1500 VAC for 1 min.
VA or less 10 W or less 20 VA or less 10 W or less 20 VA or less 10 W or less 20 VA or less 10 W or less Power consumption Between case and AC line: 1500 VAC for 1 min.
Form w 1 Material e Buffer spec. r Buffer stroke t Vacuum inlet 8 N S U F GN GS 3 6 10 15 20 8 U2 6.5 0.9 M-5AU-2 ZP3 Y 04 06 08 B J JB K Vacuum inlet: One-touch fitting U4 8.5 1.8 M-5AU-4 Applicable tubing O.D.
M H L2 L1 A E M LQ1L12-M LQ1L11-M 3 4 11.5 1/8 11.5 10 15.5 18 1/8" R (NPT) Port size Class 1 LQ1L43-M LQ1L42-M LQ1L41-M LQ1L36-M LQ1L35-M LQ1L34-M LQ1L33-M LQ1L32-M LQ1L31-M LQ1L24-M LQ1L23-M LQ1L22-M LQ1L21-M 4 6 4 6 1/8" L1 16.5 14 14.5 15 20.5 27 1/4" 10 L2 M 1/4" 6 8 (A) 23 17 20 20 26.5 35 1/4 10 H 6 8 3/8" (E) Class 2 to 5 12 10 12 3/8" 28 21 25 24 33 45 1/2" LQ1L44-M 10 M LQ1L54-