CATALOG Compact Hydraulic Precision Injection Molding Machine

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CTLOG 025 Compact Hydraulic Precision Injection Molding Machine

PN Series materializes PN4O5 [Type I] \ Electronic Controller: NC900T (Optional specifications) PN6O9 [Туpen] Electronic Controller: NC9000F (Optional specifications) Gained ISO 9001 Certification January 1996 Certified Quality System: Injection Molding Machine

ideal plasticization. PN Series has functions superior to those of the longtime seller PS models, exhibiting excellent stability and repeatability for an extended period of time. The latest compact hydraulic precision injection molding machine, PN Series, displays its great power in longterm, stable molding of electronic and precision mechanism elements and other highprecision products. The new injection mechanism ensures ideal temperature control, and the timetested direct pressure clamping system is mounted. The hydraulic control system comes in Type I for digital servo control and Type II for hydraulic variable displacement pump control. Select the best model according to the purpose of molding. Select a model that best suites the purpose of molding. draulic control system Injection velocity Electronic controller, Digital servo control 'VP Digital control by CC + Quickresponse servo proportional valve Semiclosed loop control by hydraulic pump 400/s 1 74/s (9) 1 9/s (5) 245/s (2) NC900T NC900T or NC9000F Semiclosed control under the hydraulic pump control by servomotor driving * * is a special order model of Type I

New injection mechanism for better precision stable molding ES «a 2. en =r The newlydeveloped screw and barrel, optimal temperature control zone, and temperature detection points materialize an ideal temperature distribution in the injection part. Thermocouple, band heater, etc. of the barrel have been reexamined for highprecision control of the resin temperature. The nozzle and barrel head are designed to be less influenced by disturbance in order to ensure stable resin temperature. The injection pressure and injection rate have been improved to increase the stability of injection/filling. The longer screw L/D exhibits sufficient plasticization capacity. (Sketch drawing of the new injection mechanism Highquality, highspeed cycle molding The rotary ram inline screw injection mechanism, which was developed and put to practical use earlier than any other company, has been timetested. The screw design ensures low resin temperature and uniform kneading effects. Easy maintenance and control The swivel injection unit makes it easy to attach/detach the screw and barrel. со о Nozzle = Stabilization of resin temperature Check valve = Improvement of resin response during filling Screw = Uniform qualify (temperature) of plastic resin Screw holding mechanism = Improvement of maintainability j? а>э сл Barrel head Stabilization of resin temperature Location of barrel, band heater, and thermocouple Ideal (uniform) temperature distribution Digital servo control (Type I) of injection = Improvement of control response and repeatability (Comparison of starting and braking response Digitization and quick calculation further improve the response. (Type I/Digital servo control) Setting 100%(400/s) 75% 50% 25% 12.5% 0 0.05 0.1 0. 0.2 0.25 0. Time (sec) 0.5 0.4 0.45 0.5

Materialization of stable plasticization of resin InBSin (ГПрГЭШГ esin temperature l"c] Zoo Example data for comparison of the temperature of PP resin that is plasticized and injected at an arbitrary screw speed. PS40E5 (screw: 026) Temperature measurement data [SD02bNo.91~100 esin temperature Г СI 260 PN405 (screw: 026) Temperature measurement data [PD1]No,91~100 250 250 240 240 20 220 210 200 190 180 170 10 20 0 Screw position [] 40 Injection pressure [MPa] Ф in figure: Drop at the beginning of injection (resin in nozzle and head) ij'! in figure: Unstable region during the latter half of plasticization (socalled defective plasticization) 180 170 10 20 0 Screw position [] 40 Of IllOldiny Example data for comparison of product weight dispersion Product weight [ E ] Max.=2.905 Min.=2.8191 ve.=2.85761 on=0.0186 /ue.=0.61% bnormal weight due to nonuniform plasticization 270 0 10 20 0 40 50 60 70 80 90 100 110 Data on conventional PS40E5 " T Ьа 24.00 Product weight [g] Max.=2.809 Min.=2.8079 ve.=2.81919 un=0.00488 /«.=0.097% 2.95 2.90 2.85 rf.^~s,*«ws~* H «.^H^^*" <M * M W***.*^M^«^»~V*"«~%.««^* 2.80 2.75 2.70 0 10 20 0 40 50 60 70 80 90 100 11 ] shot Evaluation of continuous molding 1. Waveform data: Both filling load pressure and velocity are stable. 2. Weight: Deviation is little. (Coefficient of variation: 0.097%)

