KSM Series, Tactile Switches

Results:
5
Manufacturer
Series
Outline
Operating Force
Operating Temperature
Termination Style
Actuator Type
Circuit
Mounting Type
Switch Function
Actuator Orientation
Illumination
Contact Rating @ Voltage
Illumination Type, Color
Ingress Protection
Actuator Height off PCB, Vertical
Actuator Length, Right Angle
Illumination Voltage (Nominal)
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Results remaining5
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KSM
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ImageProduct DetailPriceAvailabilityECAD ModelCircuitFeaturesIngress ProtectionOperating TemperatureTermination StyleContact Rating @ VoltageMounting TypeActuator TypeSwitch FunctionIlluminationIllumination Voltage (Nominal)Illumination Type, ColorOperating ForceSeriesActuator Height off PCB, VerticalActuator Length, Right AngleActuator OrientationOutline
KSM6161LFG
SWITCH TACTILE SPST-NC 0.05A 24V
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Quantity
1 Available
Can ship immediately
Ships from: HK
PCB Symbol, Footprint & 3D Model
SPST-NC
-
-
-40°C ~ 85°C
Gull Wing
0.05A @ 24VDC
Surface Mount, Right Angle
Standard
On-Mom
Non-Illuminated
-
-
90gf
KSM
-
-
Side Actuated
6.70mm x 8.90mm
KSM6141LFG
SWITCH TACTILE
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
-
-
-
-
-
-
-
-
-
-
-
KSM
-
-
-
-
KSM1131
SWITCH TACTILE SPST-NC 0.05A 24V
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
SPST-NC
-
-
-40°C ~ 85°C
Gull Wing
0.05A @ 24VDC
Surface Mount, Right Angle
Standard
On-Mom
Non-Illuminated
-
-
90gf
KSM
-
-
Side Actuated
5.80mm x 6.95mm
KSM1131ZLFG
SWITCH TACTILE SPST-NC 0.05A 24V
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
SPST-NC
-
-
-40°C ~ 85°C
Gull Wing
0.05A @ 24VDC
Surface Mount, Right Angle
Standard
On-Mom
Non-Illuminated
-
-
90gf
KSM
-
-
Side Actuated
5.80mm x 6.95mm
KSM1131DLFG
SWITCH TACTILE SPST-NC 0.05A 24V
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
SPST-NC
-
-
-40°C ~ 85°C
Gull Wing
0.05A @ 24VDC
Surface Mount, Right Angle
Standard
On-Mom
Non-Illuminated
-
-
110gf
KSM
-
-
Side Actuated
5.80mm x 6.95mm

About  Tactile Switches

Tactile switches, also referred to as tactile push buttons, are electromechanical devices that serve the purpose of starting or stopping the flow of current in an electrical circuit. These switches are commonly used in various electronic devices and equipment. One notable characteristic of tactile switches is their compact size. They are often designed to be very small, making them suitable for applications where space is limited. Despite their small size, tactile switches are highly reliable and efficient in their operation. The functionality of a tactile switch is based on the use of an actuator. The actuator is a component of the switch that needs to be depressed or pressed in order to activate or deactivate the switch. This actuation can be done by applying force with a finger or any other suitable object. When the actuator is pressed, it triggers the internal mechanism of the tactile switch, allowing current to flow through the circuit or interrupting the current flow. This action is accompanied by a tactile feedback, hence the name "tactile" switch. The feedback can be in the form of an audible click sound or a noticeable change in pressure felt by the user upon reaching the trigger point. The trigger point is a crucial aspect of tactile switches. It refers to the specific level of force required to activate the switch. Depending on the design and intended application, tactile switches can have varying trigger points. The operating force required to activate these switches typically ranges from 50gf (gram-force) to 970gf. This range allows for flexibility in choosing the appropriate tactile switch for different applications, taking into consideration factors such as user comfort and desired level of responsiveness. In summary, tactile switches are electromechanical devices that provide a means to start or stop current flow in electrical circuits. They are compact in size, activated by depressing an actuator, and offer feedback to the user through an audible click or a change in pressure at the trigger point. The operating force of these switches can vary, allowing for customization based on specific application requirements.