Linear and specialty actuators

Not every robot moves with a rotating motor. Linear actuators push and pull, hydraulics and pneumatics deliver force that electric motors struggle to match, and smart materials such as shape memory alloy and piezoelectric ceramics make insect-scale robots possible.

Comparison table

UnitPriceForceSpeedWeightStatus
Actuonix L16 micro linear actuator (L16-P / L16-S / L16-R)$70 – $8050–200 N at 12 V8–32 mm/s56–84 gAvailable
Actuonix P16 mini linear actuator (P16-P / P16-S / P16-R)$80 – $9050–300 N at 12 V4.8–46 mm/s95–125 gAvailable
Actuonix PQ12 micro linear actuator (PQ12-P / PQ12-S / PQ12-R)$65 – $7018–50 N10–28 mm/s19–21 gAvailable
Progressive Automations PA-14 mini linear actuator$119.99 – $180.99156–667 Nup to 51 mm/s0.68 kg and upAvailable
Harmonic Drive CSF / CSD strain wave gear (component sets)Quote onlyrotary (torque-rated)up to 3,500 rpm inputCSF-14 component set 0.09 kgAvailable
Hydraulic servo actuators for legged robots (Moog Integrated Smart Actuator reference)Not sold publicly4,000–7,500 N–ISA v2 920 gResearch only
Festo Fluidic Muscle DMSPabout $322630–6,000 N by size–base 58 gAvailable
Soft pneumatic actuators (PneuNets bending actuator and mGrip soft fingers)DIY materials costup to 10 kg payload (mGrip)––Available
Shape memory alloy wire (Dynalloy Flexinol)$5 – $12 per meter0.09–35 N pull by wire sizeabout 1 s to contract–Available
Piezoelectric bimorph bending actuators (Thorlabs PB4NB2W reference)$66.54 – $123.371.4–13 N blocking370–930 Hz resonance–Available
Clone Robotics Myofiber artificial muscleNot soldabout 10 N per fiberunder 50 ms response–Announced
Series elastic actuators (HEBI T-Series and legacy X-Series)from $3,000rotary (torque-rated)11–110 rpm450 g – 1.5 kgAvailable

Actuonix L16 micro linear actuator (L16-P / L16-S / L16-R)

Actuonix Motion Devices (Canada) · Available · $70 – $80

Actuonix store, October 2026 check. L16-S and L16-R $70.00, L16-P (potentiometer feedback) $80.00. Some configurations on back order.

The L16 is a rod-style miniature linear actuator with a brushed motor and lead screw in a rectangular body, which Actuonix says it designed in the late 2000s. It comes in three control styles (limit switches, raw potentiometer feedback, or a built-in RC servo controller) across several stroke lengths and three gear ratios. Actuonix, formerly Firgelli Technologies (unconfirmed), states on the product page that the L16 design was copied by a competitor and that fake variants are sold online.

Force
50 N (35:1), 100 N (63:1), 200 N (150:1) max lifted force at 12 V. Peak power points 50 N @ 16 mm/s, 75 N @ 10 mm/s, 175 N @ 4 mm/s
Speed
32 mm/s (35:1), 20 mm/s (63:1), 8 mm/s (150:1) no load
Weight
56 g (50 mm stroke), 74 g (100 mm), 84 g (140 mm)
Size
118 / 168 / 208 mm closed length hole to hole for 50 / 100 / 140 mm stroke
Voltage
12 V DC for -P and -S, 6 V DC for -R
Current
stall 650 mA at 12 V
Gearing
35:1, 63:1 or 150:1 spur gearing to a lead screw
Motor
brushed PMDC
Feedback
-P has a linear potentiometer (6/11/16 kΩ by stroke, under 2% linearity), repeatability 0.3–0.5 mm with the LAC board
Interface
-S two-wire polarity reversal with end-of-stroke limit switches. -P five-wire with analog position output. -R standard RC servo pulse (1.0 ms retracts, 2.0 ms extends), compatible with the Arduino Servo library and VEX controllers
Range
50, 100 or 140 mm stroke in the datasheet, and the store page also lists a 30 mm version
Other
Backdrive force 31 / 46 / 102 N by gear ratio, so it holds position unpowered up to that load. 20% max duty cycle, IP-54, 0.25 mm backlash, 250 N max static force, max side load 40 / 30 / 20 N extended by stroke, 60 dB at 45 cm
Good for

Small push-pull motions that need more force than a hobby servo can give through a linkage, such as grippers, hatches and steering on mid-size hobby robots. The -R version drops into any RC or Arduino servo socket.