Direct pressure clamping system that ensures highly evaluated stable clamping force and high rigidity The highly durable direct pressure clamping system that permits highspeed mold opening/closing is mounted. This highrigidity system that allows highprecision parallelism of die plates ensures the accuracy of complicated highprecision molds for an extended period of time pplicable to multistage control of clamping force and wideranging injection compression molding (CPN2 molding) The original ejection program control materializes higherspeed cycle operation. Safety design Mechanical, hydraulic, and electric safety devices are provided for safe mold clamping. The safety door is provided with a mechanical interlock to make assurance double sure. Digital servo control best suited for thinwall, highspeed molding The digital servo control (by CC + Quick response servo proportional valve) in Type I, a hydraulic control system, is intended to improve the injection filling control technology and excels in injection speed, pressure linearity, and repeatability, exhibiting unprecedented characteristics. It is ideal for thinwall, highspeed molding. Type II, a hydraulic variable displacement pump control, permits selection of electronic controller NC900T or NC9000F according to the purpose of molding and applications. The hydraulic control is semiclosed loop control. Pursuit of ultimate energy saving In the new hydraulic control system (Type II optional specification), an C servomotor and a special fixed piston pump are combined. The number of revolutions of the servomotor is changed to control the flow rate (speed) and pressure. The effect of energy saving is far greater than the SSE system whose energy saving effect used to be the greatest. Especially, the energy saving effect when the pump is unloaded in the molding process is excellent. The hydraulic oil consumption is 60% smaller than conventional machines. Comparison UUI ijiaiia of power consumption of hydraulic control systems Energy saving system that avoids waste kwh] о о 1 2.5 ё 1.5 C9 0 g_ o' Hydraulic pump control by servomotor driving 2 1 0.5 0 Per one cycle When pump is unloaded Injection: 5.0 sec Cooling: 20 sec (Metering: 7.6 sec) Dry cycle: 5.4 sec One cycle: 0 sec The standard molding machines, Type I and Type II, are the most highly evaluated as energysaving systems, which is equipped with "NISSEI SSE System" that has been sold in large quantities. The direct control method is adopted to directly supply the essential minimum of hydraulic oil and pressure to drive respective portions.

Highfunction NISSEI electronic controller excels in operability. NISSEI ELECTONIC CONTOLLE NC900TNC9000F к Operation switches and controller screen are made integral in the operation panel, which is installed on the side of the safety door. The controller is easy to operate, facilitating confirmation of the operating conditions of the molding machine. variety of functions for the diversity of condition setting NC9OOT For PNType I/TypeП large 10.4" TFT color liquid crystal screen with a wide angle of visibility, which is thin and easyto see, is used. Easytounderstand display, as well as a meter gauge and other visually easytounderstand graphical displays, ensures excellent operability. highresolution touch panel is used in the screen for quick, correct operation. highspeed CPU permits quick processing for screen switching and graphical displays, ensuring quick response and excellent repeatability. In addition to the multistage control (6velocity/limit pressure/holding pressure), an interpolation system is provided for injection process control, thereby permitting application under a wide ranging conditions. The molding condition storage function is sufficient. 0 molding conditions can be stored in the controller, while 100 conditions can be stored in one floppy disk used as an external memory. In addition, more than 50 basic profiles can be stored. Outstanding operability and complete function NC9OOOF For PNType П BO CQ OOOBB, Q BOB The screen is a thin, electroluminescence (EL) display with a wide angle of visibility for which a transparent touch panel is used. The clear layout of display permits easy setting. Fivestage injection velocity control and threestage pressure control are combined for injection process control in order to permit operation in conformity with a variety of molding conditions. The quality/production control function is excellent, permitting control of each process time and statistic calculation of monitor items, as well as display of the history of set values for each item. The M card that stores molding conditions as an external memory materializes exact storage and easy resetting of molding conditions, catering to a smallquantity production of a variety of products. efer to respective catalogs for the details of the controllers.

