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Thin Film Transistor TFT Liquid Crystal Displays
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2024³â¿¡ 1¾ï 9,500¸¸ ´Þ·¯·Î ÃßÁ¤µÇ´Â ¹Ú¸· Æ®·£Áö½ºÅÍ TFT ¾×Á¤ µð½ºÇ÷¹ÀÌ ¼¼°è ½ÃÀåÀº 2030³â¿¡´Â 2¾ï 6,810¸¸ ´Þ·¯¿¡ ´ÞÇϰí, ºÐ¼® ±â°£ÀÎ 2024-2030³â CAGRÀº 5.4%·Î ¼ºÀåÇÒ °ÍÀ¸·Î ¿¹ÃøµË´Ï´Ù. ÀÌ º¸°í¼­¿¡¼­ ºÐ¼®ÇÑ ºÎ¹® Áß ÇϳªÀÎ ´ëÇü TFT LCD µð½ºÇ÷¹ÀÌ´Â CAGR 6.3%¸¦ ±â·ÏÇÏ¸ç ºÐ¼® ±â°£ Á¾·á½Ã¿¡´Â 1¾ï 8,110¸¸ ´Þ·¯¿¡ ´ÞÇÒ °ÍÀ¸·Î ¿¹ÃøµË´Ï´Ù. Áß¼ÒÇü TFT LCD µð½ºÇ÷¹ÀÌ ºÐ¾ßÀÇ ¼ºÀå·üÀº CAGR 3.9%·Î ¿¹ÃøµË´Ï´Ù.

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OLED Áß½ÉÀÇ ¼¼°è¿¡¼­µµ TFT LCD°¡ µð½ºÇ÷¹ÀÌ »ê¾÷À» Áö¹èÇϰí Àִ°¡?

¹Ú¸· Æ®·£Áö½ºÅÍ(TFT) ¾×Á¤Ç¥½ÃÀåÄ¡(LCD)´Â ¼ÒºñÀÚ ÀüÀÚ±â±â, Â÷·®¿ë ÆÐ³Î, »ê¾÷¿ë ¸ð´ÏÅÍ, ÀÇ·á¿ë ¿µ»ó ½Ã½ºÅÛ µî ´Ù¾çÇÑ ¾ÖÇø®ÄÉÀ̼ÇÀÇ ÁßÃ߷μ­ ¿À·§µ¿¾È Çö´ë µð½ºÇ÷¹ÀÌ ±â¼úÀÇ ±Ù°£ÀÌ µÇ¾î ¿Ô½À´Ï´Ù. OLED¿Í microLED°¡ ¹ß±¤ ´É·ÂÀ¸·Î ÁÖ¸ñÀ» ¹Þ¾ÒÁö¸¸, TFT LCD´Â ºñ¿ë È¿À²¼º, Á¦Á¶ È®À强, ¼º¼÷µµ·Î ÀÎÇØ ¿©ÀüÈ÷ °¡Àå ³Î¸® »ý»ê ¹× µµÀÔµÈ µð½ºÇ÷¹ÀÌ À¯ÇüÀÔ´Ï´Ù. TFT LCD´Â °³º° ¾×Á¤ Çȼ¿À» Á¦¾îÇϱâ À§ÇØ Æ®·£Áö½ºÅÍ ¸ÅÆ®¸¯½º¸¦ »ç¿ëÇÏ¿© ´Ù¾çÇÑ ÀåÄ¡ Ä«Å×°í¸®¿¡¼­ ¿ì¼öÇÑ »ö ÀçÇö¼º, ¾ÈÁ¤ÀûÀÎ ¼º´É, °íÇØ»óµµ Ãâ·ÂÀ» Á¦°øÇÕ´Ï´Ù.