Not good for

Fast or continuous motion, since speed tops out at 32 mm/s and duty cycle is limited to 20%. The lead screw is not designed to be backdriven for compliant or force-controlled joints.

Actuonix states its linear servos are legal in FIRST Robotics Competition and FIRST Tech Challenge.

Sources L16 datasheet (Actuonix) ↗ · Actuonix L16 store page ↗
Buying Actuonix online store, which ships worldwide from Victoria, BC, Canada. In-stock items ship within 1–2 days, Monday to Friday, with a 1 PM Pacific cutoff, and shipping is charged at Actuonix's discounted cost. US orders under $800 ship by DHL, UPS Express takes 1–2 days to the US, and import duties are not included.

Actuonix P16 mini linear actuator (P16-P / P16-S / P16-R)

Actuonix Motion Devices (Canada) · Available · $80 – $90

Actuonix store, October 2026 check. P16-S $80.00, P16-P $90.00. P16-R is a P16-P sold with an external RC control board and needs its own power supply, bundle price not listed.

The P16 is Actuonix's mini actuator built with a planetary gearbox and a motor mounted beside the screw rather than in line. The datasheet highlights higher cycle life than its other models thanks to sealed stainless bearings and a stainless lead screw. The 256:1 version is effectively non-backdrivable, holding over 500 N unpowered.

Force
50 N (22:1), 90 N (64:1), 300 N (256:1) max lifted force at 12 V. Peak power points 40 N @ 26 mm/s, 80 N @ 9 mm/s, 250 N @ 2.5 mm/s
Speed
46 mm/s (22:1), 18 mm/s (64:1), 4.8 mm/s (256:1) no load
Weight
95 g (50 mm stroke), 110 g (100 mm), 125 g (150 mm), 140 g (200 mm)
Size
97 / 147 / 197 / 247 mm closed length hole to hole for 50 / 100 / 150 / 200 mm stroke
Voltage
0–15 V DC, rated at 12 V
Current
stall 1000 mA at 12 V
Gearing
22:1, 64:1 or 256:1 planetary gearbox, stainless steel lead screw
Motor
brushed DC
Feedback
-P has a linear potentiometer (6–23 kΩ by stroke, under 2% linearity), repeatability 0.3–0.8 mm with the LAC board
Interface
-S two-wire polarity reversal with limit switches, -P five-wire with position output, -R RC servo pulse through an external control board that needs a separate power supply
Range
50, 100, 150 or 200 mm stroke
Other
Side-by-side (parallel) motor layout makes it shorter than an L16 of the same stroke. Backdrive force 75 N / 200 N / over 500 N by ratio. 20% max duty cycle, IP-54, 0.3 mm backlash, 500 N max static force, sealed stainless bearings, glass-filled nylon housing, 62 dB at 45 cm
Good for

The strongest of the Actuonix miniature line, suited to small lifts, leg or tail mechanisms and tilt platforms that need up to 300 N in a compact package with a long cycle life.

Not good for

Speed, since the strong 256:1 version moves under 5 mm/s. Side loads above 4–20 N need an external guide.

Sources P16 datasheet (Actuonix) ↗ · Actuonix P16 store page ↗
Buying Actuonix online store, which ships worldwide from Victoria, BC, Canada. In-stock items ship within 1–2 days, Monday to Friday, with a 1 PM Pacific cutoff, and shipping is charged at Actuonix's discounted cost. US orders under $800 ship by DHL, UPS Express takes 1–2 days to the US, and import duties are not included.

Actuonix PQ12 micro linear actuator (PQ12-P / PQ12-S / PQ12-R)

Actuonix Motion Devices (Canada) · Available · $65 – $70

Actuonix store, October 2026 check. PQ12-P and PQ12-S $65.00, PQ12-R linear servo $70.00.