PN20 PEFOMNCE SPECIFICTIONS Injection Clamping Others Plasticizing capacity value depends on the molding conditions and material used. Specifications are subject to change without notice. 1 MPa=10.2kgf/cnV=10kgf/cnr, 1 kl Model PN202 Type I PN2O2 ТуреП Specification item Unit Digital servo control Hydraulic variable displacement pump control Screw diameter 16 19 22 16 19 22 Injection capacity cm 1 18 25 1 18 25 Plasticizing capacity (PS) Injection pressure Injection rate Injection speed Screw speed Hopper capacity (Optional) Mold clamping force Mold clamping stroke Minimum mold thickness Maximum daylight opening Clearance between tie bars (H x V) Die plate dimensions (HxV) Ejector stroke Pump motor Heater band capacity Hydraulic oil quantity Machine dimensions (L x W x H) Floor dimensions (LxW) Machine weight MOLD TTCHMENT DIGM kg/h MPa cm'/s /s rpm L kn (tf) kw kw L m m t 7 11 274 21 80 11 400 050 212(22) 220 180 400 255X255 65X65 60 11 2.96.7 2.9X1.08X1.61 2.28X0.67 2.0 16 9 2 7 11 274 21 48 69 245 050 212(22) 220 180 400 255 X255 65X65 60 7.5 2.96.7 2.7X0.88X1.61 2.28X0.67 1.9 16 9 92 Movable platen Ejector pin Nozzle distance 5 Stationary platen, I \ / S _ 1* ^ (o Siut^ d. 4fl 60 I \M12Depth20 Ejector stroke j j 220 180 Clamping stroke Min. mold thickness 400 Max. daylight opening О»» Ф/Ф Ф (~) ^^ Ф» «4 Ф ФФФ ; Ф Ф Ф * * Ф 4:»*а Q f 255 ^ 7Й Movable platen хгг ±d i 1 J #20 Ejector pin / mounting position ss Mold mounting face Л ю H" 5M12 Depth 24 / ( 240 65 65 > 0 1Л. f1 > Ц ф ' Take out robot fixation diagram 52WI12_ Depth 24 \ 4> Ф Ф Ф Ф 255 65 0 125 100 O*;* Ф+ Ф ч»» ФФ 4f\4 t ф Ь ф ф Stationary platen ю 6

I 192.5 (Takeout robot mounting lace) ~l'5i Шор ol safely door)