ÀÀ¿ë ºÐ¾ß°¡ ´Ù¾çÇØÁü¿¡ µû¶ó TFT LCDÀÇ °ü·Ã¼ºÀº °è¼Ó ÁøÈ­Çϰí ÀÖ½À´Ï´Ù. ½º¸¶Æ®Æù, ÅÂºí¸´, Â÷·®¿ë ÀÎÆ÷Å×ÀÎ¸ÕÆ® ½Ã½ºÅÛ, ³ëÆ®ºÏ, POS ´Ü¸»±â¿¡ À̸£±â±îÁö Áß´ëÇü µð½ºÇ÷¹ÀÌ¿¡ ´ëÇÑ ¼ö¿ä´Â ¹é¶óÀÌÆ®, ¿¡³ÊÁö È¿À², ÁÖ»çÀ² µîÀÇ ±â¼ú Çõ½ÅÀ» ÃËÁøÇϰí ÀÖ½À´Ï´Ù. ¶ÇÇÑ, TFT LCD´Â Ãʽɵµ ºí·¢°ú ¿¬ÁúÆûÆÑÅͺ¸´Ù ¾ÈÁ¤¼º, ±ä ¼ö¸í, ž籤 °¡µ¶¼ºÀÌ ¿ì¼±½ÃµÇ´Â »ê¾÷ ¹× ±º»ç ȯ°æ¿¡ Á¡Á¡ ´õ ¸¹ÀÌ Àû¿ëµÇ°í ÀÖ½À´Ï´Ù. ¸ÖƼÅÍÄ¡, ±¤½Ã¾ß°¢(IPS ¹× VA ±â¼ú), °ß°íÇÑ ³»È¯°æ¼ºÀ» Áö¿øÇÏ´Â TFT LCD´Â °í½Å·Ú¼º ¾ÖÇø®ÄÉÀ̼ǿ¡ ÇʼöÀûÀÎ ¿ä¼Ò·Î ÀÚ¸®¸Å±èÇϰí ÀÖ½À´Ï´Ù.

ÇØ»óµµ, Àü·Â È¿À², ÅëÇÕ ±â´ÉÀº ¾î¶»°Ô ÁøÈ­Çϰí Àִ°¡?

TFT LCDÀÇ ±â¼ú ¹ßÀüÀÇ ÇÙ½ÉÀº ½Ã°¢Àû ¼±¸íµµ Çâ»ó, Àü·Â ¼Òºñ °¨¼Ò, ÀÀ´ä ¼Óµµ Çâ»óÀÔ´Ï´Ù. FHD+, QHD, 4K¿Í °°Àº °íÇØ»óµµ µð½ºÇ÷¹ÀÌ´Â Çȼ¿ ¹Ðµµ¿Í Æ®·£Áö½ºÅÍ ¼³°èÀÇ °³¼±À¸·Î ÇöÀç Áß±ÞÇü °¡ÀüÁ¦Ç°¿¡¼­µµ º¸ÆíÈ­µÇ¾î ÀÖ½À´Ï´Ù. ÆÐ³Î Á¦Á¶¾÷üµéÀº LTPS(Àú¿Â ´Ù°áÁ¤ ½Ç¸®ÄÜ) ¹× IGZO(Àεã-°¥·ý-¾Æ¿¬ »êÈ­¹°) TFT ¹éÇ÷¹Àεµ Ȱ¿ëÇϰí ÀÖ½À´Ï´Ù. ÀÌµé ¼ÒÀç´Â ÀüÀÚ À̵¿µµ°¡ ³ô±â ¶§¹®¿¡ º£Á©ÀÇ ¹ÚÇüÈ­, ¸®ÇÁ·¹½Ã ·¹ÀÌÆ®ÀÇ °í¼ÓÈ­, °íÈÖµµÈ­°¡ °¡´ÉÇÕ´Ï´Ù. ÀÌ·¯ÇÑ ¼ÒÀç´Â ¸ð¹ÙÀÏ ¹× ¿þ¾î·¯ºí ±â±â¿¡¼­ ƯÈ÷ Áß¿äÇÑ ¹èÅ͸® ¼ö¸íÀ» ´Ã¸®¸é¼­ º¸´Ù ¼±¸íÇÑ ºñÁÖ¾óÀ» ±¸ÇöÇÒ ¼ö ÀÖ½À´Ï´Ù.