Actuonix bills the PQ12 as the original micro linear actuator, a complete gear motor, lead screw and position sensor in a package of about 20 g. The -R variant replaces a standard RC servo directly, with a 1 ms pulse fully extending it and 2 ms fully retracting it. The datasheet lists 19 g for the -P and -S and 21 g for the -R.

Force
18 N (30:1), 45 N (63:1), 50 N (100:1) max lifted force. Peak power points 15 N @ 15 mm/s, 30 N @ 8 mm/s, 40 N @ 6 mm/s
Speed
28 mm/s (30:1), 15 mm/s (63:1), 10 mm/s (100:1) no load
Weight
19 g (P, S), 21 g (R)
Voltage
6 or 12 V DC (-R is 6 V only)
Current
stall 550 mA at 6 V, 210 mA at 12 V
Gearing
30:1, 63:1 or 100:1
Motor
brushed DC
Feedback
-P has a 5 kΩ linear potentiometer, ±0.1 mm repeatability
Interface
-S polarity reversal with limit switches that cut power within 1 mm of each end, -P analog position output (pairs with the LAC board), -R standard 3-wire RC servo input
Range
20 mm stroke
Other
Flat ribbon (FPC) cable on -P and -S, 3-pin 2.54 mm servo plug on -R. Backdrive force 9 / 25 / 35 N. Max side load 5–10 N, 20% duty cycle, IP-54, 0.25 mm backlash, 55 dB at 45 cm
Good for

Very small mechanisms with only about 2 cm of travel, such as micro grippers, latches, camera shutters and animatronic eyes or lips, where a rotary servo and linkage would not fit.

Not good for

Anything needing long stroke or more than about 50 N. The ribbon cable is fragile and needs an adapter for longer runs.

Sources PQ12 datasheet (Actuonix) ↗ · Actuonix PQ12 store page ↗
Buying Actuonix online store, which ships worldwide from Victoria, BC, Canada. In-stock items ship within 1–2 days, Monday to Friday, with a 1 PM Pacific cutoff, and shipping is charged at Actuonix's discounted cost. US orders under $800 ship by DHL, UPS Express takes 1–2 days to the US, and import duties are not included.

Progressive Automations PA-14 mini linear actuator

Progressive Automations (Canada) · Available · $119.99 – $180.99

Progressive Automations US store, October 2026 check. $119.99 for 1–12 in strokes, $129.99 for 18 in, $141.99 for 24 in, $162.99 for 30 in, $180.99 for 40 in, same price for every force and voltage. Several variants sold out. Feedback version is the PA-14P.

The PA-14 is a typical 12 V 'furniture and automation' linear actuator, a brushed motor driving an ACME screw inside an aluminum tube with fixed limit switches. Progressive Automations sells it in dozens of stroke and force combinations and now points buyers to the IP65 PA-01 as its newer version. Similar actuators are sold by Firgelli Automations and many generic brands.

Force
35 lb (156 N), 50 lb (222 N) or 150 lb (667 N) dynamic and static force
Speed
no load 2.00 in/s (51 mm/s) at 35 lb, 1.14 in/s (29 mm/s) at 50 lb, 0.37 in/s (9.4 mm/s) at 150 lb. Full load 1.38 / 0.83 / 0.28 in/s
Weight
0.68 kg (1.50 lb) at 1 in stroke, 0.88 kg (1.95 lb) at 6 in, 2.2 kg (4.85 lb) at 40 in
Size
retracted hole to hole length is stroke + 4.13 in (5.13 in for 1 in stroke)
Voltage
12 V DC or 24 V DC
Current
12 V: 1.0 A no load, 5.0 A full load. 24 V: 0.5 A no load, 2.5 A full load
Gearing
ACME lead screw, polyformaldehyde gears (35 lb model) or powder-metallurgy steel alloy gears
Motor
brushed DC
Feedback
none on PA-14, optional on the PA-14P
Interface
two-wire polarity reversal, Molex Mini-Fit Jr 2-pin connector, 40 in cable
Range
1 to 40 in stroke (25–1016 mm)
Other
Built-in non-adjustable limit switches, 25% duty cycle, IP54, under 45 dBA, aluminum alloy housing and rod, -5 to 65 °C, CE and RoHS, no overload protection
Good for

Heavy, slow linear moves on larger robots and props, such as lifting a mast, tilting a solar panel, opening hatches or moving a seat, where hundreds of newtons matter more than speed.

