Keypad Switches

Image Part Number Description / PDF Quantity Rfq
1K120103

1K120103

Storm Interface

SWITCH KEYPAD 12 KEY 0.05A 24V

0

70160203

70160203

Storm Interface

SWITCH KEYPAD 16 KEY 0.05A 24V

965

3K16T103

3K16T103

Storm Interface

SWITCH KEYPAD 16 KEY 0.05A 24V

13

96BB2-006-F

96BB2-006-F

Grayhill, Inc.

SWITCH KEYPAD 16 KEY 0.005A 12V

245

96AB2-152-F

96AB2-152-F

Grayhill, Inc.

SWITCH KEYPAD 12 KEY 0.005A 12V

276

EZB6-430023

EZB6-430023

Storm Interface

NAV-BAR, 6 KEYS, USB INTERFACE,

3

86BB2-001

86BB2-001

Grayhill, Inc.

SWITCH KEYPAD 16 KEY 0.01A 24V

8

EZ08-23001

EZ08-23001

Storm Interface

SWITCH KEYPAD 8 KEY NON-ILLUM

34

84LS-AB2-112-N

84LS-AB2-112-N

Grayhill, Inc.

SWITCH KEYPAD 12 KEY 0.01A 24V

157

70120103

70120103

Storm Interface

SWITCH KEYPAD 12 KEY 0.05A 24V

2

84AB1-102

84AB1-102

Grayhill, Inc.

SWITCH KEYPAD 12 KEY 0.01A 24V

0

FMBP16BF

FMBP16BF

NKK Switches

SWITCH KEYPAD 16 KEY 0.02A 24V

6

7203-16TW203

7203-16TW203

Storm Interface

SWITCH KEYPAD 16 KEY 0.05A 24V

8

3K206-2RC3AG

3K206-2RC3AG

Grayhill, Inc.

ASM,3K STD,6H,TARGETS X 5C

19

3K042103

3K042103

Storm Interface

SWITCH KEYPAD 4 KEY 0.05A 24V

6

3K012-4RN3AG

3K012-4RN3AG

Grayhill, Inc.

ASM,3K STD,12V,CANOPEN,BLANK TIC

19

86JB2-201

86JB2-201

Grayhill, Inc.

SWITCH KEYPAD 20 KEY 0.01A 24V

142

3K208-4RC3AG

3K208-4RC3AG

Grayhill, Inc.

CAN-BUS KEYPAD, 8 BUTTON, VERTIC

31

7203-04CW203

7203-04CW203

Storm Interface

SWITCH KEYPAD 4 KEY 0.05A 24V

0

FMBN16BE

FMBN16BE

NKK Switches

SWITCH KEYPAD 16 KEY 0.02A 24V

4

Keypad Switches

1. Overview

Keypad switches are electro-mechanical components designed to detect and transmit electrical signals through physical button presses. They serve as human-machine interface (HMI) elements in electronic devices, enabling user input control. These switches play a critical role in modern electronics by bridging mechanical actions with digital systems, supporting applications from consumer electronics to industrial automation.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Mechanical SwitchesPhysical contact-based actuation with tactile feedbackIndustrial control panels, gaming consoles
Capacitive SwitchesContactless operation through capacitance changesSmartphones, medical devices
Film SwitchesLow-profile design with printed circuits on flexible substratesAppliances, automotive dashboards
Membrane SwitchesSealed rubber/plastic layers with conductive ink contactsHome automation, industrial equipment

3. Structure and Components

Typical keypad switch assemblies include: - Actuator: Physical button or touch-sensitive surface - Contact System: Conductive materials (gold, silver, carbon) for electrical connection - Actuator Return Mechanism: Spring or elastic material for reset - Insulation Base: PCB or polymer substrate - Environmental Seal: IP65+ rated protective layers Modern designs integrate EMI shielding and anti-static coatings, with materials like polycarbonate (PC) or ABS plastic for durability.

4. Key Technical Specifications

ParameterTypical ValuesImportance
Operating Force0.5-5.0NDetermines tactile response and user comfort
Contact Resistance0.1-100 Impacts signal integrity and power efficiency
Electrical Life10,000-1,000,000 cyclesDirectly affects product longevity
Operating Temperature-40 C to +85 CEnsures reliability in extreme environments
IP RatingIP40-IP68Defines protection against dust/moisture ingress

5. Application Fields

  • Consumer Electronics: Smartphones, remote controls, gaming peripherals
  • Industrial Automation: PLC control panels, CNC machine interfaces
  • Automotive: Infotainment systems, HVAC controls
  • Medical Devices: Patient monitors, infusion pumps
  • Aerospace: Cockpit control panels, avionics systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductsKey Features
TE ConnectivityALCO K1 SeriesIP67 rating, 1 million cycle life
OmronB3SK-1010Low-profile design with 0.1N operating force
C&K ComponentsKMR119 SeriesGold-plated contacts, RoHS compliance
E-SwitchTL1105 SeriesSurface-mount capability, -40 C to 125 C range

7. Selection Guidelines

Key considerations include: - Electrical Requirements: Current/voltage ratings must exceed system needs - Mechanical Durability: Expected actuation cycles vs. rated lifespan - Environmental Factors: Temperature extremes, chemical exposure - User Experience: Actuation force and tactile feedback optimization - Compliance: Certifications (UL, CE, RoHS) and industry standards For example, in automotive applications, selecting IP67-rated switches with vibration-resistant designs ensures reliability under harsh conditions.

8. Industry Development Trends

Current trends shaping keypad switch technology: - Miniaturization: Micro-switch designs for wearable devices (e.g., 2x2mm footprints) - Capacitive Integration: Hybrid switches combining mechanical and capacitive sensing - Haptic Feedback: Embedded piezoelectric elements for enhanced tactile response - Smart Switches: IoT-enabled switches with embedded sensors and wireless connectivity - Sustainability: Bio-based polymers and recyclable materials adoption The market is projected to grow at 5.8% CAGR through 2030, driven by automotive HMI and industrial IoT applications.

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