¶Ç ´Ù¸¥ ¼ºÀå ºÐ¾ß´Â ÅëÇÕÀÔ´Ï´Ù. ³»Àå ÅÍÄ¡ ±â´É(Àμ¿ ÅÍÄ¡ ¹× ¿Â¼¿ ÅÍÄ¡), ³»Àå µðÁöŸÀÌÀú ¹× µ¿Àû ¹à±â Á¶Àý ¼¾¼­°¡ TFT ÆÐ³Î¿¡ Á÷Á¢ °áÇյǾî ÀÖ½À´Ï´Ù. ÀÌ·¯ÇÑ ÅëÇÕÀº ºÎǰ ·¹À̾ ÁÙÀ̰í, Á¦Á¶ º¹À⼺À» ÁÙÀ̸ç, ³»±¸¼ºÀ» Çâ»ó½Ãŵ´Ï´Ù. ¾î´ðƼºê ¸®ÇÁ·¹½Ã, ·ÎÄà µð¹Ö°ú °°Àº ¿¡³ÊÁö Àý¾à ±â´ÉÀº ÀüÀÚÃ¥ ¸®´õ±â, ÀÎÆ÷Å×ÀÎ¸ÕÆ® ½ºÅ©¸° µî Àü·Â ¼Òºñ¿¡ ¹Î°¨ÇÑ ºÐ¾ß¿¡¼­ TFT LCD°¡ °æÀï·ÂÀ» À¯ÁöÇÏ´Â µ¥ µµ¿òÀÌ µÇ°í ÀÖ½À´Ï´Ù. Â÷·®¿ë µð½ºÇ÷¹ÀÌ´Â Â÷·® žÀç ȯ°æÀÇ ±î´Ù·Î¿î Á¶°ÇÀ» ÃæÁ·½Ã۱â À§ÇØ ±¤¿Âµµ ¼º´É°ú ´«ºÎ½É ¹æÁö 󸮸¦ äÅÃÇϰí ÀÖ½À´Ï´Ù. ³»±¸¼º, ¼º¼÷µµ, ´ÙÀç´Ù´ÉÇÔÀ» °âºñÇÑ TFT LCD´Â ´Ù¾çÇÑ ÃÖÁ¾ ¿ëµµÀÇ ¿ä±¸»çÇ×À» ÃæÁ·ÇÏ´Â ½Å·ÚÇÒ ¼ö ÀÖ´Â Ç÷§ÆûÀ¸·Î ÀÚ¸®¸Å±èÇϰí ÀÖ½À´Ï´Ù.

½ÃÀå ¼º¼÷µµ¿Í Á¦Á¶ ÀÎÇÁ¶ó°¡ °æÀï ¿ìÀ§¸¦ À¯ÁöÇÒ ¼ö Àִ°¡?

½ÅÈï µð½ºÇ÷¹ÀÌ ±â¼ú°úÀÇ Ä¡¿­ÇÑ °æÀï¿¡µµ ºÒ±¸Çϰí, TFT LCD´Â ¼º¼÷ÇÑ ¼¼°è Á¦Á¶ ÀÎÇÁ¶ó¿Í ´ë±Ô¸ð ±Ô¸ðÀÇ ÀÌÁ¡À» °è¼Ó ´©¸®°í ÀÖ½À´Ï´Ù. ¾Æ½Ã¾ÆÅÂÆò¾ç, ƯÈ÷ Áß±¹, Çѱ¹, Çѱ¹, ÀϺ», ´ë¸¸ÀÇ ÁÖÁ¶¼Ò´Â ´ë¿ë·® »ý»ê ¶óÀÎÀ» ±¸ÃàÇÏ¿© ´Ù¾çÇÑ Å©±â¿Í Á¾È¾ºñ·Î ºñ¿ë È¿À²ÀûÀÎ ÆÐ³ÎÀ» Á¦°øÇϰí ÀÖ½À´Ï´Ù. ÀÌ·¯ÇÑ ½Ã¼³Àº Àß ±¸ÃàµÈ °ø±Þ¸Á, ¼÷·ÃµÈ ÀηÂ, °íµµÀÇ ÀÚµ¿È­ µîÀÇ ÀÌÁ¡À» ÅëÇØ ´Ù±¹Àû OEMÀÇ ¼ö·® ¹× Àϰü¼º ¿ä±¸ »çÇ×À» ÃæÁ·½Ãų ¼ö ÀÖ½À´Ï´Ù.

