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Tadano electronic LOAD MOMENT INDICATOR system
(AML-E2) including:

•  Control lever lockout function with audible and visual 

pre-warning

•  Number of parts of line

•  Boom position indicator

•  Outrigger state indicator

•  Slewing angle

•  Boom angle / boom length / jib offset angle / jib length / 

load radius / rated lifting capacities / actual loads read out

•  Potential lifting height

•  Ratio of actual load moment to rated load moment 

indication

•  Automatic Speed reduction and slow stop function on 

boom elevation and slewing

•  Working condition register switch

•  Load radius / boom angle / tip height / slewing range preset 

function

•  External warning lamp

•  Tare function

•  Main Hydraulic oil pressure

•  Fuel consumption monitor

•  Main winch / auxiliary winch select

•  Drum rotation indicator (audible and visible type) main and 

auxiliary winch

•  On rubber indicator

TADANO AML-E2 monitors outrigger extended length and 

automatically programs the corresponding "RATED LIFTING 

CAPACITIES" table.

Operator's right hand console includes transmission gear 

selector, slewing lock lever and sight level bubble.  

Upper console includes,  

roof washer and wiper switch,

emergency outrigger set up key switch, 

jib equipped / removed select switch, 

high speed winch (main / aux) switch, Cab tilt switch, 

Pump disconnect enable switch and boom emergency 

telescoping switch (2nd and 3rd-top). 

NOTE: Each crane motion speed is based on unladen conditions.

CARRIER SPECIFICATIONS

TYPE

 - Rear engine, left hand steering, driving axle 2-way

selected type by manual switch, 4 x 2 front drive, 4 x 4 front and 

rear drive.

FRAME

 - High tensile steel, all welded mono-box construction.

TRANSMISSION

 - Electronically controlled full automatic 

transmission. Torque converter driving full powershift with

driving axle selector. 6 forward and 2 reverse speeds, constant 

mesh.

3 speeds - high range - 2 wheel drive; 4 wheel drive

3 speeds - low range - 4 wheel drive

 

TRAVEL SPEED

 - 22 mph (36 km/h)

GRADEABILITY (tan

θ

)

 - 93% (at stall), 57%*

* Machine should be operated within the limit of engine

crankcase design (30°: Cummins B6.7)

AXLE

 - Front: Full floating type, steering and driving axle with 

planetary reduction. Rear: Full floating type, steering and driving 

axle with planetary reduction and non-spin rear differential.

STEERING

 - Hydraulic power steering controlled by steering 

wheel. Four steering modes available: 2 wheel front, 2 wheel 

rear, 4 wheel coordinated and 4 wheel crab.

SUSPENSION

 - Front: Rigid mounted to frame. Rear: Pivot

mounted with hydraulic lockout device.

BRAKE SYSTEMS

 - Service: Air over hydraulic disc brakes on

all 4 wheels. Parking / Emergency: Spring applied-air released

brake acting on input shaft of front axle. Auxiliary: Electro-

pneumatic operated exhaust brake.

TIRES

 - 29.5-25 36PR (OR)  Air pressure: 68 psi (470 kPa)

              29.5-25 40PR (OR)  Air pressure: 67 psi (465 kPa)

OUTRIGGERS

- Four hydraulic, beam and jack outriggers.

Vertical jack cylinders equipped with integral holding valve. Each

outrigger beam and jack is controlled independently from cab.

Beams extend to 23' 11-3/8" (7.3 m) center-line and retract to

within 10' 10-1/2" (3.315 m) overall width with floats. Outrigger

jack floats are attached thus eliminating the need of manually

attaching and detaching them. Controls and sight bubble located

in superstructure cab. Four outrigger extension lengths are

provided with corresponding "RATED LIFTING CAPACITIES" for

crane duty in confined areas.

Min. Extension 8' 10-1/4" (2.7 m) center to center

Mid. Extension 18' 1/2" (5.5 m) center to center

Mid. Extension 21' 11-3/4" (6.7 m) center to center

Max. Extension 23' 11-3/8" (7.3 m) center to center

Float size (Diameter) 1' 11- 5/8" (0.6 m)

ENGINE

Model

 

Cummins B6.7

Type 

Direct injection diesel

No. of cylinders 

6

Combustion 

4 cycle, turbo charged and after cooled

BoreXStroke, in. (mm) 

4.212 X 4.882 (107 X 124)

Displacement, cu. in (liters)  409 (6.7)
Air inlet heater 

24 volt preheat

Air cleaner 

Dry type, replaceable element

Oil filter 

Full flow with replaceable element

Fuel filter 

Full flow with replaceable element

Fuel tank, gal. (liters) 

79.2 (300), right side of carrier

Cooling 

Liquid pressurized, recirculating by-pass

Radiator  

Fin and tube core, thermostat controlled

Fan, in. (mm)  

Suction type, 9-blade, 28 (711) dia.

