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The global market for precision
gearboxes and geared motors used in mobile robots is predicted to have a CAGR
of 45.9% out to 2028, this large growth will far outperform the wider
automation market, says Jonathan Sparks,
Research Anayst, Interact Analysis.
The global precision gearbox and geared motors
market is expected to generate revenue of $3.4 billion in 2024, which is up
2.9% from 2023. However, over the next five years we predict a steady growth
rate of 7.9%, with 2025 expected to be a strong rebound year and offering the
biggest annual growth (10.2%).
This is expected to drive growth in the global precision gearbox and geared motors, which is forecast to increase from $3.3 billion in 2023 to $4.8 billion in 2028, with a compound annual growth rate (CAGR) of 7.9%. The largest growth overall is attributed to planetary precision gearboxes and geared motors, where we anticipate a CAGR of 10.2%, taking revenue from $1 billion in 2023 to nearly $1.8 billion in 2028.
Global precision gearboxes and geared
motors has growth of 7.9% over the next 5 years
Definitions are provided below for coaxial
planetary precision gearboxes and geared motors, both of which are covered in
this insight and also in the ‘Precision Gearboxes and Geared motors 2024 report’,
from which the data and analysis outlined here is taken:
Coaxial Planetary Precision Gearboxes: These comprise of a sun gear,
planetary gears & carrier; and satellite gear. Examples include the CP series (Wittenstein) and P series (Stoeber).
Coaxial Planetary Precision Geared
Motors: A combination
of planetary gearbox and servo motor. Examples include the PS.F series (SEW Eurodrive) and SIMOTICSS-1FK2 (Siemens).
Planetary gearboxes do not offer the highest levels
of precision, found with devices such as strainwave and cycloidal precision
gearboxes (which most commonly have a backlash of <1 arc minute). However,
they still have very low backlash ratings, which make them a cheaper and
efficient alternative, especially in mobile robots where the “smoothness” of
their acceleration and motion can be a benefit.
The mobile robot market has continued to outperform
most other industries in recent years and the growth and appetite does not seem
to be as heavily affected by the slowdowns felt in other industries. Our
forecast for the mobile robots market has dampened from previous years, but we
still expect to see consistent growth of between 30-50% out to 2028.
Planetary gearboxes and geared motors will continue
to benefit from this substantial growth. With all major regions showing
significant growth out to 2028, we predict Japan will benefit from the highest
CAGR (60.2%), followed by the Americas (49.5%), APAC (44.3%), and then EMEA
(42.3%).
We forecast the global market for precision
gearboxes and geared motors in the mobile robots market to grow from $129
million in 2023 to over $850 million in 2028.
Precision gearbox and geared motors to
benefit from continued growth in the mobile robots industry
Fixed industrial
robots and co-bots
While mobile robots offer by far the strongest
growth potential for precision gearboxes and geared motors, it would be remiss
not to discuss the industrial robots industry, as this is by far the most
important largest user of precision gearboxes. Prior to a slowdown in 2022 and
2023, industrial robots and collaborative robots experienced strong growth and
this led to strong growth for the precision gearbox and geared motors market.
The global market for precision gearboxes used in
industrial robots was worth just over $1 billion in 2023, and we forecast this
will grow to over $1.3 billion (with a CAGR of 5.5%) for the period to 2028.
Once one of the biggest growth industries for precision geared products, we now
believe that the global market for industrial robots and co-bots has slowed
considerably since 2022.
Most industrial robots consume 6 precision
gearboxes, with larger axes serving bigger payloads generally consuming
cycloidal gearboxes, and the smaller axes and lower payloads consuming
strainwave gearboxes. If substantial growth returns in this industry in the
future it will stimulate sharp growth once again in the overall precision
gearbox and geared motors market.
Definitions are provided below for coaxial cyloidal
and coaxial strainwave precision gearboxes and geared motors, both of which are
covered in this insight and also in the Precision Gearboxes and Geared motors
2024 report, from which the data and analysis outlined here is taken:
Coaxial Cycloidal Precision Gearboxes: These comprise of an input
shaft, an eccentrically mounted bearing, a cycloidal disc (or discs), ring pins
and output rollers and shaft. Examples include RDS-E (Nabtesco) and the TS series (Spinea).
Coaxial Strain Wave Precision
Gearboxes: These comprise of a rigid circular spline, flexible internal
spline and wave generator; also referred to as harmonic gearboxes. Examples
include CSG-2UH (Harmonic Drive) and Flexwave (Nidec).
Industrial robots are the largest industry
for precision gear products, but for how long?
Although precision geared products still remain
tightly aligned with the industrial robots industry, it is clear that mobile
robots offer the largest growth potential currently for this market. Companies
active in the planetary gearbox market will have the best exposure to this as
they are the main gearbox type utilised by the mobile robot market.
One final thought, however, is this; if humanoid
robots find a place in industry, then this could also serve as a large
potential growth driver for precision gearboxes – as it’s believed that even
the simplest humanoid robots would likely utilise a minimum of approximately 30
precision gearboxes (although some other humanoid robots currently in
development are cited to have closer to 80 precision gearboxes inside). What
products will be best suited to this application and which companies will be
able to win in this market still remains to be seen.
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About the author
Jonathan Sparkes
is the Research Analyst at Interact Analysis. A thoroughly professional,
analytical, and highly educated researcher, Jonathan gained his analysis and
modelling skills from a Bsc in Mathematics. He works in our industrial
automation sector with a focus on machine vision and is particularly interested
in how technology can be used to improve systems.
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