Steering, Door, Cockpit 등에 적용되는 최적화된 스위치로, 터치 기술과 햅틱 피드백이 결합된 스마트 스위치 모듈을 통해 사용자 편의를 극대화합니다.
- Intuitive UI-Based Control: Touchscreen button implementation, ON/OFF status display, and a touch interface operating system
- Haptic Feedback: Tactile responses upon button activation to enhance user operation awareness
- Flexible Operation System: Direct and indirect driving methods optimized for the user environment
- Network-Based Integrated Control: Controller interconnection and data linking via CAN/LIN communication
- SW-Driven Tactile Customization: Free personalization of display button feel through software configurations
- Design Flexibility & Cost Reduction: Layout modifications via software to eliminate physical material costs
- Seamless UI Updates: Interface optimization and specification adaptation without hardware replacements
- Integrated Comfort Control: Simultaneous management of individual convenience features including heated/ventilated seats and heated steering wheels
- Diversified Drive System: Support for direct and indirect driving methods based on user environments and system specifications
- Inter-Controller Communication Network: Interconnected functional cooperation and precision control based on standard CAN/LIN communication
- Single-Package Efficiency: All-in-one configuration maximizing driver convenience and securing system visibility
- Manufacturing Process Optimization: Modular single-package design improving automotive assembly and production efficiency
- High-Performance Driving & Comfort Integration: Single-interface integration of core multi-functions including EPB, ISG (with Auto Hold), SVM, PAS, HLLD, and Auto Light
- Flexible System Drive Environment: Support for direct and indirect driving methods optimized for user and vehicle requirements
- Standard Communication Interface: Precision functional cooperation and mutual control between controllers utilizing CAN/LIN communication networks
- Cost Competitiveness via Component Integration: Consolidated switch design reducing the physical part count and simplifying the system
- Vehicle Lightweighting: Component minimization and all-in-one configuration contributing to reduced vehicle weight and improved fuel efficiency
- Standalone Emergency Switch Module: One-touch independent control system for immediate response during vehicle emergencies
- Intuitive Emergency Operation: Separate physical and independent module configuration preventing operation errors and ensuring rapid response
- Regulatory-Compliant Optimal Design: Adherence to global automotive safety regulations and standards for visibility and durability
- High-Reliability Specifications: Validated long-term operational stability (durability) and strict visual identifiability (visibility)
- Power State Control & Signal Transmission: Real-time detection of vehicle power mode transitions (OFF/ACC/ON) and engine/motor operating status
- High-Speed Inter-Controller Interface: Instantaneous drive signal transmission and linkage targeting core vehicle controllers such as SMK (Smart Key System) and IBU (Integrated Body Unit)
- Customizable Interior Design Flexibility: Flexible design customization aligned with crash pad and center fascia design concepts
- Optimized Mechanical Package Structure: Tailored housing and packaging design supporting specs for button shapes, surface materials, and symbol engravings
- Exterior Trunk Release Control: Safe and intuitive trunk opening functionality executed from outside the vehicle
- Safety Interface Implementation: Optimized switch placement and operating systems to facilitate seamless user access
- Tactile Feedback-Driven Convenience: Maximized operation reliability and convenience by delivering a distinct click feel during switch activation
- Environmental Resilience Design: Enhanced weatherability and waterproof performance (e.g., IP rating) to maintain functionality under harsh external conditions
- Multimedia Centralized Control System: Integrated operation environment using a multi-directional joystick, push knob, and haptic rotary [1]
- Variable Mode-Specific Feedback: Mode-optimized haptic feedback and color guides tailored to individual operating states [2]
- SW-Driven Switch Feel: Software algorithms enabling precision control and customization of switch sensitivity
- Active Actuation Technology: Vibration and motor-driven active mechanisms replacing conventional passive physical springs
- Multisensory Convenience: Maximized user convenience through a combination of tactile feedback and visual optical feedback
- User-Centric HMI Interface: Differentiated user experience (UX) provided by context-optimized interface transitions for each operating mode
- Intuitive Perception Technology: Intuitive operation minimizing physical gaze distraction through touch-based feedback
- Spatial & Operational Efficiency: Consolidated multimedia functions within a single switch to secure center console space and simplify operations
- Proprietary Tactile Sensing Solution: Advanced sensing and feedback technology allowing immediate recognition of operating modes and statuses solely through touch
- Next-Generation Smart Key Replacement: Functional replacement of conventional physical smart key systems with advanced biometric authentication
- Fingerprint-Based Integrated Control: User authentication, door lock/unlock, and vehicle engine start capabilities executed via fingerprint recognition
- Enhanced Security & Convenience Logic: Upgraded vehicle security levels and personalized convenience features delivered through precise authentication processes
- Keyless Freedom: Enhanced user freedom enabling full vehicle utilization via biometric data (fingerprint) without carrying physical keys
- User Profile-Based Personalization: Seamless connectivity leveraging recognized user profiles to automatically adjust customized settings like seat positions and infotainment
- Biometric Anti-Theft Security: Maximized security reliability and theft prevention utilizing spoof-resistant biometric authentication solutions
