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FPG Compact Planetary Gearbox

Compact planetary reducer family for general precision automation where size, ratio and cost must be balanced.

Description

Compact planetary reducer family for general precision automation where size, ratio and cost must be balanced.

FPG Compact Planetary Gearbox

Construction and engineering scope

The compact coaxial format combines a motor adapter, planetary reduction stage(s) and shaft output in a short package.

Planetary gear interface data required for engineering review

Additional engineering views

Open planetary drive cutaway showing the internal ring gear and carrier area
Open cutaway view for discussing ring gear, carrier support and internal load path.
Open planetary gearbox housing showing internal gears and supported shafts
Open housing view used to explain internal gearing, bearing support and service identification.

Technical parameters

Frames FPG040 / 060 / 080 / 120 / 160 plus FPGA variants
Ratios 3:1 to 100:1
Rated torque approximately 9–423 N·m by frame and ratio
Backlash standard family values around 8–10 arcmin
Efficiency catalogue ≥97% one stage; ≥94% two stage
Protection IP64

Values shown are transcribed from the normalized internal planetary gearbox catalogue data for the referenced family. Final selection must be checked against the approved model and motor interface.

Applications and selection

Check rated/peak torque, ratio, input speed, desired backlash, shaft load and motor shaft/flange dimensions.

Customization options

Engineering review can cover tooth count and ratio, spur or helical geometry, material and heat treatment, motor or shaft interface, output flange or spline, bearing arrangement, lubrication, sealing, backlash class and inspection documentation. Features are confirmed against the approved drawing rather than assumed from a similar model.

Installation and maintenance

Check shaft alignment, pilot fit, fastener grade and tightening method before commissioning. Do not exceed the confirmed continuous or peak torque, radial load, axial load or input speed. For replacement work, verify the mounting drawing and output interface before ordering.

Quality and inspection

Inspection planning can include material traceability, hardness, tooth geometry, runout, dimensional inspection and assembly checks according to the RFQ and approved quality plan. Ask for the required inspection level before quotation.

FAQ

Can you manufacture from a drawing or sample?

Yes, the engineering review can start from a drawing, sample, tooth data or a complete gearbox identification. Final feasibility is confirmed after dimensional and material review.

What information is needed for a replacement?

Send model or nameplate, quantity, ratio, motor or input speed, output torque or duty, shaft/flange dimensions, mounting drawing and clear photos. For individual gears, add tooth count, module or DP, pressure angle, face width and material/heat-treatment requirements if known.

RFQ checklist: product/model, quantity, application, ratio or tooth data, continuous and peak torque, input speed, backlash target, material/heat treatment, interface drawing and inspection requirements. Email [email protected].