Starting  

24 volt

Charging  

24 volt system, negative ground

Battery 

  

2-120 amp. Hour

Compressor, air, CFM (l /min)

 

17.0 CFM (481) at 2,400 rpm

Output, Max. HP (kW) 

 

Gross 280 (209) at 2,200 rpm

Torque, Max. ft-lb (Nm)  

850 (1,152) at 1,500 rpm

Capacity, gal. (liters)

Cooling water  

2.7 (10)

Lubrication  

4.0 (15)

Fuel 

 

79.2 (300)

DEF/AdBlue 

 

15.0 (57)

Form No. GR-900-4-00101/US-02

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3

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Courtesy of CraneMarket.com 

Содержание GR-900XL-4

Страница 1: ...3 32 Meters GR 900XL 4 90 Ton 81 7 Metric Ton Capacity HYDRAULIC ROUGH TERRAIN CRANE Specifications are subject to change without notice DIMENSIONS 1 15 9 4 790 SMART CW2 8 3 15 16 2 538 Min 39 4 Max 154 2 12 000 47 000 13 9 4 190 SMART CW 1 12 5 13 16 3 805 10 10 1 2 3 315 28 1 13 16 8 580 47 2 14 375 26 3 3 4 8 020 7 10 5 8 2 405 12 11 1 2 3 950 23 11 3 8 7 300 21 11 3 4 6 700 18 1 2 5 500 8 10 1...

Страница 2: ...ake and counterbalance valve Controlled independently of main winch Equipped with cable follower and drum rotation indicator DRUM Grooved 14 1 4 0 362 m root diameter x 26 13 16 0 681 m wide Wire rope 456 of 3 4 diameter rope 139 m of 19 mm Drum capacity 1135 346 m 7 layers Maximum single line pull 1st layer 20 000 lbs 9 090 kg Maximum permissible line pull wire strength 14 600 lbs 6 600 kg WIRE R...

Страница 3: ...ith planetary reduction and non spin rear differential STEERING Hydraulic power steering controlled by steering wheel Four steering modes available 2 wheel front 2 wheel rear 4 wheel coordinated and 4 wheel crab SUSPENSION Front Rigid mounted to frame Rear Pivot mounted with hydraulic lockout device BRAKE SYSTEMS Service Air over hydraulic disc brakes on all 4 wheels Parking Emergency Spring appli...

Страница 4: ...riggers Four outrigger extension positions Self storing outrigger pads Electronic controlled automatic transmission driven by torque converter 4 X 4 X 4 drive steer Non spin rear differential Automatic rear axle oscillation lockout system 29 5 25 36 PR tires 29 5 25 40 PR tires Disc brakes Water separator with filter high filtration Back up alarm 24 volt electric system Tool storage compartment Tire...

Страница 5: ...8 1 7 1 6 2 7 3 6 3 5 4 6 6 5 6 4 7 5 0 4 1 4 4 3 5 3 9 3 0 27 2 19 5 13 5 10 9 8 0 6 0 3 4 99 9 77 1 6 0 20 5 0 40 30 7 0 8 0 10 0 NOTE Boom geometry shown is for unloaded condition and machine standing level on firm supporting surface Boom deflection and subsequent radius and boom angle change must be accounted for when applying load to hook When boom length is same as telescoping mode 1 and 2 it ...

Страница 6: ... 7 0 6 0 5 1 5 3 4 5 4 7 3 9 4 2 3 3 28 3 20 2 14 1 11 4 8 4 6 3 3 7 101 5 78 3 20 40 30 10 0 9 8 1 6 5 2 0 2 3 3 3 3 3 3 1 8 3 3 3 3 Axis of Rotation BOOM SINGLE TOP NOTE Boom geometry shown is for unloaded condition and machine standing level on firm supporting surface Boom deflection and subsequent radius and boom angle change must be accounted for when applying load to hook When boom length is s...