PN40 Plasticizing capacity value depends on the molding conditions and material used. Specifications are subject to change without notice., 1 kn = 0.l02 tl = 0.1 tf PEFOMNCE SPECIFICTIONS Model PN4O5 Type I PN4O5 ТуреП Injection Clamping Others Specification item Screw diameter Injection capacity Plasticizing capacity (PS) Injection pressure Injection rate Injection speed Screw speed Hopper capacity (Optional) Mold clamping force Mold clamping stroke Minimum mold thickness Maximum daylight opening Clearance between tie bars (H x V) Die plate dimensions (HxV) Ejector stroke Pump motor Heater band capacity Hydraulic oil quantity Machine dimensions (LxWxH) Floor dimensions (LxW) Machine weight MOLD TTCHMENT DIGM Unit cm kg/h MPa cnf/s /s rpm L kn (tf) kw kw L m m t Digital servo control 22 26 5 49 16 2 276 209 2 212 400 050 405(41) 00 200 500 10X10 450X450 60 4.96 5.7 200.8 X1.18X1.64 2.7X0.7 2. 0 65 5 7 28 Hydraulic variable displacement pump control 22 26 5 49 16 2 276 209 7 102 19 050 405(41) 00 200 500 10X10 450X450 60 11 4.96 5.7.1X0.89X1.64 200 2.7X0.7 2.2.21X0.89X1.64 0 65 5 7 16 Movable platen Ejector pin Nozzle distance 5 Stationary platen Л Did mounting face \ [ \ 5 i Э ( l> 100 8 240 100 * 1 M16 Depth 2 Ф 4M12 Depth 20 П» Take out robot fixation diagram 5^0 Ejector pin mounting position Л*^Н /+>QL_ 0 о 100 *, т,ф> ") 10 454 Movable platen о со 56М16 Depth 0 / N Ф f) v ф ф 1 ф ф ф Ч>> Ф Ф VVV CjV d V > и л! 10 450 200 175 0 125 100 Stationary platen л оот

EXTENL VIEW PN40 phase C power : 50/60HZ Screw diameter Pump motor kw Heater Control Total kw kw ш M *22.0 4,96 1.0 24 ar, л я, /'26.0.0 5.7 1.0 21.7 26.7,110 70 J 55 725 Heal exchanger cooling water supply/drain port 2c У( G#20 ришкышп twit hole S Я i Tr* 100 4MB Depth 16 1 45 270 25 Hopper fixation diagram 596^821 W 22) 129071> 26,01 ulusc C piiwur 50/60HZ Screw diameter «22 #26,0 Pump motor kw 11.0 11.0 lintel kw 4.96 5.7 Ciiiitioi kw kv 1.0 16.96 I'll % 1.0 17.7 21.7 Moid/hopper throat cooling water l 725 J\ Hciil i;ycli;i[iger cooling Water\ supply/dram port 2c У fi^2d Foundation boll hole 100 4MB Depth 16 Hopper fixation diagram

PN60 PEFOMNCE SPECIFICTIONS Injection Clamping Others Plasticizing capacity value depends on the molding conditions and material used. Specifications are subject to change without notice., 1 kn = 0.102tf±r0.1 tf Model PN609 Type I PN6O9 ТуреП Specification item Screw diameter Injection capacity Plasticizing capacity (PS) Injection pressure Injection rate Injection speed Constant torque Variable torque Hopper capacity (Optional) Mold clamping force Mold clamping stroke Minimum mold thickness Maximum daylight opening Clearance between tie bars (H x V) Die plate dimensions (HxV) Ejector stroke Pump motor Heater band capacity Hydraulic oil quantity Machine dimensions (LxWxH) Floor dimensions (LxW) Machine weight MOLD TTCHMENT DIGM Unit cm kg/h MPa cnf/s /s rpm rpm L kn (tf) kw kw L m m I Digital servo control 28 2 69 90 1 45 275 21 246 22 400 02 220 25 641 (65) 40 170 600 25X25 478X478 70 18.5 8.26 9.26 295 4.05X1.2X1.76.49X0.77. 6 114 61 169 407 Hydraulic variable displacement pump control 28 2 69 90 1 45 275 21 107 140 174 02 220 25 641 (65) 40 170 600 25X25 478X478 70 8.26 9.26 295.78 X0.95 X1.76.86 X0.95 X1.76.49X0.77. 6 114 61 169 177 Movable platen Ejector pin Nozzle distance; Stationary platen Mold mounting face H S ~r L ( t i> 240 100 100 ( s ' ^< ^ M1 6 Depth 0 4 ^ ^Ф 6M12 Depth 20 Ю Clumping stroke Mjn. mold thickness Max. daylight opening 600 Take out robot fixation diagram 5^0 Ejector pin 52M16 Depth 0 \ О Sfl 125 'ф ф ф.l/ Й *> 25 478 Movable platen Stationary platen 10

