MML11 Series, Pushbutton Switches - Hall Effect

Results:
6
Manufacturer
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Actuator Color
Switch Function
Operating Temperature
Ingress Protection
Termination Style
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Supply Current
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Voltage - Output (Max)
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Results remaining6
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MML11
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ImageProduct DetailPriceAvailabilityECAD ModelIngress ProtectionOperating TemperatureTermination StyleSwitch FunctionMounting TypeCurrent - Output (Max)SeriesCircuitSupply VoltageSupply CurrentActuator TypeActuator ColorVoltage - Output (Max)
MML11KA3AAK
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
PC Pin
Off-Mom
Panel Mount, Snap-In
-
MML11
Single
5 ~ 24VDC
-
Rectangular, Button
Black
-
MML11KA3AAKXXLG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
PC Pin
Off-Mom
Panel Mount, Snap-In
-
MML11
Single
5 ~ 24VDC
-
Rectangular, Button
Green
-
MML11KK3AAK
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
PC Pin
Off-Mom
Panel Mount, Snap-In
-
MML11
Single
5 ~ 24VDC
-
Rectangular, Button
Black
-
MML11KK3AAKXXLW
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
PC Pin
Off-Mom
Panel Mount, Snap-In
-
MML11
Single
5 ~ 24VDC
-
Rectangular, Button
White
-
MML11KA3AAKGSDG
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
PC Pin
Off-Mom
Panel Mount, Snap-In
-
MML11
Single
5 ~ 24VDC
-
Rectangular, Button
Green
-
MML11KA3AEK
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
PC Pin
Off-On
Panel Mount, Snap-In
-
MML11
Single
5 ~ 24VDC
-
Rectangular, Button
Black
-

About  Pushbutton Switches - Hall Effect

Pushbutton switches that utilize Hall Effect technology are electronic switches that rely on changes in magnetic field position to alter their operational states. Unlike traditional pushbutton switches with mechanical parts, these switches operate without physical contact, resulting in several advantages. One key advantage is their extended operational lifespan. Since there are no mechanical components that come into contact with each other, wear and tear is greatly reduced, allowing for a significantly longer lifespan compared to traditional switches. This makes them ideal for applications that require frequent switching or environments with high mechanical stress. Additionally, Hall Effect pushbutton switches offer enhanced environmental protection. The absence of physical contacts means that there is less susceptibility to dust, dirt, moisture, and other contaminants that could affect the switch's performance. This makes them suitable for use in harsh or demanding environments where traditional switches may be prone to failure. Furthermore, these switches contribute to space-saving designs. Due to their contactless operation, they can be manufactured in compact sizes, making them an excellent choice for applications with limited available space. Their small footprint allows for efficient integration into various devices and systems. Lastly, Hall Effect pushbutton switches reduce the effort required for operation. With no physical contacts or moving parts, these switches provide a smooth and effortless actuation experience. This can be particularly beneficial for users who may have limited dexterity or require a more ergonomic interface. In summary, Hall Effect pushbutton switches utilize changes in magnetic field position to change operational states. Their contactless design provides advantages such as extended operational life, improved environmental protection, space-saving capabilities, and reduced operational effort. These switches are well-suited for applications that demand durability, reliability, and efficient use of space.