Not good for

Fast or precise joints, since there is no feedback on the base model and the duty cycle is only 25%. It is far too heavy for small or walking robots.

Sources PA-14 product page and specifications (Progressive Automations) ↗ · PA-01 newer version (Progressive Automations) ↗
Buying Progressive Automations online store, prices in USD, product page lists 'Ships within 24 hours' and 'Low stock'. Ship-from location and transit time not stated (unconfirmed).

Harmonic Drive CSF / CSD strain wave gear (component sets)

Harmonic Drive LLC (USA) / Harmonic Drive Systems (Japan) · Available · Quote only

Harmonic Drive LLC does not list prices online (October 2026 check). Component sets are sold through sales engineers and distributors.

A strain wave gear uses an elliptical wave generator to flex a thin steel cup (the flexspline) into a rigid ring gear with two more teeth, so one input turn moves the output by only two teeth. Harmonic Drive credits the invention to C. Walton Musser, in the 1950s (unconfirmed), and Harmonic Drive is the original trademark, now often used as a generic name. The CSF is the company's mainstream cup-type set, and the CSD is its ultra-flat version for thin robot joints.

Torque
CSF-2A rated torque from 0.9 N·m (size 8, 30:1) to 3,550 N·m (size 100, 160:1). Example CSF-14-50 rated 5.4 N·m, repeated peak 18 N·m, momentary peak 35 N·m
Weight
CSF-14 component set 0.09 kg, CSF-20 0.28 kg, CSF-32 0.89 kg
Size
CSF sizes 8 to 100, CSD sizes 14 to 50. CSD is the ultra-flat version, which Harmonic Drive lists as a quarter the thickness of CSF, with a hollow bore
Gearing
single-stage reduction from 30:1 to 160:1 (CSF) or 50:1 to 100:1 (CSD) via flexspline, circular spline and elliptical wave generator
Other
Zero backlash, standard accuracy 1–2 arc min, average input speed limit 3,500 rpm for sizes 8 and 14 and 1,200 rpm for size 100. Backdriving torque 0.65 N·m (size 8) up to 540 N·m (size 100), so joints are hard to backdrive. Torsional stiffness is nonlinear (three-slope K1/K2/K3)
Good for

Robot arm joints that need high reduction in one compact, light stage with zero backlash and arc-minute accuracy, the standard choice for cobots and precision rotary axes.

Not good for

Cheap or impact-heavy legged robots, since the flexspline is expensive, hard to backdrive and can fail under shock loads. Quasi-direct-drive planetary actuators are usually preferred there.

Robots in the guide that use this type of actuator

UFACTORY 850, myCobot Pro 600 and Husky Carbon are described as using harmonic drives without naming the brand. Strain wave gears are standard in the joints of industrial and collaborative arms, reported for Universal Robots, Kinova and Franka arms (unconfirmed for each), as well as many humanoid joints and NASA rover arms.

Sources CSF-2A component sets (Harmonic Drive LLC) ↗ · CSD-2A component sets (Harmonic Drive LLC) ↗ · CSF-14-50-2A-R data (Harmonic Drive LLC) ↗ · Harmonic Drive technology overview ↗
Buying Sold through Harmonic Drive LLC (Beverly, Massachusetts) sales and distributors by quote. Lead times not stated (unconfirmed). Generic Chinese strain wave gears are sold on AliExpress at much lower prices.

Hydraulic servo actuators for legged robots (Moog Integrated Smart Actuator reference)

Moog Inc. (USA) with IIT (Italy) · 2018 · Research only · Not sold publicly

October 2026 check. Moog's ISA appears only in research papers and a 2019 press release, not in a public catalog.

Hydraulic actuation powered the famous dynamic robots of 2005–2024, including Boston Dynamics' BigDog, LS3 and hydraulic Atlas and IIT's HyQ family. BigDog used custom cylinders with a Moog Series 30 servo valve, load cell and potentiometer. Moog and IIT then built the Integrated Smart Actuator, which packs cylinder, servo valve, sensors and electronics into one 3D-printed body (the v5 sits in HyQReal's legs). Boston Dynamics retired hydraulic Atlas in April 2024, marking the end of hydraulics in its humanoids.