00 s 1 1 g > _. и 7G J6E 5 *»» О *,

: option : Standard equipment : Software only (standard equipment) : option (for special use) : ecoended option : Not provided EQUIPMENT LISTS Description of Equipment No. ТуреП Type I _ NC900T NC900T NC9000F Clamping unit / Mold Usage/function тши^^шяшш^т 1 Digital setting of mold opening/closing position 2 Digital setting of ejector position Daylight extension Digital setting and digital display (NC900T: Gauge display also available) Extension of tie bar for securing mold thickness and daylight 4 Locating ring (Fixed type) 5 Locating ring attachment (Nonfixed type) 6 Insulating board 7 dditional machining of mold mounting hole Mounting hole machining in addition to standard holes. 8 Tslot plate Tslot machining in mold mounting plate 9 Mechanical stopper Determination of mold opening stop position; mounting stopper ring on tie bar 10 Mold LS rail with scale 11 Clamping slide base 12 Independent adjustment of clamping pressure 1 Low pressure clamping Sliding mold clamping plate on the top of bed Digital setting; independent/arbitrary adjustment of high clamping pressure Digital setting of velocity and pressure 14 Mold opening velocity first/last stage slowdown 2stage highspeed mold opening 16 Suspension of mold opening Digital setting pplicable to threeplate mold; 1 stage operation possible. Suspension function of mold opening process (Mold reopening by timer or external signal) 17 Suspension of mold clamping 18 Mold clamping halfway slowdown Digital setting and digital display (NC900T: Gauge display also available) For shortening mold temperature rise time and stabilizing temperature Suspension function of mold clamping process (Mold reclamping by timer or external signal) pplicable to threeplate mold and angular pin 19 Mold opening/closing velocity setting pattern display 20 Multiple ejector operation 21 Suspension of ejector operation 22 Suspension of ejector operation: First/last time 1 to 9time digital setting (NC900T: 0 to 9time) 0.0 to 9.9 sec digital setting (NC900T: 0 to 9.99 sec) Suspension of only first or last time 2 Confirmation of ejector plate return 24 Ejector start timer 25 2stage ejector velocity 26 Change of ejector velocity in the middle of operation djustment of time from mold opening stop to ejector start Changing forward velocity between first and the times after the second Changing the first forward velocity in the middle of operation 27 Variable ejector backward stroke 28 Ejector forward velocity/pressure setting Setting the backward stop position for other than the last time 29 Ejector backward velocity/pressure setting 0 Manual ejector 1 Gatecut circuit 2 Mold set (Mold mounting) For confirming setting values Forwardbackward, independent selector switch Gate cutting by hydraulic cylinder Lowspeed mold opening/closing operation for mold mounting/dismounting (NC900T: utomatic mold thickness reading) Detection of minimum mold thickness 4 Mold temperature control Stop due to error when mold clamping over the min. mold thickness Control of mold heater; K or Jtype thermocouple applicable 5 Mold temperature indicator 6 CPN2 7 MIP 0 (Inmold processing system) Pressurizing (with software) 8 MIP 1 (Inmold processing system) Pressurizing 9 MIP 2 (Inmold processing system) Oscillating and pressurizing; positioning control Digital display (NC900T: Gauge display also available) Compression molding for prevention of burn, weld mark, and warpage Injection unit 1 Injection control system (Max. speed) 2 Digital setting of injection position Injection process control: 5velocity, pressure 4 Injection process control: 6velocity, limit pressure, holding pressure 5 Injection resin pressure 6 Interpolation injection control 7 VP changeover: modes 8 Screw drive (Oil motor) 9 Screw speed: Digital display 10 Overpacking prevention circuit 11 Drooling prevention 12 Flow molding Closed contra at 400 /5 Sem closed control at Z45/s(2),19/s(5), and 174/s(9) Closed type controlled by CC and digital servo system. Digital display of setting values and present values (NC900T: Gauge display also available) Number of stages variable Digital and meter display on the screen Max. point: velocity 20, limit pressure 20, holding pressure 20 Position/pressure/velocity mode Display on the screen (NC900T: Digital and meter display) Monitoring the previous primary pressure time (NC900T: Filling pressure control by limit pressure is used in combination.) Digital setting of decompression distance Filling resin into the mold while metering lу

