Hitec HLS12-100380-6V 100mm Stroke 380:1 Linear Servo 12kg/1.2mm/s 4.0V - 8.4V
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SKU: 2212207
Material Code: 2212207
Brand: Hitec
FEATURES
- Command Protocol: PWM
- Lead Screw: 5mm
- Motor Type: Cored Metal Brush
- Operating Voltage (Volts DC): 4.0V ~ 8.4V
- Testing Voltage: 6.0V
- Gear Ratio: 380:1
- No Load Speed: 3.3mm/s
- No Load Current: 100mA
- Maximum Efficiency Point: Load (kg / N): 6.5 / 64 - Speed (mm/s): 2.5 - Current (mA): 200
- Pear Power Point: Load (kg / N): 10.0 / 98 - Speed (mm/s): - 1.9Current (mA):300
- Max Force (Lifted): Load (kg /N): 12.0 / 118 - Speed (mm/s): 1.2 - Current (mA): 400
- Stall Force: 5.0kgf (49.03N)
- Stall Current: 500mA
- Max Static Force: 20.39kgf (200N) (above)
- Stroke SPEC: 100mm
- Repeatability: ±0.5mm
- Max Side Load (Extended): 1.53kgf (15N)
- Outline Dimensions: 152.0 x 15.0 x 18.0mm (5.98 x 0.59 x 0.71 in.)
- Weight: 56g (1.975oz)
- Connector Wire Length: 160mm (6.29 in.)
- Connector Wire Gauge: 24AWG
- Bearing Type: Flange bearing
- Case Material: Engineering Plastic & Aluminium Pipe
- Gear Material: 4 Metal Gears
- IP Rating: IP4X
- Servo Amplifier Type: 32bit programmable Digital
DETAILS
With 100mm of travel and a 380:1 gear ratio, the HLS12-100380 is ideal for short stroke applications requiring maximum power.Controlled using a traditional PWM servo signal, Hitec linear actuators provide optimised motion control for precise and powerful positioning. Whether your application demands a low-profile form factor, or extended linear throws, we have an actuator to suit your needs. Our linear actuators are popular for a myriad of uses including robotics and animatronics, as well as industrial mechanical applications. Programmable stroke and speed settings, power-off position stability, and a variety of mounting options, provide additional functionality and flexibility. Additionally, Hitec linear actuators provide full excursion using a 1050 - 1950s input range. This feature allows fully compatible use with all radios, by eliminating the requirement for programming extended rates to achieve full motion.
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