Solenoids, Actuators

Image Part Number Description / PDF Quantity Rfq
F0492A

F0492A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 12V

175

F0432A

F0432A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 12V

474

F0481A

F0481A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 12V

68

F0451A

F0451A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 12V

0

F0474A

F0474A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 24V

181

F0442A

F0442A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 12V

30

F0422A

F0422A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 12V

25

F0473A

F0473A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 24V

180

F0444A

F0444A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 24V

0

F0484A

F0484A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 24V

8

G0405A

G0405A

Pontiac Coil, Inc.

SOLENOID LATCH PULL INTER 24V

0

F0491A

F0491A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 12V

31

G0412A

G0412A

Pontiac Coil, Inc.

SOLENOID LATCH PULL INTER 12V

166

G0401A

G0401A

Pontiac Coil, Inc.

SOLENOID LATCH PULL CONT 12V

6

F0423A

F0423A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 24V

44

F0494A

F0494A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 24V

322

F0482A

F0482A

Pontiac Coil, Inc.

SOLENOID PULL INTERMITTENT 12V

21

F0463A

F0463A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 24V

660

F0431A

F0431A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 12V

11

F0483A

F0483A

Pontiac Coil, Inc.

SOLENOID PULL CONTINUOUS 24V

358

Solenoids, Actuators

1. Overview

Solenoids and actuators are electromechanical devices that convert electrical energy into controlled mechanical motion. Solenoids typically use electromagnetic force to drive linear or rotary motion, while actuators encompass a broader range of mechanisms for precise control in automated systems. These components are critical in industrial automation, automotive systems, robotics, and medical equipment, enabling reliable and programmable mechanical responses.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Linear SolenoidsProduce linear motion via electromagnetic coilsValve control, locking systems
Rotary SolenoidsGenerate rotational movement in discrete anglesIndustrial machinery, HVAC dampers
Proportional SolenoidsProvide variable force/position proportional to input currentFuel injectors, hydraulic valves
Electric ActuatorsUse motors for precise linear/rotary motion controlRobot arms, CNC machines
Pneumatic/Hydraulic ActuatorsUtilize fluid pressure for high-force applicationsAircraft control surfaces, heavy machinery

3. Structure and Components

Typical solenoid construction includes: - Coil: Copper/aluminum windings generating magnetic field - Plunger: Ferromagnetic movable core - Spring: Returns plunger to neutral position - Frame: Provides structural support and magnetic circuit

Actuators generally integrate: - Drive motor (DC/AC/servo) - Gearbox/reduction mechanism - Position sensors (encoders, potentiometers) - Control electronics

4. Key Technical Specifications

ParameterDescriptionImportance
Force/StrokeMaximum output force and travel distanceDetermines mechanical capability
Response TimeMilliseconds to activate/deactivateCritical for high-speed operations
Voltage/CurrentOperating electrical parametersDictates power requirements
Duty CycleContinuous vs. intermittent operation ratingAffects thermal management
Life ExpectancyRated mechanical/electrical cyclesReliability indicator

5. Application Fields

  • Industrial Automation: Conveyor systems, robotic grippers
  • Automotive: Engine valve control, transmission systems
  • Medical: Surgical robots, infusion pumps
  • Aerospace: Flight control actuators, landing gear
  • Smart Home: Automated window blinds, irrigation systems

6. Leading Manufacturers and Products

ManufacturerKey Products
Bosch RexrothIndramat electric actuators, proportional solenoids
Parker HannifinElectromechanical actuators for aerospace
FestoCompact solenoid valves for automation
Allegro MicroSystemsIC-integrated solenoid drivers

7. Selection Guidelines

Key considerations: - Required force/displacement parameters - Operating environment (temperature, humidity, vibration) - Duty cycle and expected lifespan - Control interface (analog/digital/PWM) - Cost vs. precision trade-offs

Example: For automotive engine valve control, prioritize high-speed solenoids with 100M+ cycle life rating.

8. Industry Trends

Emerging developments include: - Integration with IoT for real-time monitoring - Miniaturization for medical micro-actuation - Energy-efficient designs with reduced power consumption - Smart actuators with embedded position feedback - Use of advanced materials for higher temperature resistance

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