PNSEIES Description of Equipment No. Type I ТуреП NC900T NC900T NC9000F Usage/function Motive power / Troubleshooting 5 Error display function 6 Selfdiagnosis function Display of input/output and analog output conditions on the screen 7 Power shutoff at the time of error Machine stops when various errors occur. 8 Cycle error Detection of molding cycle error 9 Mold clamping error Error detection by monitoring the lowpressure clamping time 10 Injection primary pressure time error Machine stops when the injection primary pressure time is out of monitor setting. 11 M1/M2 error Machine stops when the cushion volume is out of monitor setting. 12 Injection filling volume error Error detection by monitoring the filling stroke from injection start to end 1 Plasticizing error Machine stops when the plasticizing time is out of monitor setting. 14 Mold clamping error reconfirmation circuit Mold clamping error Mold opening Ejector Mold reclamping (pplicable to automatic operation) Oil level drop 16 Water suspension alarm 17 ir suspension alarm 18 Heater disconnection alarm 19 Mold heater disconnection alarm 20 eter for heater 21 Barrel temperature error 22 Mold temperature error 2 Fire alarm 24 Product takeout error 25 Oil temperature upper limit alarm 26 Oil temperature lower limit alarm 27 Pump motor overload alarm 28 Barrel holding temperature circuit Maintenance 1 Manual centralized lubrication unit 2 utomatic centralized lubrication unit Hydraulic oil purifier Display of the details of an error by process monitoring Power shutoff when hydraulic oil is less than the specified level Machine stops when disconnection of the nozzle/barrel heater is detected. Forced holding temperature/holding temperature at error Manual supply of lube oil utomatic supply of lube oil (Oil level drop alarm provided for oil feeder) With filter clogging alarm (hydraulic oil stop circuit) 4 Spare receptacle (2 pcs) 5 dditional spare receptacle 6 eceptacle circuit power shutoff 7 Hydraulic oil temperature indicator 8 Tool kit 9 Spare parts The receptacle circuit is also shut off when power is shut off. Digital display Setup / Machine installation / Bed / Plant environment 1 Bed support base 2 Mold mounting clamps utomatic mold clamp Hydraulic clamp 4 Mold positioning pin/block 5 Easy clamp 6 Specified color for molding machine 7 Specified color for safety door 8 Specified color for control box inside 9 Putty undercoating 10 Chain block stand 11 Ladder (Footstool) For material supply 12 Mounting pad Vibration proofing and simple leveling of molding machine Mold mounting clamps (Selection of 4 thicknesses possible) Cast and welded sections Simplified mold lifting device I Peripheral equipment, etc. 1 Standard cover for barrel 2 Insulating cover for barrel Prevention of heat radiation and improvement of heat insulation efficiency Parts maker specification IS