Force
ISA v2 4,000 N, ISA v5 7,500 N at 20.7 MPa (3,000 psi) supply pressure
Weight
ISA v2 920 g, ISA v5 1,600 g
Size
ISA v2 16 mm bore, 12 mm rod, 80 mm stroke. ISA v5 21.5 mm bore, 12 mm rod, 100 mm stroke
Motor
hydraulic cylinder with integrated servo valve, fed by a separate electric or engine-driven pump
Feedback
position, both chamber pressures, load cell, temperature and IMU
Interface
onboard ARM processor with EtherCAT, CAN or serial
Range
80 mm (v2) or 100 mm (v5) linear stroke
Other
v2 uses a high-response valve (about 320 Hz bandwidth), v5 an ultra-low-leakage valve (over 100 Hz). Additive-manufactured body with internal oil passages and overload protection
Good for

Large, heavy legged robots that need very high force density and shock tolerance, such as the 130 kg HyQReal pulling a 3.3-metric-ton airplane or the hydraulic Atlas doing backflips.

Not good for

Small, quiet or low-maintenance robots. Hydraulics need a pump, oil, hoses and seals that can leak, and the whole field moved to electric actuators once motors improved.

Robots in the guide that use this type of actuator

Boston Dynamics' hydraulic Atlas and LS3 used hydraulic servo actuators of undisclosed make. Raibert's 1980s 3D hopper used a hydraulic gimbal hip, and walking machines such as Mantis use industrial proportional hydraulics.

Sources Barasuol et al., Highly-Integrated Hydraulic Smart Actuators (Frontiers in Robotics and AI, 2018) ↗ · Moog and IIT test HyQReal (Moog press release, 2019) ↗ · HyQReal (IIT Dynamic Legged Systems) ↗
Buying Not available to buy. Industrial Moog servo valves and cylinders are sold through Moog distributors by quote (unconfirmed).

Festo Fluidic Muscle DMSP

Festo (Germany) · Available · about $322 (DMSP-20-100N, unconfirmed)

Zoro listing for DMSP-20-100N-RM-CM at $321.99, October 2026, seen only in a search snippet (unconfirmed). Festo's own US store did not load for a direct check, and price rises with length and size.

Fluidic Muscle is Festo's industrial version of the McKibben pneumatic artificial muscle. When pressurized, the fiber-braided hose widens and shortens by up to a quarter of its length, pulling with high force and no stick-slip. Festo uses it in its own bionic showcase robots and sells it as a regular catalog part for clamping and vibration machines, which makes it one of the few artificial muscles anyone can buy off the shelf.

Force
theoretical pulling force at max pressure 630 N (size 10), 1,500 N (size 20), 6,000 N (size 40)
Weight
base 58 g (DMSP-10), 169 g (DMSP-20), 675 g (DMSP-40) with RM-CM connectors, plus 94 / 178 / 340 g per meter of length
Size
internal diameter 10, 20 or 40 mm, nominal length 40–9,000 mm (size 10), 60–9,000 mm (20), 120–9,000 mm (40)
Pressure
compressed air, 0–8 bar (size 10) or 0–6 bar (sizes 20, 40)
Motor
single-acting pulling actuator, a chloroprene hose wrapped in aramid fibers (McKibben type)
Range
contracts up to 25% of nominal length
Other
Hysteresis up to 3% of length (size 10) or 2.5% (sizes 20 and 40), repeatability within 1% of length, hermetically sealed with no sliding parts, operates -5 to 60 °C. Festo cites an initial force up to 10 times that of a cylinder of the same diameter
Good for

Muscle-like, compliant pulling joints and exoskeletons where high force from a light, sealed actuator matters and a compressor is available.

Not good for

Precise positioning without extra sensors, since force drops as it contracts and hysteresis is a few percent. It only pulls, so joints need an antagonist muscle or spring.

Festo's Airic's_arm (2007) was driven by Fluidic Muscles (unconfirmed). McKibben-style air muscles were also used in early Shadow Robot hands and many lab exoskeletons.

