Solenoids

Results:
430
Manufacturer
Series
DC Resistance (DCR)
Power (Watts)
Size / Dimension
Voltage - Rated
Stroke Length
Diameter - Shaft
Load Force (Static)
Load Force (Dynamic)
Bushing Thread
Termination Style
Type
Shaft Detail
Duty Cycle
Features
Mounting Type
Technology
Motor Type
Barrier Type
Ingress Protection
Top Termination
Voltage Rating
Current Rating (Amps)
Current - Output
Wire Gauge
Accuracy
Wattage - Load
For Use With/Related Products
Voltage - Supply
Feedback Type
Terminal Block Type
Number of Wire Entries
Speed
Operating Temperature
Number of Rows
Construction
Color
Approval Agency
Voltage - Load
Bottom Termination
Pitch
Number of Circuits
Acceleration
Gear Reduction Ratio
Interface
Control / Drive Type
Number of Motors
Results remaining430
Select
ImageProduct DetailPriceAvailabilityECAD ModelSeriesTypeMounting TypeSize / DimensionVoltage - RatedDiameter - ShaftTermination StyleTechnologyDC Resistance (DCR)Shaft DetailStroke LengthDuty CycleBushing ThreadPower (Watts)
2-1617079-7
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8-1617582-1
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1-1617079-1
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5-1617523-4
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LAS28-53-000A-P01-12I
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PCB Symbol, Footprint & 3D Model
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Linear Actuator
31.6V
Wire Leads
0.984" (25.00mm)
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6-1617740-2
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4-1617079-2
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4-1617079-1
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3-1617079-2
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3-1617079-0
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ROB-10391
SOLENOID PUSH INTERMITTENT 36V
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Quantity
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PCB Symbol, Footprint & 3D Model
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Open Frame (Push)
Chassis Mount
2.530" L x 1.181" W x 1.496" H (64.40mm x 30.00mm x 38.00mm)
36VDC
0.197" (5.00mm)
Wire Leads
Electromechanical
13Ohm
Round
0.984" (25.00mm)
Intermittent
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99 W
DSTL-0418-12
SOLENOID PULL CONTINUOUS 12V
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Quantity
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PCB Symbol, Footprint & 3D Model
DSTL
Closed Frame (Pull), Tubular
Chassis Mount
0.504" Dia x 0.689" L (12.80mm x 17.50mm)
12VDC
0.156" (3.97mm)
Wire Leads with Connector
Electromechanical
110Ohm
Round
0.125" (3.18mm)
Continuous
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1.3 W
B14HDP-253-B-4
OPEN FRAME SOLENOID B14HDP - 24
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Quantity
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PCB Symbol, Footprint & 3D Model
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Open Frame (Push)
Chassis Mount
1.460" L x 0.790" W x 1.020" H (37.08mm x 20.07mm x 25.91mm)
24VDC
0.390" (9.91mm)
Wire Leads
Electromechanical
110.2Ohm
Groove
0.500" (12.70mm)
Continuous
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5.5 W
B14HD-254-B-4
OPEN FRAME SOLENOID B14HD - 12 V
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Quantity
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PCB Symbol, Footprint & 3D Model
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Open Frame (Pull)
Chassis Mount
1.460" L x 0.790" W x 1.020" H (37.08mm x 20.07mm x 25.91mm)
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0.390" (9.91mm)
Wire Leads
Electromechanical
27.5Ohm
Clevis
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B14HD-257-B-4
OPEN FRAME SOLENOID B14HD - 12 V
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Quantity
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PCB Symbol, Footprint & 3D Model
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Open Frame (Pull)
Chassis Mount
1.460" L x 0.790" W x 1.020" H (37.08mm x 20.07mm x 25.91mm)
12VDC
0.390" (9.91mm)
Wire Leads
Electromechanical
7Ohm
Clevis
0.500" (12.70mm)
Intermittent
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20.6 W
123423-030
LOW PROFILE SOLENOID - 3EC 12 VD
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Quantity
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PCB Symbol, Footprint & 3D Model
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Closed Frame (Pull), Tubular