¶ÇÇÑ, TFT LCD´Â ±¤¹üÀ§ÇÑ ¼³°è »óÈ£¿î¿ë¼º°ú Àå±âÀûÀÎ °¡¿ë¼ºÀ» °®Ãß°í ÀÖ¾î ATM, »ê¾÷¿ë ÅÍÄ¡ ¸ð´ÏÅÍ, ÀÇ·á±â±â µî °³¹ß ¹× Áö¿ø ÁֱⰡ ±ä ¾ÖÇø®ÄÉÀ̼ǿ¡ ÀÌ»óÀûÀÔ´Ï´Ù. ¶ÇÇÑ, Åõ¸í LCD, Ãʱ¤Æø Æ÷¸Ë, °î¸é ÆÐ³Î°ú °°Àº Çõ½ÅÀº Æ´»õ ¹× °í¼º´É ºÐ¾ß¿¡¼­ °ü·Ã¼ºÀ» À¯ÁöÇϱâ À§ÇØ ¸ð»öµÇ°í ÀÖ½À´Ï´Ù. Áö¼Ó°¡´É¼º Ãß±¸´Â Èñ¼Ò¼º ÀÖ´Â Àç·áÀÇ »ç¿ë·®À» ÁÙÀ̰í, ÀçȰ¿ëÀ» ¿ëÀÌÇÏ°Ô Çϸç, ¼¼°è ¿¡³ÊÁö È¿À² ±âÁØÀ» ÃæÁ·ÇÏ´Â ÆÐ³Î ¼³°è·Î À̾îÁö°í ÀÖ½À´Ï´Ù. ÀÌ·¯ÇÑ ³ë·ÂÀ¸·Î TFT LCD´Â ºü¸£°Ô ÁøÈ­ÇÏ´Â µð½ºÇ÷¹ÀÌ »ê¾÷¿¡¼­ ±â¼úÀû Ÿ´ç¼º»Ó¸¸ ¾Æ´Ï¶ó ¹°·ù Ãø¸éÀÇ ½Å·Ú¼ºÀ» Áö¼ÓÀûÀ¸·Î Á¦°øÇϰí ÀÖ½À´Ï´Ù.

¼¼°è TFT LCD ½ÃÀåÀÇ Áö¼ÓÀûÀÎ ¼ºÀå ¿øµ¿·ÂÀº?

¹Ú¸· Æ®·£Áö½ºÅÍ(TFT) LCD ½ÃÀåÀÇ ¼ºÀåÀº ºñ¿ë ´ëºñ ¼º´ÉÀÇ ±ÕÇü, ¾ÖÇø®ÄÉÀ̼ÇÀÇ ´Ù¾ç¼º, źźÇÑ °ø±Þ¸Á »ýŰè¿Í ¹ÐÁ¢ÇÑ °ü·ÃÀÌ ÀÖ´Â ¸î °¡Áö Áß¿äÇÑ ¿äÀο¡ ÀÇÇØ ÁÖµµµÇ°í ÀÖ½À´Ï´Ù. ù°, OLED³ª microLED¿¡ ºñÇØ TFT LCDÀÇ °¡°ÝÀÌ Àú·ÅÇϱ⠶§¹®¿¡ º¸±ÞÇü ¹× ÁßÀú°¡ °¡ÀüÁ¦Ç°, ±³À°¿ë ±â±â, ½ÅÈï½ÃÀå¿¡¼­ Áö¼ÓÀûÀ¸·Î äÅõǰí ÀÖ½À´Ï´Ù. µÑ°, LTPS ¹× IGZO¿Í °°Àº ¹éÇ÷¹ÀÎ ¼ÒÀçÀÇ °³¼±À¸·Î ÇØ»óµµ, Àç»ý·ü, Àü·Â È¿À²ÀÌ Çâ»óµÊ¿¡ µû¶ó TFT LCD´Â ¼º´É Áß½ÉÀÇ ¾ÖÇø®ÄÉÀ̼ǿ¡ Áö¼ÓÀûÀ¸·Î äÅõǰí ÀÖ½À´Ï´Ù.