Sources Fluidic Muscle DMSP/MAS catalog (Festo PDF) ↗ · Fluidic muscle DMSP (Festo) ↗
Buying Festo US online store and distributors. Zoro also lists it. Lead times vary since many lengths are built to order (unconfirmed).

Soft pneumatic actuators (PneuNets bending actuator and mGrip soft fingers)

Harvard Whitesides group / Soft Robotics Toolkit (open design), Soft Robotics Inc. mGrip now made by Schmalz (Germany) · 2011 · Available · DIY materials cost, mGrip by quote

October 2026 check. The Soft Robotics Toolkit says its PneuNets documentation is intended for research, educational and scholarly use by not-for-profit organizations, built from cast silicone. Schmalz sells mGrip grippers by quote with no public price.

PneuNets are networks of air chambers molded inside silicone, developed by the Whitesides group at Harvard and documented openly in the Soft Robotics Toolkit. A stiffer strain-limiting layer on one side makes the actuator curl when pressurized, which is the basis of most soft grippers. The US company Soft Robotics Inc. turned the idea into the mGrip product, then divested its gripper business to the Schmalz Group on August 6, 2024 and now operates as Oxipital AI, while Schmalz sells mGrip for food handling.

Force
mGrip load capacity up to 10 kg per gripper (Schmalz figure)
Pressure
air pressure, 3.0–6.9 bar for mGrip. Pressure for DIY PneuNets depends on design and silicone. mGrip control units run on 24 V
Motor
elastomer body with embedded air chambers (PneuNets), inflated to bend, twist or grip
Range
bending motion set by chamber geometry and a stiffer strain-limiting layer
Other
mGrip handles workpieces up to 300 mm wide at up to 120 picks per minute, with FDA-compliant materials and an IP69K washdown option for food handling
Good for

Gentle grasping of fragile, irregular objects such as fruit, baked goods and meat, and safe soft robots and rehabilitation gloves.

Not good for

Precise positioning, high force or fast closed-loop control, since the actuator is compliant and needs a compressor, valves and tubing.

Harvard's 2011 multigait soft quadruped (Shepherd et al.) crawled on PneuNet legs. Soft grippers of this type are common in food and e-commerce picking. SoFi, the MIT robot fish, uses a related soft actuator, but its tail is driven by pumped water rather than air.

Sources PneuNets bending actuators (Soft Robotics Toolkit) ↗ · Finger Grippers mGrip (Schmalz) ↗ · Soft Robotics Inc. (divestiture notice) ↗
Buying DIY parts (Smooth-On style casting silicone, 3D-printed molds) from general suppliers. mGrip through Schmalz Inc. (Raleigh, North Carolina) by quote (unconfirmed).

Shape memory alloy wire (Dynalloy Flexinol)

DYNALLOY, Inc. (USA) · Available · $5 – $12 per meter

Dynalloy price guide (September 2026 archived copy), average cost per meter for orders up to 100 m. $5–6/m for 0.004–0.006 in wire, $6–12/m for thinner and thicker sizes, $3–7/m up to 1,000 m. RobotShop sells 1 m of 200 µm LT wire for $6.50 (unconfirmed).

Flexinol is Dynalloy's trade name for nickel-titanium 'muscle wire' that shortens when heated past its transition temperature and stretches back as it cools under a light load. It is driven simply by passing current through the wire. RoBeetle went further, coating NiTi wire with platinum so that burning methanol vapor heats it, with no electronics at all. This is a family entry, since no guide robot names Flexinol as its wire.

Force
heating pull force 8.9 g (0.025 mm wire) to 3,560 g (0.51 mm wire) at 172 MPa. Example 0.15 mm wire pulls 321 g
Speed
contracts in about 1 s at the listed current. Cooling (relaxing) takes 0.15 s for 0.025 mm wire up to 14–17 s for 0.51 mm wire in still air
Size
diameters 0.025–0.51 mm (0.001–0.020 in)
Current
about 45 mA (0.025 mm) to 4,000 mA (0.51 mm) for a 1 s contraction. Example 0.15 mm wire 410 mA, resistance 55 Ω/m
Motor
nickel-titanium shape memory alloy, heated by its own resistance
Range
repeatable contraction of 2–6% of wire length (typically 2–5%)
Other
Standard 70 °C (LT) and 90 °C (HT) transition wires. Tens of millions of cycles possible within the guideline stresses, far fewer if overstressed or overheated
Good for

Silent, tiny, very light pulling actuators, such as micro robots, latches, small grippers and animatronic details, where a motor will not fit.