PNSEIES Description of Equipment No. 2 Counter switch Lot completion signal delay timer 4 Grand total shot 5 Total running hours of molding machine 6 Mold automatic heatup (Calendar timer) Type I ТуреП Usage/function NC900T NC900T NC9000F ON/OFF of shot/product counter Total hours of automatic operation 7 Molding (mold open/close) error changeover 8 Trendgraph display Trend display of 250 shots for any four of all monitor display items 9 Display of remaining time up to production end Calculate based on cycle time and number of remaining shots 40 Display of multiplelanguage online changeover NC9000F: English, French, Spanish, and Chinese (The optional languages differ according to the area.); NC900T: English. Spanish, and Chinese 41 Molding data changeover function When reading the data by floppy disk from different machine No mold opening operation when a molding error occurs 42 Input/output/analog test 4 Calculator function 44 Pump pressure digital/gauge indication 45 Main data setting screen Display on the screen Main molding data are displayed and set on one screen. Cooling 1 Cooling water distribution valve valve Oil temperature is detected, and cooling water is supplied or stopped via a solenoid valve. emoval of impurities in cooling water 2 Oil temperature stabilizer Cooling water filter 4 Cooling water flow rate indicator (Flow checker) 5 Open type cooling water valve 6 Cooling circuit stop valve 7 Mold cooling water shutoff circuit Cooling water is shut off by solenoid valve when power supply is shut off. 8 Water temperature indicator For confirming temperature of cooling water (ound type) 9 Prevention of dew condensation on hose Operation safety / Hopper 1 larm lamp? larm buzzer Installation of heat insulating material around the hose for prevention of dew condensation Ц ^Ц ^ ^ ^ н Light comes on when an error occurs, and flickers when production is completed or a lot alarm is given. Light comes on when an error occurs, and flickers when production is completed or a lot alarm is given. Indication of molding machine conditions by means of lamp color larm bell Emergency stop button (Operation side) larm lamp with stand 4 evolving indicator lamp 5 Layered indicator lamp (Signal tower) 6 7 8 Emergency stop button (Nonoperation side) 9 Mold clamping safety device 10 Safety door transparent cover (Nonoperation side) Pump motor stops in an emergency. Pump motor stops in an emergency. Mechanical/electrical/hydraulic type 11 Safety door upper cover 12 Safety door lock mechanism (Operation side) 1 utomatic safety door opening/closing 14 utomatic safety door opening Hopper Tank for molding material supply 16 Hopper slider emoval of material remaining in hopper 17 Hopper magnet Suction of iron chips, etc. mixed in material for protection of screw 18 Extension hopper with band Indication of hopper throat temperature 19 20 Indication of hopper throat temperature Control of hopper throat temperature 22 Primary power indication lamp 2 Safety door lock on nonoperation side 24 Highpressure changeover confirmation lamp Motive power / Troubleshooting 1 Pump motor stardelta start * * Increase in hopper capacity by mounting the unit atop the standard hopper nalog display; magnet type 21 Digital display ON/OFF control Mechanical lock * Direct start for 22kW or less; stardelta start for kw or more 2 Change of pump motor capacity * Main power breaker Main power shutoff function 4 Main ground leakage breaker Main power shutoff when leakage of electricity occurs (Main power breaker function included) 14

