Display Modules - LCD, OLED, Graphic

Image Part Number Description / PDF Quantity Rfq
MIKROE-2278

MIKROE-2278

MikroElektronika

MIKROMEDIA HMI 4.3"

0

MIKROE-2166

MIKROE-2166

MikroElektronika

RIVERDI DISPLAY 4.3" CAP

8

MIKROE-2292

MIKROE-2292

MikroElektronika

MIKROMEDIA HMI 7" UXW

0

MIKROE-2281

MIKROE-2281

MikroElektronika

MIKROMEDIA HMI 4.3" UXB

0

MIKROE-2172

MIKROE-2172

MikroElektronika

RIVERDI DISPLAY 5" UXW

0

MIKROE-4281

MIKROE-4281

MikroElektronika

3.5" TFT COLOR DISPLAY W/ CAP TO

3

MIKROE-3790

MIKROE-3790

MikroElektronika

TFT BOARD 3 RESISTIVE

4

MIKROE-2169

MIKROE-2169

MikroElektronika

RIVERDI DISPLAY 5"

0

MIKROE-2168

MIKROE-2168

MikroElektronika

RIVERDI DISPLAY 4.3" UXB

0

MIKROE-3981

MIKROE-3981

MikroElektronika

TFT BOARD 7 CAPACITIVE WITH BEZE

3

MIKROE-2174

MIKROE-2174

MikroElektronika

RIVERDI DISPLAY 7"

0

MIKROE-2165

MIKROE-2165

MikroElektronika

RIVERDI DISPLAY 4.3" RES

5

MIKROE-2285

MIKROE-2285

MikroElektronika

MIKROMEDIA HMI 5" CAP

0

MIKROE-3978

MIKROE-3978

MikroElektronika

TFT BOARD 3 CAPACITIVE WITH BEZE

2

MIKROE-2163

MIKROE-2163

MikroElektronika

RIVERDI DISPLAY 3.5"CAP

1

MIKROE-2167

MIKROE-2167

MikroElektronika

RIVERDI DISPLAY 4.3" UXW

0

MIKROE-3158

MIKROE-3158

MikroElektronika

E-PAPER DISPLAY 2,13" 122X250 DO

3

MIKROE-2175

MIKROE-2175

MikroElektronika

RIVERDI DISPLAY 7" RES

0

MIKROE-240

MIKROE-240

MikroElektronika

DISPL GLCD 128X64 W/TOUCHPANEL

20

MIKROE-3979

MIKROE-3979

MikroElektronika

TFT BOARD 4 CAPACITIVE WITH BEZE

20

Display Modules - LCD, OLED, Graphic

1. Overview

Optoelectronics display modules are electro-optical devices that convert digital signals into visual information. LCD (Liquid Crystal Display), OLED (Organic Light-Emitting Diode), and Graphic modules represent three core technologies in modern display systems. These modules enable human-machine interaction in applications ranging from consumer electronics to industrial automation, with advancements driving thinner form factors, lower power consumption, and higher visual fidelity.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
LCDBacklit liquid crystal layer, requires polarizers, moderate power consumptionSmartphones, TVs, automotive dashboards
OLEDSelf-emissive organic materials, infinite contrast ratio, flexible variantsSmartwatches, VR headsets, premium smartphones
GraphicFixed pixel matrix for icons/symbols, low resolution but high reliabilityIndustrial equipment, medical devices, vending machines

3. Structure and Components

LCD: Composed of backlight unit (LED/CCFL), liquid crystal layer, color filters, and TFT (Thin-Film Transistor) array. Polarizing films on both sides control light transmission.

OLED: Contains anode/cathode layers with organic emissive materials (small molecules or polymers) sandwiched between. Utilizes encapsulation layers to prevent moisture damage.

Graphic Modules: Simplified structure with segmented electrodes and passive matrix addressing, often using monochrome STN (Super-Twisted Nematic) technology.

4. Key Technical Specifications

ParameterDescriptionImportance
Resolution (ppi)Pixels per inch determining image sharpnessHigher values provide clearer visuals
Luminance (cd/m )Brightness level sustainabilityImpacts outdoor visibility
Response Time (ms)Pixel switching speedPrevents motion blur in dynamic content
Operating Temperature ( C)Functional temperature rangeDetermines environmental adaptability
Lifespan (hours)Half-brightness duration100,000 for LCD, 50,000 for OLED

5. Application Areas

  • Consumer Electronics: Smartphones (OLED), tablets (LCD)
  • Medical Equipment: Diagnostic monitors (LCD), portable devices (Graphic)
  • Automotive: Instrument clusters (OLED), infotainment systems (LCD)
  • Industrial HMI: Control panels (Graphic), automation systems (LCD)
  • AR/VR: High-speed OLED microdisplays

6. Leading Manufacturers & Products

ManufacturerTypeRepresentative Product
Samsung DisplayOLEDAMOLED for Galaxy smartphones
LG DisplayLCDIPS panels for Apple iPad Pro
SharpGraphicLS013B7DH01 memory LCD
BOE TechnologyAll Types10.7" flexible AMOLED for wearables

7. Selection Guidelines

Consider these factors for optimal selection:

  • Application Scenario: Outdoor use requires high brightness ( 1000 cd/m )
  • Power Budget: OLED consumes 30% less power than equivalent LCD in dark content
  • Environmental Conditions: Industrial-grade (-30 C to +85 C) for automotive systems
  • Cost Constraints: Graphic modules cost 40-60% less than color TFT LCDs
  • Integration Complexity: OLED requires built-in compensation circuits for aging effects

Case Study: A smartwatch design selected 1.4" AMOLED module for its 1000:1 contrast ratio and 0.1mm ultra-thin profile despite higher cost.

8. Industry Trends

Key development directions include:

  • Micro-LED adoption for >3000 cd/m brightness and sub-10 m pixel pitch
  • Rollable OLED with improved encapsulation technology
  • AI-driven display compensation algorithms for uniformity enhancement
  • Low-temperature polycrystalline oxide (LTPO) backplanes for dynamic refresh rates
  • Biodegradable substrate materials for eco-friendly modules
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