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Global Thin Film Transistor TFT Liquid Crystal Displays Market to Reach US$268.1 Million by 2030

The global market for Thin Film Transistor TFT Liquid Crystal Displays estimated at US$195.0 Million in the year 2024, is expected to reach US$268.1 Million by 2030, growing at a CAGR of 5.4% over the analysis period 2024-2030. Large TFT LCD Displays, one of the segments analyzed in the report, is expected to record a 6.3% CAGR and reach US$181.1 Million by the end of the analysis period. Growth in the Small & Medium TFT LCD Displays segment is estimated at 3.9% CAGR over the analysis period.

The U.S. Market is Estimated at US$51.3 Million While China is Forecast to Grow at 5.2% CAGR

The Thin Film Transistor TFT Liquid Crystal Displays market in the U.S. is estimated at US$51.3 Million in the year 2024. China, the world's second largest economy, is forecast to reach a projected market size of US$42.9 Million by the year 2030 trailing a CAGR of 5.2% over the analysis period 2024-2030. Among the other noteworthy geographic markets are Japan and Canada, each forecast to grow at a CAGR of 4.9% and 4.6% respectively over the analysis period. Within Europe, Germany is forecast to grow at approximately 4.3% CAGR.

Global Thin Film Transistor (TFT) Liquid Crystal Displays Market - Key Trends & Drivers Summarized

Are TFT LCDs Still Dominating the Display Industry in an OLED-Focused World?

Thin Film Transistor (TFT) Liquid Crystal Displays (LCDs) have long been the cornerstone of modern display technology, serving as the backbone for applications across consumer electronics, automotive panels, industrial monitors, and medical imaging systems. Though OLEDs and microLEDs have captured headlines for their emissive capabilities, TFT LCDs remain the most widely produced and deployed display type due to their cost efficiency, manufacturing scalability, and maturity. By using a matrix of transistors to control individual liquid crystal pixels, TFT LCDs offer excellent color reproduction, reliable performance, and high-resolution output across a broad range of device categories.

The relevance of TFT LCDs continues to evolve with application diversification. From smartphones and tablets to automotive infotainment systems, laptops, and point-of-sale terminals, the demand for mid-to-large-format displays is driving innovations in backlighting, energy efficiency, and refresh rates. Furthermore, TFT LCDs are increasingly integrated into industrial and military-grade environments where stability, extended lifespan, and sunlight readability are prioritized over ultra-deep blacks or flexible form factors. Their ability to support multi-touch, wide viewing angles (via IPS and VA technologies), and robust environmental resistance ensures they remain indispensable in high-reliability applications.

How Are Resolution, Power Efficiency, and Integration Features Evolving?

Technology advancements in TFT LCDs have centered around enhancing visual clarity, lowering power consumption, and improving response time. High-resolution displays-such as FHD+, QHD, and 4K-are now commonplace, even in mid-range consumer electronics, thanks to improvements in pixel density and transistor design. Panel makers are also leveraging LTPS (Low-Temperature Polycrystalline Silicon) and IGZO (Indium Gallium Zinc Oxide) TFT backplanes, which offer better electron mobility, enabling thinner bezels, faster refresh rates, and higher brightness levels. These materials allow for sharper visuals while extending battery life, which is especially important in mobile and wearable devices.