No. Description of Equipment 1 utomatic purging circuit 14 Screw coldstart prevention: ll points Nozzle backward timer 16 Metering start timer 17 Decompression before metering 18 Purging cover Type I ТуреП NC900T NC900T NC9000F Usage/function Selection of operation and via screen djustment of time from metering completion to nozzle backward djustment of time from injection completion to metering start pplicable to hot runner Shootout prevention of material during purging 19 Purging cover with interlock 20 Nozzle temperature control: Temperature controller and voltage control 21 Nozzle/barrel temperature control: PID control of screen setting 22 Forced heat insulation for nozzle/barrel 2 Hightemperature specifications for barrel Ktype thermocouple only (Other types unacceptable) Changing to insulation control with internal switch on the screen For hightemperature molding д 24 brasion/corrosionproof barrel 25 brasion/corrosionproof screw Standard abrasionproof type, etc. 26 Hydraulic shutoff nozzle Valve pin opening/closing by hydraulic cylinder 27 Spring shutoff nozzle Closing valve pin by spring 28 Color change nozzle 29 Extension nozzle (Length to be specified) 0 Drooling prevention nozzle Back pressure control: Manual valve 1 2 Back pressure control: Digital setting Heater SS control 4 Screw change mode Used in combination Standard abrasionproof type, etc. Extension of land for prevention of drooling. Digital handle type ll points Lowspeed lowpressure operation during change of the screw Control specifications for molding / Production control 1 Shot counter 2 Production control counter Production lot control counter 4 Statistical processing function 5 Monitor display 6 Error history display Number of shots, nondefectives, and defectives (egarding injection error) Setting the number of planned shots for production (larm: Lamp flicker and buzzer) Output from completion of mold opening to completion of molding cycle д Monitor display items: max., min., average, and standard deviation 7 Unscrewing Display on the screen Display on the screen, B, and D operations, etc. 8 ir blow and DH operations, C, and D operations (2circuit) 9 Hydraulic core pull 10 Product takeout interlock terminal 11 Fixed chute Slide type straight chute 12 Swing chute Judging acceptability and separating with special chute (C type) 1 Photoelectric cell type product drop confirmation 14 Photoelectric cell type product residue confirmation Device for detecting remaining products in mold Hour meter externally installed Indicates the total running hours. 16 Clock function 17 Barrel heatup (Calendar timer) 18 Heatup relay operation 19 Hydraulic oil temperature heatup 20 M card 21 M card attachment 22 Floppy disk drive 2 Floppy disk attachment 24 Molding data internal memory 25 Injection velocity/pressure profile display 26 Printer circuit (With connector terminal) utomatic heatup by calendar timer Barrel heater power on relays spare receptacle power on. The oil temperature is heated up to setting value. Molding data memory 1C card: Storage of 7 data in one card The number of cards shown on the left are provided as standard equipment. pcs. 1pc. 1pc. 1 00 molding data or more than 50 standard profiles can be stored in one FD. 0 data ealtime display of injection velocity/pressure profile (NC900T includes metering as well.) Coercial printer can be connected. (Printer specified: Printer available separately.) 27 MCNET (Information management system) 28 Color liquid crystal screen 29 Products distinction monitor 0 Standard profile retaining function Displaying graphics, 16color on 640 x 480 screen in TFT method Distinction based on injection/filling time, injection completion position, injection/filling volume (МС900Г only), and plastlcizing time etaining standard profile data even after operational power supply is turned off. 1 Injection/cooling/intermediate time: 1/100 sec 1 Interface with SPC

NISSEI NISSEI PLSTIC INDUSTIL CO., LTD. HED OFFICE & FCTOY : Sakakimachi, Nagano 89069, Japan [Export Department Sales Section] TEL : 8126810701072 FX : 812681098, 1099 Email: exp@nisseijushi.co.jp * [UL] http://www.nisseijushi.co.jp TOKYO OFFICE : 5th Floor, Yaesu Daibiru, 111 Kyobashi, Chuoku, Tokyo 104001, Japan TEL : 81 281 8881 FX : 812818887 THE EVISED EDITION 10. jn Japan 24 QCT 2Q020N0.T75

ГУ РосНИИИТ и П ссоциация МТК Федеральный информационный фонд отечестенных и иностранных каталого на промышленную продукцию Каталог был предстален на ыстаке «Индустрия пластмасс 2004» Каталог ключен базу данных «Федерального информационного фонда отечестенных и иностранных каталого на промышленную продукцию» Россия,105679, Моска, Измайлоское шоссе, 44, Тел./факс (095)665200,667008, 655445. email:; fkatalog@mail.ru, www.ffpk.ru Электронная копия издания изготолена с целью её ключения базы данных Федерального информационного фонда отечестенных и иностранных каталого на промышленную продукцию, которые формируются соотетстии с Постанолением Праительста РФ от 24 июля 1997 г. 950 и Постанолением Праительста РФ от 1 декабря 1999 г. 2172р и зарегистрироаны Комитетом по политике информатизации при Президенте РФ под 950. 2005 год