LP7-D5212E22

Heilind Number:OTTLP7-D5212E22
Manufacturer:OTTO Controls
Manufacturer Number:LP7-D5212E22
Datasheet:Datasheet
ECAD Model:
3D Model

Description:

Illuminated Dome Pushbutton Switch

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Specifications

AttributeValue
Product Category:
Manufacturer:OTTO Controls
Manufacturer Part Number:OTTO Controls LP7-D5212E22
Series:LP7-D
Cap Color:Black
IP Rating:IP6K8S
Case Color:Black
Illumination:Illuminated
Actuator Type:Button (Raised Square Lightpipe)
Actuator Shape:Square
Current Rating:1 - 100 mA
Mounting Style:Panel Mount
Actuator Length:.11 in
Contact Plating:Gold
Switch Function:OFF-ON
Contact Material:Silver
Housing Material:Aluminum
Type:Sealed
Termination Type:Solder
Actuator Material:Thermoplastic
Durability Rating (Cycles):1,000,000 Cycles
Voltage Rating (DC):1 - 28 VDC
Illumination Color:White
Illumination Voltage:2 V
Contact Configuration:SPST-NO
Maximum Operating Temperature:85 °C
Minimum Operating Temperature:-40 °C
SKU:OTTLP7-D5212E22

Detailed Description

The LP7-D5212E22 is a high-performance illuminated dome pushbutton switch designed for durability and reliability in various applications. Featuring a sleek black aluminum housing and a panel-mount design, this switch is both visually appealing and easy to install. The raised square lightpipe actuator, made of thermoplastic, ensures precise and comfortable operation. With a gold-plated contact and silver contact material, it guarantees excellent conductivity and longevity, rated for 1,000,000 cycles. The switch offers a single-pole, single-throw normally open configuration with a current rating of 1-100mA and a voltage rating of 1-28VDC, making it suitable for low-power circuits. Operating in temperatures ranging from -40°C to 85°C, it is ideal for use in diverse environments. The white illumination adds a modern touch and enhances visibility, with an illumination voltage of 2V. Whether used in industrial machinery, automotive systems, or consumer electronics, the LP7-D5212E22 promises efficient performance and tactile feedback, meeting the demands of even the most rigorous applications.