Страница 7: ...3 3 5 0 3 8 7 4 0 1 39 4 3 1 5 3 3 3 3 5 5 4 0 1 4 2 5 5 8 7 59 9 4 0 1 3 5 5 4 2 5 8 1 5 1 0 0 8 9 0 2 1 0 2 5 1 8 0 60 8 3 6 4 1 3 2 2 8 Axis of Rotation BOOM SINGLE TOP NOTE Boom geometry shown is for unloaded condition and machine standing level on firm supporting surface Boom deflection and subsequent radius and boom angle change must be accounted for when applying load to hook When boom length...

Страница 8: ...porting surface Boom deflection and subsequent radius and boom angle change must be accounted for when applying load to hook Axis of Rotation JIB 230 154 2 47 0 m 200 190 210 220 160 150 10 20 30 40 50 60 70 80 90 100 110 120 130 140 170 180 154 2 47 0 m 33 2 10 1 m 154 2 47 0 m 58 1 17 7 m 180 190 170 160 130 10 20 30 40 50 60 70 80 140 90 100 110 120 150 Unit klbs Load Radius from Axis of Rotatio...

Страница 9: ... supporting surface Boom deflection and subsequent radius and boom angle change must be accounted for when applying load to hook Axis of Rotation JIB 230 190 180 154 2 47 0 m 10 20 30 40 50 60 70 80 90 150 120 110 100 90 140 80 70 60 50 40 30 20 10 130 160 170 154 2 47 0 m 58 1 17 7 m 154 2 47 0 m 33 2 10 1 m 180 170 140 130 120 110 100 150 160 220 210 190 200 Unit klbs Load Radius from Axis of Rot...

Страница 10: ...level on firm supporting surface Boom deflection and subsequent radius and boom angle change must be accounted for when applying load to hook Axis of Rotation JIB 230 154 2 47 0 m 58 1 17 7 m 154 2 47 0 m 33 2 10 1 m 170 160 130 10 20 30 40 50 60 70 80 140 90 100 110 120 150 180 170 140 130 120 110 100 90 80 70 60 50 40 30 20 10 150 160 220 210 190 200 154 2 47 0 m 180 190 Unit klbs Load Radius from...

Страница 11: ...to 154 2 20 8 m to 47 m 1 2 4 2 4 1 8 Single top jib 1 2 1 Boom length in feet meters Telescoping mode Number of parts of line 102 500 180 000 102 500 90 200 40 100 157 900 102 500 90 200 40 100 132 300 102 500 90 200 40 100 42 500 35 500 99 900 99 300 81 500 40 100 42 500 35 500 40 100 33 300 35 500 32 200 77 100 76 300 68 500 40 100 42 500 35 500 40 100 33 300 35 500 32 200 33 300 32 200 59 600 ...

Страница 12: ...15 700 17 700 16 100 14 800 16 500 16 100 15 800 11 800 15 900 12 800 16 200 13 500 16 400 14 000 13 800 14 300 15 000 14 400 10 100 14 100 11 000 14 400 11 700 14 600 12 100 12 700 12 500 13 600 12 700 9 400 12 700 10 100 13 000 10 500 11 800 10 900 12 000 11 100 8 100 11 400 8 700 11 600 9 200 11 000 9 500 10 600 9 800 7 600 10 400 8 000 10 300 8 300 9 500 8 600 6 500 9 300 7 000 9 500 7 300 8 4...

Страница 13: ... 900 14 800 16 700 16 100 15 800 14 700 18 900 15 700 18 500 16 400 16 500 16 500 13 800 15 300 15 000 14 400 12 700 16 800 13 600 17 100 14 200 15 400 14 700 12 700 14 100 14 000 13 200 11 800 15 200 12 500 14 500 12 900 11 800 13 000 13 100 12 200 10 300 13 600 10 900 13 600 11 400 11 000 11 700 12 300 11 200 9 600 12 500 10 000 10 300 10 300 11 500 10 400 8 400 11 300 8 900 9 600 9 200 10 300 9...

Страница 14: ...00 8 800 7 500 7 900 8 200 7 900 7 000 7 100 7 700 6 900 8 100 6 700 7 100 7 800 7 800 7 400 8 300 7 100 7 000 7 800 7 500 6 100 6 700 6 800 6 500 7 100 6 400 6 200 7 100 6 900 7 000 7 300 6 800 6 100 6 900 7 200 5 400 6 300 5 900 6 100 6 200 6 000 5 500 6 300 6 100 6 600 6 500 6 500 5 400 6 100 6 600 4 700 6 000 5 200 5 800 5 400 5 700 4 800 5 600 5 400 6 200 5 700 6 200 4 700 5 400 5 800 4 100 5...