Not good for

Speed or efficiency, since cooling limits cycling to roughly 1 Hz or less for thicker wire, efficiency is a few percent, and stroke is only a few percent of length, so long wires or levers are needed.

RoBeetle and DASH use nickel-titanium wire of unstated brand. SMA wire is also used in many insect-scale robots and in products such as camera autofocus, valves and latches.

Sources Flexinol technical wire data (Dynalloy) ↗ · Flexinol price guide (Dynalloy) ↗ · RoBeetle (IEEE Spectrum, 2020) ↗
Buying Direct from Dynalloy (California) by quote and order, or in small lengths from RobotShop and other hobby shops. Delivery times not stated (unconfirmed).

Piezoelectric bimorph bending actuators (Thorlabs PB4NB2W reference)

Thorlabs (USA), custom PZT laminates in research robots · Available · $66.54 – $123.37

Thorlabs US store prices from a July 2025 archived copy of the bender page (the live site would not load for a direct check in October 2026). PB4VB2W $66.54, PB4NB2W $78.52, PB4NB2S with PEEK holder $123.37. Ring bender PB44NBX $367.00 (unconfirmed).

A bimorph bender bonds two piezoceramic layers so that one stretches while the other does not, bending the strip when voltage is applied. This is a family entry. Harvard's RoboBee and HAMR and the University of Washington's RoboFly use custom-cut laminated PZT bimorphs, amplified by flexure transmissions to drive wings at about 120–140 beats per second or legs at up to 45 Hz, and Festo's BionicANTs use trimorphic piezo-ceramic bending transducers. None of them uses a commercial Thorlabs part. RoboFly's onboard circuit boosts 7 V to the 240 V its actuators need. Commercial benders like Thorlabs' are the off-the-shelf version for experiments.

Force
blocking force 1.5 N (PB4NB2W), 1.4 N (PB4VB2W), 13 N (PB44NBX ring, unconfirmed)
Speed
resonant frequency 370 Hz (PB4NB2W), 930 Hz (PB4VB2W), 2.0 kHz (ring), sub-millisecond response
Size
PB4NB2W 32.0 × 7.8 × 0.8 mm with 28 mm free length. PB4VB2W 20.0 × 8.0 × 0.8 mm
Voltage
0–150 V (rectangular benders), 0–200 V (ring bender)
Motor
multilayer co-fired PZT ceramic bimorph
Range
tip deflection ±450 µm (PB4NB2W), ±135 µm (PB4VB2W), ±185 µm (ring)
Other
Three electrodes allow single-sided or differential drive in either direction. Bare benders are vacuum compatible to 10⁻⁷ Torr, the PEEK-holder versions are not
Good for

Insect-scale robots that need very fast, tiny, high-frequency motions, such as flapping wings at over 100 Hz or running legs, plus lab positioning and valves.

Not good for

Anything needing large motion or force, since tip travel is under a millimeter and force about 1 N. Drivers need 150–240 V, which is hard to produce on a tiny robot.

Robots in the guide that use this type of actuator

Sources Piezoelectric Benders (Thorlabs) ↗ · PB4NB2W item page (Thorlabs) ↗
Buying Thorlabs, which is based in Newton, New Jersey. Stock status and US delivery time not confirmed for October 2026 (unconfirmed).

Clone Robotics Myofiber artificial muscle

Clone Robotics (Poland) · 2021 · Announced · Not sold

October 2026 check. Myofiber is only used inside Clone's own hands and androids. Clone Alpha reservations are listed for a 279-unit run with no public price.

Clone Robotics says it pioneered Myofiber in 2021 as a synthetic muscle fiber matching mammalian skeletal muscle, pressurized with water rather than air. The company describes it as the only artificial muscle combining that weight, power density, speed, force-to-weight ratio and efficiency, a claim not independently verified. It drives the Protoclone V1 android shown in February 2025.

