Also sold as the Rlaarlo MK-07 V2 Hand-Painted (Dinosaur Themed)
Rlaarlo's MK-07 V2 Brushless RTR is a four-wheel-drive 1/7 crawler with portal axles and a two-speed transmission, sold ready to run with a 4282-2600KV brushless motor and a 140A brushless ESC.
A 15T pinion on the 35T spur and a 12.27:1 drivetrain give 28.64:1 in high range, about 34 mph on a 6S pack, and 53.18:1 in low. It rolls on 145 mm tires. Most crawling happens in low range, so keep high for the easy stretches between obstacles.
The kind of vehicle the maker sells it as. It sets what the car is built to do and which cars it is fair to compare it with.
Crawlers are built for slow, controlled climbing over rocks: very low gearing, flexible suspension and locked axles.
Drive
All four wheels are driven. That gives more grip under power, especially on loose ground.
The cost is more parts to maintain.
A crawler needs every wheel pulling to climb.
Power
A brushless motor has no brushes to wear, so it makes more power and runs more efficiently than a brushed one.
It needs a brushless ESC.
Crawler brushless systems are usually sensored, so the motor turns smoothly from a standstill.
Build
Ready to run: built at the factory with the electronics installed.
Some come without a battery or charger; the maker's box contents say which.
Scale
The maker's nominal size compared with a full-size vehicle. It works more as a class label than a measurement.
A 1/10 monster truck is far bigger than a 1/10 touring car, so compare length and weight for real size.
This one is 700 mm long.
Part number
The maker's product number for this exact version.
A V2, a new color, or a kit instead of an RTR usually has a different number, and parts can differ between them.
Check it against your box or receipt before ordering parts.
Class
Crawler
Drive
4WD
Power
Brushless
Build
Ready to run
Scale
1/7
Part number
MK07P-BS-V2
Drivetrain
Pinion
The small gear on the motor shaft. Fewer teeth gear the car shorter: quicker acceleration, lower top speed and a cooler motor. More teeth do the opposite.
On this car one tooth changes the gearing by about 6.7%.
Crawlers run small pinions for slow, precise wheel speed on climbs; a bigger one is quicker on the trail but harder to control on rocks.
Spur
The large gear the pinion drives. A bigger spur with the same pinion gears the car shorter.
Pinion and spur must have the same pitch, or tooth size, to mesh.
Transmission & axle, high range
Every reduction after the spur, multiplied together: transmission, transfer case and axle gears.
That chain is why a crawler's figure is much higher than other classes'.
It is fixed by the design; the gearing you change is the pinion and spur.
This one is worked out from the tooth counts the maker publishes.
This is the high range, which sets top speed and is what the calculators load first.
Transmission & axle, low range
The same chain in low range: the transmission's second, lower set of gears.
The pinion and spur are shared, so a pinion swap changes both ranges by the same share.
This one is worked out from the low-range final drive the maker publishes.
Spur ÷ pinion
Spur teeth divided by pinion teeth: the part of the gearing that a pinion or spur swap changes.
Here it is 2.333:1.
Final drive, high range
How many times the motor turns for one turn of the wheels. A higher number is shorter gearing: more acceleration and pulling power, less top speed.
Crawlers run far higher ratios than other classes, so the truck can creep and hold on a climb.
This is the high range, which sets top speed and is what the calculators load first.
Final drive, low range
The final drive in low range, where a crawler spends most of its time: slower and stronger, for climbs and fine control.
It is 1.9 times the high range.
Switch the calculators to Low to work in this range.
Range change
This vehicle has a two-speed transmission: a high range for speed and a low range for crawling.
The maker does not say how the range is changed.
Both ranges share the pinion and spur.
Pinion
15TStock
Stock
Spur
35TStock
Stock
Transmission & axle, High range
12.27:1Derived
Derived
Transmission & axle, Low range
22.79:1Derived
Derived
Spur ÷ pinion
2.333:1Calculated
Calculated
Final drive, High range
28.64:1Stock
Stock
Final drive, Low range
53.18:1Stock
Stock
Range change
Two-speedStock
Stock
Wheels & tires
Tire diameter
The outside diameter of the mounted tire, tread to tread. A taller tire covers more ground each turn, which gears the car taller.
Crawler wheels are named by rim size, such as 1.9 or 2.2 inches; that is the wheel, not this tire diameter.
Rollout, high range
How far the car moves for one turn of the motor: tire circumference divided by final drive.
It lets you compare gearing across different tire sizes; more rollout is taller gearing.
Here it is 15.9 mm.
This is the high range, which sets top speed and is what the calculators load first.
Rollout, low range
How far the truck moves for one turn of the motor in low range.