Chassis Mount
1.312" Dia x 0.690" L (33.33mm x 17.53mm)
13.2VDC
0.187" (4.75mm)
Wire Leads
Electromechanical
19.2Ohm
Round
-
Continuous
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9 W
2005-F-34
LAMINATED SOLENOID 2000 - 120 VA
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Quantity
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PCB Symbol, Footprint & 3D Model
2000
Open Frame (Pull)
Chassis Mount
2.500" L x 1.812" W x 2.060" H (63.50mm x 46.03mm x 52.32mm)
120VAC
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Quick Connect - 0.250" (6.3mm)
Electromechanical
20.5Ohm
Clevis
1.000" (25.40mm)
Continuous
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17.9 W
F0481A
SOLENOID PULL CONTINUOUS 12V
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Quantity
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PCB Symbol, Footprint & 3D Model
L-10-2
Closed Frame (Pull), Tubular
Panel Mount
2.010" Dia x 0.990" L (51.05mm x 25.15mm)
12VDC
0.437" (11.10mm)
Wire Leads
Electromechanical
18Ohm
Clevis
0.750" (19.05mm)
Continuous
3/4-24 UNS-2A
8 W
195207-231
TUBULAR SOLENOID STA PUSH 1 X 2
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Quantity
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PCB Symbol, Footprint & 3D Model
STA
Closed Frame (Push), Tubular
Panel Mount
1.000" Dia x 2.000" L (25.40mm x 50.80mm)
24VDC
0.125" (3.18mm)
Wire Leads
Electromechanical
77.4Ohm
Round
1.000" (25.40mm)
Continuous
3/4-16 UNF
7.4 W
195206-228
TUBULAR SOLENOID STA PULL 1 X 2
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Quantity
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PCB Symbol, Footprint & 3D Model
STA
Closed Frame (Pull), Tubular
Panel Mount
1.000" Dia x 2.000" L (25.40mm x 50.80mm)
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0.438" (11.13mm)
Wire Leads
Electromechanical
19.2Ohm
Clevis
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3/4-16 UNF
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Solenoids

Solenoids and actuators are electromechanical devices that play a crucial role in converting electrical energy into mechanical motion. These devices consist of a cylindrical metal core, called a plunger or rod, which moves in response to the direction of the electrical current passing through the coil windings. The specifications of solenoids and actuators can vary depending on the specific application requirements. Common specification options include voltage rating, stroke length (the distance the plunger moves), force direction (push or pull), overall size, and the technology used to drive the mechanical motion. Voltage rating refers to the electrical voltage required to operate the solenoid or actuator effectively. Different applications may require different voltage levels, ranging from low voltage (e.g., 12V) to high voltage (e.g., 240V). Stroke length determines the distance the plunger can travel when activated. It is an essential consideration when selecting a solenoid or actuator, as it determines the range of motion available for a specific application. Force direction indicates whether the solenoid or actuator is designed to push or pull when energized. This specification is vital in applications where specific forces or movements need to be achieved. Overall size encompasses the physical dimensions of the solenoid or actuator, such as its length and diameter. The size requirement depends on the available space within the application and can vary significantly based on specific needs. The technology driving the mechanical motion of solenoids and actuators ranges from basic electromechanical action to more advanced options like shape memory alloys. Basic electromechanical solenoids utilize the principle of electromagnetic attraction and repulsion to move the plunger. On the other hand, shape memory alloy actuators use materials that change shape in response to temperature changes, offering unique capabilities and advantages in certain applications. Solenoids and actuators find applications in various industries and fields, including automotive systems, industrial machinery, robotics, medical devices, and aerospace. They are utilized for tasks such as valve control, locking mechanisms, robotic manipulations, precise positioning, and more. In summary, solenoids and actuators are electromechanical devices that convert electrical energy into mechanical motion. Their specifications can vary widely, allowing them to be tailored to specific application requirements and enabling precise control and automation in various industries.