- Power & Signal Transmission: Stable power supply and electrical signal transfer between steering wheel electronic devices and controllers
- Rotary Interface Implementation: Core connection system delivering uninterrupted power during steering wheel rotation without wire breakage
- Multi-Channel Scalability: Diverse channel configurations and circuit designs supporting complex electronic specifications
- Misassembly Prevention & Safety: Auto-lock mechanisms preventing neutral deviation to enhance assembly convenience and quality reliability
- High Durability & Low Noise Design: Premium mechanical structures ensuring long-term operational lifespan and minimizing rotational noise
- U-Shaped Rotation Mechanism: U-shaped roll connector methods enabling slim product profiles and efficient rotation
- Integrated Light Control: Automatic headlight activation (Auto Light) alongside turn signal, high beam, and passing light control
- Front & Rear Visibility Systems: Front and rear wiper activation and washer fluid spray control for windshield cleaning
- Intelligent Rain Sensing: Smart connection with rain-sensing systems to automatically adjust wiper speeds based on rainfall intensity
- Hybrid Drive Architecture: Simultaneous support for direct and indirect driving methods optimized for vehicle electronic architectures
- Standard Communication Interface: Data connectivity secured through the application of next-generation vehicle communication standards, LIN and CAN.Space-Efficient Integrated Design: Steering Angle Sensor (SAS) integration enabling module miniaturization and assembly convenience
- Premium Tactile Feel: High-quality sensory feedback achieved by optimizing user operational response
- Multi-Faceted Physical Control Interface: Diverse operation environments providing buttons, scroll wheels, and toggles, while converting inputs into electrical signals
- Integrated Vehicle System Control: Core unit connectivity with AVN, cluster, and ADAS controllers to execute media, call, and cruise control functions
- Diversified Interface Methods: Direct and indirect driving alongside organic inter-controller linkage utilizing hard-wiring and LIN communication
- Precision Mechanical Matching Technology: Mechanical design optimized for complex 3D steering wheel curvatures to achieve perfect fitment
- Aesthetic Design Customization: Support for diverse surface finishes like high-gloss and chrome accents alongside tailored customer-specific switch layouts
- Premium Visual Elements: Precision laser-engraved symbols and customized illumination solutions ensuring clear nighttime visibility
- Shift & Deceleration Interface: Precision detection of driver pull operations converting physical inputs into electrical signals
- Tailored System Control Logic: Manual transmission gear shifts for ICE vehicles and multi-stage regenerative braking adjustments for EVs/HEVs
- High-Speed Communication Routing: Instant signal transmission to TCUs and VCUs ensuring real-time driving control responsiveness
- Ultra-Slim Package Architecture: High-density slim design securing optimal fitment within the restricted layout behind the steering wheel
- Premium Sensory Customization: Varied surface materials including real aluminum, chrome plating, and painting optimized for vehicle interior concepts
- Mechanical Design Flexibility: Lever shape and size optimization matching customer specifications to achieve ergonomic layouts and premium tactile feel
- Rear Multimedia Independent Control: Audio/video playback, track skipping, and volume adjustment capabilities for rear-seat passengers
- Diversified Interface Methods: Support for direct and indirect driving methods optimized for vehicle design specifications
- Integrated Inter-System Connectivity: Organic data transmission and mutual functional control between controllers based on CAN/LIN communication standards
- Platform-Based Modular Design: Modular design application enabling rapid adaptation to diverse vehicle models and specifications
- Customization Flexibility: Diversified switch layouts and configuration options optimized for customer (OEM) requirements
- Steering Wheel Position Precision Control: 4-way manual operation detection and electrical signal conversion for tilt (up/down angle) and telescopic (fore/aft distance) adjustment
- Integrated Memory System (IMS) Connectivity: Personalized position implementation by transmitting location data to the steering column drive motor and the vehicle memory controller
- Blind Operation Optimized Design: Application of an ergonomic joystick knob shape, considering the non-visible operating environment on the side of the column cover
- Intuitive Tactile Feedback: Implementation of a distinct operating feel to prevent directional misoperation and securing of 4-way independent control reliability
- User-Centric Ergonomic Design: Construction of an optimal interface that allows drivers to intuitively perceive the adjustment direction even from a non-visible position
- Safe Blind Operation Support: Allows the driver to perceive operation completion without shifting their gaze
- Sophisticated Haptic Feedback Delivery: Implements immediate vibration feedback upon input through a built-in actuator
- Drive and Communication Method: Direct/indirect drive methods and controller-to-controller mutual control based on CAN/LIN communication
- Control Technology: Application of a haptic electronic vibration actuator control mechanism
- Malfunction Prevention Algorithm: Blocks simple touch errors by simultaneously determining touch position recognition and physical pressing pressure
- Advanced Input Discrimination: Secures input reliability through a precise algorithm
- UI/UX Customization: Optimizes various gesture recognition software, such as scroll and swipe, tailored to customer requirements
- Diverse Physical Control Configurations: Supports various control interfaces, including buttons, scroll wheels, and toggle switches