Страница 15: ... 7 100 7 400 7 800 7 500 6 500 6 700 7 100 6 500 7 500 6 400 6 600 7 300 7 300 7 000 7 700 6 800 6 600 7 400 7 200 5 700 6 300 6 300 6 100 6 600 6 000 5 800 6 700 6 500 6 600 6 800 6 500 5 800 6 500 6 800 5 000 6 000 5 500 5 800 5 800 5 700 5 100 6 000 5 700 6 300 6 000 6 200 5 100 5 800 6 200 4 400 5 600 4 800 5 500 4 500 5 400 5 000 5 800 5 300 5 900 4 500 5 100 5 400 3 800 5 300 4 200 5 200 3 9...

Страница 16: ...00 8 800 6 500 8 600 6 400 8 300 7 300 8 600 7 000 8 600 6 800 7 900 7 400 7 200 7 300 6 300 7 900 6 100 8 200 6 000 7 400 6 900 8 000 6 600 8 100 6 500 7 400 7 100 6 800 6 500 6 000 7 000 5 800 7 300 5 700 6 600 6 600 7 200 6 300 7 500 6 200 6 700 6 700 6 500 5 800 5 600 6 300 5 500 5 900 6 200 6 400 6 000 6 700 5 900 6 000 6 400 6 200 5 200 5 300 5 600 5 200 5 300 5 900 5 700 5 700 5 900 5 600 5...

Страница 17: ...the mounting position of the counterweight SMART CW 1 status SMART CW 2 status SMART CW 1 Counterweight is mounted at the front SMART CW 2 Counterweight is mounted at the rear 13 9 4 190 mm 15 9 4 790 mm Form No GR 900 4 00101 US 02 17 Courtesy of CraneMarket com ...

Страница 18: ...ting capacities of the next longer and next shorter booms for the same radius The lesser of the two rated lifting capacities shall be used When making lifts at a load radius not shown use the next longer radius to determine allowable capacity Load per line should not exceed 14 600 lbs 6 600 kg for main winch and auxiliary winch Check the actual number of parts of line with LOAD MOMENT INDICATOR AM...

Страница 19: ... 200 6 000 5 000 4 100 3 400 2 800 A B 39 4 12 m 68 1 Over front 20 8 m 82 4 25 1 m 96 8 29 5 m 12 15 20 25 30 35 40 45 50 55 60 65 70 75 80 85 Telescoping mode 2nd Boom 0 0 0 0 3rd Boom 0 33 50 67 4th Boom 0 33 50 67 Top Boom 0 33 50 67 1 2 2 2 2 1 2 2 2 2 1 2 2 2 2 B 32 4 12 m 15 500 B 60 8 20 8 m 6 500 B 74 9 25 1 m 4 100 B 88 9 29 5 m 2 700 A C 39 4 68 1 82 4 96 8 0 B 32 4 12 m 5 300 39 4 0 CO...

Страница 20: ...900 5 400 5 800 3 500 4 100 4 400 2 400 3 000 3 300 1 600 2 000 2 400 51 900 42 600 31 600 32 200 28 400 24 300 27 000 27 500 24 700 19 000 21 700 22 200 22 600 17 700 18 200 18 600 14 600 15 100 15 500 12 100 12 700 13 000 10 100 10 600 11 000 8 400 9 000 9 300 7 000 7 500 7 800 6 200 6 500 5 200 5 500 4 300 4 600 3 800 3 200 1 2 2 2 2 1 2 2 2 2 1 2 2 2 2 D 0 0 29 37 D D 0 B 32 4 12 m 16 600 B 60...

Страница 21: ... the outrigger state select key to register for the on rubber operation Each time the outrigger state select key is pressed the display changes Select the creep operation the on rubber state indicator symbol lights up Press the lift state select key to register the lift state However pay attention to the following 1 For stationary operation The front capacities are attainable only when the over fr...

Страница 22: ...MEMO Courtesy of CraneMarket com ...

Страница 23: ...MEMO Courtesy of CraneMarket com ...

Страница 24: ...TADANO AMERICA CORPORATION 4242 West Greens Road A S U 6 6 0 7 7 s a x e T n o t s u o H 0 3 0 0 9 6 8 1 8 2 E N O H P 0 4 0 0 9 6 8 1 8 2 X A F http www tadanoamerica com Powered by TCPDF www tcpdf org Courtesy of CraneMarket com ...

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