Ultra Bright White 12 Segment LED Light Bar (Common Anode) for Medical Devices
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Product Overview
Introducing the Ultra Bright White 12 Segment LED Light Bar (Common Anode)—a high-precision, medical-grade LED solution engineered for medical devices, instrument panels, and home appliances. With its ultra bright white illumination (100-140mcd), compact 58×7×8mm design, and reliable common anode configuration, this light bar delivers exceptional visibility, stable performance, and energy efficiency—critical for applications requiring clear, consistent status indicators (e.g., medical device operation modes, instrument progress tracking).
Available in multiple emitting colors (red, blue, green, amber, white, orange, multi-color) and compliant with RoHS standards, it meets the strict quality and safety requirements of medical and industrial environments, while offering easy assembly and IC compatibility for seamless integration.
Key Features
Medical-Grade Reliability: Stable performance, good consistency, and RoHS compliance make it suitable for sensitive medical device applications (e.g., patient monitors, diagnostic equipment).
Ultra Bright White Illumination: 100-140mcd luminous intensity ensures clear visibility even in well-lit medical facilities, ideal for status indicators or progress bars.
12-Segment Design: Offers flexible display options (e.g., partial illumination for level indicators, full illumination for alerts) for diverse application needs.
Common Anode Configuration: Simplifies circuit integration with medical device control boards and standard driver ICs, reducing design complexity.
Compact & Slim Profile: Outer dimensions of 58×7×8mm fit seamlessly into space-constrained medical devices and instrument panels.
Energy-Efficient: Low power consumption and extremely low current (5-10mA per LED) minimize energy usage, extending device battery life (where applicable).
Easy Assembly: Designed for hassle-free mounting (PCB-compatible), accelerating production and integration workflows.
Color Versatility: Available in red, blue, green, amber, white, orange, and multi-color to match specific device design or functional requirements.
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Category | Parameter | Specification |
Basic Design | Display Type | 12 Segment LED Light Bar (also available in 10-Segment variant) |
Polarity | Common Anode | |
Outer Dimensions (L×W×H) | 58 × 7 × 8mm | |
Optical Performance | Emitting Color | Ultra bright white (red/blue/green/amber/orange/multi-color available) |
Luminous Intensity | 100-140 mcd | |
Electrical Parameters | Forward Voltage (VF) | 2.8-3.2V per LED |
Forward Current | 5-10mA per LED | |
Quality & Compliance | Core Advantages | High luminous intensity, low power consumption, stable performance, good consistency, long lifetime |
Compatibility | IC Compatible | |
Compliance | RoHS Compliant | |
Assembly | Easy to assemble (PCB-mountable) |
Applications
This 12 Segment LED Light Bar is widely suitable for:
Medical Devices: Patient monitors, diagnostic equipment, infusion pumps, and surgical instruments (for status indicators, progress tracking, or alert signals).
Instrument Panels: Industrial meters, control systems, and test equipment (for level, voltage, or pressure indicators).
Home Appliances: Microwaves, ovens, and smart home devices (for cooking progress, power status, or mode selection).
Other Electronics: Automotive dashboards, consumer gadgets, and industrial automation devices requiring segmented status displays.
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Why Choose This 12 Segment LED Light Bar?
Medical-Grade Performance: Stable output, good consistency, and RoHS compliance meet the strict standards of medical environments, ensuring reliable operation in critical settings.
Exceptional Visibility: 100-140mcd ultra bright illumination ensures readability from a distance, even in bright medical facilities.
Flexible Customization: Multiple color options and segment designs (12-segment, 10-segment) adapt to diverse application needs.
Easy Integration: IC compatibility and simple assembly reduce development time for device manufacturers.
Energy Efficiency: Low power consumption and low current draw optimize device performance, especially for battery-powered medical equipment.