- Electrical Signal Conversion and Transmission: Digitizes control signals through LIN communication and hardwiring methods
- Integrated Vehicle Control Connectivity: Organically controls functions with the AVN, cluster, and Autonomous Driving Control Unit (ADAS)
- Communication Technology and Drive Methods: Applies inter-controller interactions based on CAN/LIN communication and direct/indirect drive methods
- High-Precision Mechanical Design: Secures optimized mechanical matching with the complex 3D curved surfaces of the steering wheel
- Design Customization: Supports various surface treatments tailored to customer concepts, such as high-gloss and chrome accents
- Enhanced Visual Visibility: Allows for customized fabrication of exclusive symbol laser engraving and night illumination
- User-Defined Layout: Provides flexible switch arrangement and design response based on customer requirements
- Optical Gesture Detection: Recognizes micro-slides and swipes via IR sensors
- Real-Time Data Transmission: Converts finger tracking into 2D coordinates over CAN/LIN networks
- Intuitive OFN Navigation: Controls key displays (Cluster, AVN, HUD) using Optical Finger Navigation
- Flexible Drive Architecture: Supports direct/indirect drive and mutual inter-controller control
- Highly Integrated Hybrid Design: Implements the integration of optical navigation (sliding) and mechanical clicking (push) functions within a single compact module
- Maximization of Space Efficiency: Secures ease of mounting within confined areas, such as the steering wheel, through highly integrated packaging
- Design Flexibility and Convenience: Provides layout freedom for component placement and convenience in the assembly process through a compact size
- Transmitting and controlling the driver's shift operation inputs to the transmission via CAN, LIN, and Ethernet communication
- Durability and Precision: Preventing wear and securing product robustness by applying non-contact sensors
- Safety System: Preventing faults and maximizing operational reliability by reflecting a sensor redundancy design
- Transmitting and controlling the driver's shift operation inputs to the transmission via CAN, LIN, and Ethernet communication
- Durability and Precision: Preventing wear and securing product robustness by applying non-contact sensors
- Safety System: Preventing faults and maximizing operational reliability by reflecting a sensor redundancy design
- Transmitting and controlling the driver's shift operation inputs to the transmission via CAN, LIN, and Ethernet communication
- Durability and Precision: Preventing wear and securing product robustness by applying non-contact sensors
- Safety System: Preventing faults and maximizing operational reliability by reflecting a sensor redundancy design
- Transmitting and controlling the driver's shift operation inputs to the transmission via CAN, LIN, and Ethernet communication
- Durability and Precision: Preventing wear and securing product robustness by applying non-contact sensors
- Safety System: Preventing faults and maximizing operational reliability by reflecting a sensor redundancy design
- Door Lock/Unlock Control: Execution of vehicle door locking and unlocking functions
- Access Control Interface: Physical transition and control of door open/close states based on user operation
- High-Density Compact Design: Ultra-small switch mechanism maximizing installation space efficiency and ensuring design freedom
- High-Durability Reliability System: Long-term operational reliability and hardware durability maintaining stable performance under repetitive operations
- Integrated Outside Mirror Control: Precision angle adjustment and power folding/unfolding of side mirrors
- Door Access Control: Actuation of vehicle door locking and unlocking systems
- Power Window Control: Up/down opening and drive control for all passenger windows
- High-Density Compact Design: Ultra-small switch mechanism maximizing installation space efficiency and ensuring design freedom
- High-Durability Reliability System: Long-term operational reliability and hardware durability maintaining stable performance under repetitive operations
- Integrated Outside Mirror Control: Precision four-way (up/down/left/right) angle adjustment and power folding/unfolding control of side mirrors
- High-Density Compact Design: Ultra-small switch mechanism maximizing installation space efficiency and ensuring design freedom
- High-Durability Reliability System: Long-term operational reliability and hardware durability maintaining stable performance under repetitive operations
- Premium Interior Integrated Touch Switch: Power window control system featuring hidden symbols seamlessly integrated into luxury materials such as wood and black high-gloss finishes
- 3D GUI-Based Intuitive Interface: Exceptional visual visibility and intuitive operation environments delivered through 3-dimensional graphical user interfaces (GUI)
- Force Touch Solution: Advanced pressure-sensing (Force Touch) technology applied for precision control and misoperation prevention
- Standalone Haptic Feedback System: Precision haptic technology deploying individual vibration elements per switch to deliver independent tactile responses upon activation
- Environmental Protection: Preventing corrosion and contamination of the charging port from external factors such as rain, dust, and high-pressure car washes
- User Convenience: Maximizing accessibility through one-touch push open, motorized opening/closing, and smart key synchronization
- Status Information Delivery: Enabling intuitive checking of charging progress and remaining battery level via built-in indicator lighting
- Operational Convenience: Minimizing manual user operation by applying a motorized automatic opening and closing system
- Durability and Reliability: Completely blocking external contamination and moisture ingress through an advanced waterproof and dustproof design
- Intuitive Information Provision: Enabling real-time charging status checks from the outside via a built-in state-of-charge (SoC) indicator