Another growing area is integration. Embedded touch functionality (in-cell and on-cell touch), integrated digitizers, and dynamic brightness adjustment sensors are being combined directly into TFT panels. This integration reduces component layers, lowers manufacturing complexity, and improves durability. Energy-saving features such as adaptive refresh and localized dimming are helping TFT LCDs remain competitive in the power-sensitive sectors, including e-readers and infotainment screens. In automotive displays, wide-temperature performance and anti-glare treatments are being adopted to meet the demanding conditions of in-vehicle environments. The combination of durability, maturity, and versatility continues to make TFT LCDs a reliable platform for diverse end-use requirements.

Can Market Maturity and Manufacturing Infrastructure Sustain Competitive Advantage?

Despite intense competition from emerging display technologies, TFT LCDs continue to benefit from a mature, global manufacturing infrastructure with massive economies of scale. Foundries in Asia-Pacific-especially in China, South Korea, Japan, and Taiwan-have built high-capacity production lines that offer cost-effective panels in a range of sizes and aspect ratios. These facilities benefit from established supply chains, experienced labor, and advanced automation, allowing them to meet the volume and consistency demands of multinational OEMs.

TFT LCDs also enjoy broad design interoperability and long-term availability, making them ideal for applications with long development and support cycles such as ATMs, industrial touch monitors, and medical devices. Furthermore, innovations like transparent LCDs, ultra-wide formats, and curved panels are being explored to maintain relevance in niche and high-performance segments. The ongoing push for sustainability is leading to panel designs that use fewer rare materials, are easier to recycle, and meet global energy efficiency standards. These efforts ensure that TFT LCDs continue to offer not just technical adequacy but also logistical reliability in a rapidly evolving display landscape.

What Is Driving Continued Growth in the TFT LCD Market Globally?

The growth in the Thin Film Transistor (TFT) LCD market is driven by several key factors closely tied to cost-performance balance, application versatility, and robust supply chain ecosystems. First, the affordability of TFT LCDs compared to OLEDs and microLEDs ensures continued adoption in budget and mid-tier consumer electronics, educational devices, and emerging markets. Second, improvements in backplane materials like LTPS and IGZO are boosting resolution, refresh rate, and power efficiency-allowing TFT LCDs to remain relevant in performance-focused applications.

Third, sustained demand from the automotive, industrial, and healthcare sectors-where long product lifecycles and environmental resilience are valued-continues to support large-scale TFT LCD integration. Fourth, advances in embedded functionality, such as integrated touch and dynamic contrast features, are expanding design opportunities in compact and portable devices. Fifth, the well-established global manufacturing infrastructure enables fast lead times, high-volume availability, and reliable quality control, making TFT LCDs the go-to choice for OEMs needing scalability and flexibility. Lastly, emerging use cases such as transparent displays, ultra-wide monitors, and ruggedized outdoor screens are breathing new life into the technology. Collectively, these dynamics are ensuring that TFT LCDs maintain a prominent role in the global display ecosystem, even as next-gen technologies continue to mature.

SCOPE OF STUDY:

The report analyzes the Thin Film Transistor TFT Liquid Crystal Displays market in terms of units by the following Segments, and Geographic Regions/Countries:

Segments:

Display Type (Large TFT LCD Displays, Small & Medium TFT LCD Displays); Application (Television Application, Mobile Phones Application, Monitors Application, Other Applications)

Geographic Regions/Countries:

World; United States; Canada; Japan; China; Europe (France; Germany; Italy; United Kingdom; and Rest of Europe); Asia-Pacific; Rest of World.

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TARIFF IMPACT FACTOR

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TABLE OF CONTENTS

I. METHODOLOGY

II. EXECUTIVE SUMMARY

III. MARKET ANALYSIS

IV. COMPETITION

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