Here it is 8.6 mm.
Tire diameter
145mmStock
Stock
Rollout, High range
15.9mm per motor turnCalculated
Calculated
Rollout, Low range
8.6mm per motor turnCalculated
Calculated
Power
Motor
RPM per volt with no load on the motor. Higher KV spins faster on the same pack; lower KV on more cells can reach the same RPM with less current.
On 6S (22.2 V nominal) this motor spins about 57,720 rpm with no load.
Under load the real RPM is lower.
Battery
The highest LiPo cell count the maker rates the electronics for. Each cell is 3.7 V nominal and 4.2 V fully charged.
6S is 22.2 V nominal and 25.2 V off the charger.
Running more cells than this risks the ESC and motor.
Many cars also run on fewer cells, only slower.
Stock motor
The motor fitted at the factory, as the maker names it.
In a name like 4282, the digits usually give the can size: 42 mm across and 82 mm long. A bigger can makes more torque and sheds heat better.
Stock ESC
The electronic speed control. It feeds power from the battery to the motor as you work the throttle, and usually powers the receiver and servo too.
An amp figure in its name is normally the maker's continuous rating.
Crawler ESCs usually have a strong drag brake, which holds the truck still on a slope when you let off the throttle.
Set its low-voltage cutoff for LiPo, so a pack is not run flat.
Motor
2600KVStock
Stock
Battery
Up to 6SLiPoStock
Stock
Stock motor
4282-2600KV brushless motorStock
Stock
Stock ESC
140A brushless ESCStock
Stock
Performance
Theoretical top speed, low range
The same no-load ceiling in low range: how fast the truck crawls at full throttle.
Low range trades that speed for pulling power and control.
Theoretical top speed, high range
Motor RPM times rollout, worked out on 6S at nominal voltage with stock gearing.
It assumes no load, no battery sag, no wheel slip and no drag, so read it as a ceiling for comparing setups.
On a crawler it matters little: the gearing is chosen for control on climbs.
This is the high range, which sets top speed and is what the calculators load first.
Motor speed
The motor's RPM with no load: KV times pack voltage.
Under load it drops, which is one reason real speed is lower than the theoretical figure.
Theoretical top speed, Low range
18.4mph on 6SCalculated
Calculated
Theoretical top speed, High range
34.2mph on 6SCalculated
Calculated
Motor speed
57,720rpm, no loadCalculated
Calculated
Size & weight
Length
Overall length as the maker states it, usually with the body fitted.
Useful for comparing real size, since scale labels are loose.
Width
Overall width as the maker states it, usually with the body fitted.
A wider car is more stable in corners and harder to roll over.
Height
Overall height as the maker states it, usually with the body fitted.
Useful when checking it fits a shelf, a bag or a car trunk.
Wheelbase
The distance between the front and rear axle centers. A longer wheelbase is steadier at speed and over bumps; a shorter one turns more tightly.
On a crawler it also decides how well the truck clears a ledge without the chassis catching.
Length
700 mm27.6 inStock
Stock
Width
325 mm12.8 inStock
Stock
Height
340 mm13.4 inStock
Stock
Wheelbase
439 mm17.3 inStock
Stock
How to read these figures
Stock is as the vehicle ships.
Calculated is worked from the stock figures on this page rather than stored beside them, so the two cannot drift apart.
Derived is worked out from gear tooth counts the maker publishes rather than printed as a ratio; the notes below say how.
The top speed is kinematic: an ideal no-load RPM with no slip and no loss under load, so a real car is slower.
Rlaarlo's manual (p. 11) prints a 15T motor pinion, a 35T deceleration gear, a 16T/30T secondary stage, a 20T/20T pair in high, an 11T/36T differential and a 15T/30T gate-bridge (portal) stage.
That gives 12.27:1 after the spur and 28.64:1 overall in high, worked out from the tooth counts because the maker prints no total.
The low range uses a 14T/26T pair for about 53.2:1 overall.
The tire is 145mm in diameter and 54mm wide.
The motor is a 4282 2600KV on a 140A ESC rated for 2S to 6S.
On 6S the theoretical top speed is about 34 mph at 3.7V per cell, and the top of Rlaarlo's 6S band (62 km/h) matches the no-load speed at 4.2V per cell.
Rlaarlo prints bands (16 to 31 km/h on 3S, 33 to 62 km/h on 6S) and no single top-speed claim, so none is shown.
Rlaarlo's announcement of the brushless version also names a 15T pinion, a 35T spur, and a 36T differential gear with an 11T output gear.
Sources
Every figure on this page traces to one of these; where they disagreed, the note above says which was used and why. Links open in a new tab.