Force
at least 1 kg (about 10 N) of contraction force from a single 3 g fiber (company figure)
Speed
responds in under 50 ms (company figure)
Motor
water-driven (hydraulic) soft artificial muscle, built as monolithic musculotendon units
Range
over 30% unloaded contraction (company figure)
Other
Protoclone V1 uses more than 1,000 Myofibers driven by a 500 W pump acting as its heart (company figure)
Good for

Biomimetic androids and hands that copy human anatomy, with muscles attached to the real attachment points on a synthetic skeleton.

Not good for

Anyone who wants to buy actuators, since it is not for sale, and independent tests of force, efficiency or lifetime have not been published.

Robots in the guide that use it

Clone Hand, the company's earlier robotic hand, was reported in 2023 as buildable for $2,800.

Sources Clone android and Myofiber description (Clone Robotics) ↗ · Clone Robotics home ↗
Buying Not available.

Series elastic actuators (HEBI T-Series and legacy X-Series)

HEBI Robotics (USA) · 2016 · Available · from $3,000

HEBI online store (shophebi.com), October 2026 check. Every T-Series model (T5-1 to T25-40) is listed at $3,000.00. The sealed R-Series is $4,500.00 and the H-Series $10,000.00. The X-Series is legacy and no longer sold new.

A series elastic actuator puts a spring between the gearbox and the load and measures its twist to know the output torque, an idea from MIT's Leg Lab in the 1990s (unconfirmed). HEBI, founded in 2014 as a spin-off of Carnegie Mellon's snake robot lab, packages motor, gears, spring, encoders and control electronics into each module. Its X-Series from 2016 is now discontinued, replaced by the T-Series with higher continuous torque and longer life. This is a family entry, and the linked CMU snake and hexapod robots use the lab-built modules that preceded HEBI's products.

Torque
T5-1 2.5 N·m peak / 1.3 N·m continuous, T8-9+ 23 N·m peak / 10 N·m continuous, T25-40 80 N·m peak / 40 N·m continuous
Speed
T5-1 90 rpm, T8-9+ 39 rpm, T8-3+ 110 rpm, T25-8 118 rpm max
Weight
T5 450 g, T8 575 g, T25 1.5 kg
Size
T5 126 × 74 × 34 mm, T8 126 × 74 × 48 mm (15 mm hollow bore), T25 170 × 105 × 67 mm (20 mm bore)
Voltage
24–48 V DC (T5, T8), 36–48 V DC (T25) per the datasheet, rated at 24 V with output limited in firmware to the 36 V equivalent. The store page says 18–48 V
Current
T8 1.0 A continuous / 2.5 A peak at 36 V
Motor
brushless DC with geartrain and an output spring
Feedback
multi-turn absolute position (±4 turns), velocity, output torque (0.01 N·m resolution) via the spring, 3-axis IMU, temperatures, voltage, current, internal pressure
Interface
10/100 Mbps Ethernet carried over plastic optical fiber (two OptoLock ports per actuator, media converter to RJ45), APIs for MATLAB, ROS, Python and C/C++
Range
continuous rotation, no homing needed at boot
Other
Series spring between gearbox and output gives measured, compliant torque. Angular resolution 0.005°, backlash ±0.25°, designed for IP65
Good for

Research arms, legged robots and snakes that need accurate torque sensing, impact tolerance and safe contact with people.

Not good for

Fast, stiff, high-bandwidth positioning, since the spring adds compliance. HEBI units are also far more expensive than hobby or quasi-direct-drive actuators.

Robots in the guide that use this type of actuator

Rethink Robotics' Baxter and Sawyer and ANYbotics' ANYmal C (ANYdrive) use series elastic actuators of their own design, not HEBI modules. NASA's Valkyrie humanoid also used series elastic actuators (unconfirmed).

Sources T-Series datasheet (HEBI Robotics PDF) ↗ · T-Series store page (HEBI) ↗ · HEBI actuators overview ↗
Buying HEBI online store, HEBI is based in Pittsburgh, Pennsylvania. Shipping times not stated (unconfirmed).