½ÃÀ庸°í¼­
»óǰÄÚµå
1514833

¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ±Ô¸ð Á¶»ç : À¯Çüº°, ±¸¼º¿ä¼Òº°, »ê¾÷º°, ¿ëµµº°, Áö¿ªº° Àü¸Á(2024-2032³â)

Global 3D Optical Metrology Market Size Study, by Type, by Component, by Industry, by Application, and Regional Forecasts 2024-2032

¹ßÇàÀÏ: | ¸®¼­Ä¡»ç: Bizwit Research & Consulting LLP | ÆäÀÌÁö Á¤º¸: ¿µ¹® 200 Pages | ¹è¼Û¾È³» : 2-3ÀÏ (¿µ¾÷ÀÏ ±âÁØ)

    
    
    




¡Ø º» »óǰÀº ¿µ¹® ÀÚ·á·Î Çѱ۰ú ¿µ¹® ¸ñÂ÷¿¡ ºÒÀÏÄ¡ÇÏ´Â ³»¿ëÀÌ ÀÖÀ» °æ¿ì ¿µ¹®À» ¿ì¼±ÇÕ´Ï´Ù. Á¤È®ÇÑ °ËÅ並 À§ÇØ ¿µ¹® ¸ñÂ÷¸¦ Âü°íÇØÁֽñ⠹ٶø´Ï´Ù.

¼¼°è 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀåÀº 2023³â ¾à 75¾ï 7,000¸¸ ´Þ·¯·Î Æò°¡µÇ¾ú°í, 2024-2032³âÀÇ ¿¹Ãø ±â°£ µ¿¾È 8.44% ÀÌ»óÀÇ °ß½ÇÇÑ ¼ºÀå·ü·Î ¼ºÀåÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù.

3D ±¤ÇÐ ÃøÁ¤Àº ºûÀ» Á¤º¸ ¿î¹Ýü·Î Ȱ¿ëÇÏ¿© Á¦Á¶ Á¦Ç° ¹× ºÎǰÀÇ Ä¡¼ö, °Å¸®, ¿Âµµ µîÀÇ ¹°¸®Àû Ư¼ºÀ» ÃøÁ¤ÇÕ´Ï´Ù. Àδõ½ºÆ®¸® 4.0ÀÇ ºÎ»ó°ú ÀÚµ¿È­·ÎÀÇ Àüȯ¿¡ µû¶ó 3D ±¤ÇÐ ÃøÁ¤°ú °°Àº ÷´Ü ±â¼ú¿¡ ´ëÇÑ ¼ö¿ä°¡ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. ÀÌ ±â¼úÀº ÃøÁ¤ ¹× ºÐ¼®ÀÇ Á¤È®µµ¸¦ ³ôÀÌ°í º¹ÀâÇÑ Á¦Ç°À» 3Â÷¿ø °ø°£¿¡ ¸ÅÇÎÇÏ´Â µ¥ ¸Å¿ì È¿°úÀûÀÔ´Ï´Ù.

3D ±¤ÇÐ ÃøÁ¤Àº º¹ÀâÇÑ Á¦Ç°À» È¿À²ÀûÀÌ°í ºñ¿ë È¿À²ÀûÀ¸·Î °Ë»çÇÒ ¼ö Àֱ⠶§¹®¿¡ »ê¾÷ ºÐ¾ß¿¡¼­ ³Î¸® »ç¿ëµÇ°í ÀÖ½À´Ï´Ù. »ó¼¼ÇÑ µ¥ÀÌÅÍ Æ÷ÀÎÆ®¸¦ ȹµæÇϰí Á¤È®ÇÑ ÃøÁ¤À» ÅëÇØ Á¦Ç° ¼³°è, Á¦Á¶ °øÁ¤ ¹× ǰÁú °ü¸®¸¦ °³¼±ÇÒ ¼ö ÀÖ½À´Ï´Ù. ÀÌ ±â¼úÀº ¶ÇÇÑ °øÁ¤ ÃÖÀûÈ­¿¡ ´ëÇÑ Áß¿äÇÑ ÅëÂû·ÂÀ» Á¦°øÇÏ¿© ±â¾÷ÀÌ È¿À²¼º, ¾ÈÀü¼º ¹× Á¦Ç° ǰÁúÀ» Çâ»ó½ÃŰ¸é¼­ ºñ¿ëÀ» Àý°¨ÇÒ ¼ö ÀÖµµ·Ï µ½½À´Ï´Ù. ÀÌ·¯ÇÑ ÀåÁ¡¿¡µµ ºÒ±¸Çϰí, 3D ±¤ÇÐ ÃøÁ¤ ½Ã½ºÅÛÀº ³ôÀº ¼³Ä¡ ºñ¿ëÀ¸·Î ÀÎÇØ ´ëÁßÈ­¿¡ °É¸²µ¹ÀÌ µÇ°í ÀÖ½À´Ï´Ù. ±×·¯³ª ÇöÀç ÁøÇà ÁßÀÎ ¹ßÀü°ú ÃßÀû¼º Çâ»ó¿¡ ´ëÇÑ ¿ä±¸°¡ ³ô¾ÆÁü¿¡ µû¶ó Àü ¼¼°è Á¦Á¶ ºÎ¹®¿¡¼­ ÀÌ ±â¼úÀÇ º¸±ÞÀÌ °¡¼ÓÈ­µÉ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù.

Á¦Á¶¾÷°è Àü¹Ý¿¡ °ÉÃÄ ÀÚµ¿ ±¤ÇÐ °Ë»ç(AOI) ½Ã½ºÅÛÀÇ ³ôÀº äÅ÷üÀº 3D ±¤ÇÐ ÃøÁ¤ÀÇ Á߿伺À» °­Á¶Çϰí ÀÖÀ¸¸ç, AOI ½Ã½ºÅÛ, CMM(CMM), ·¹ÀÌÀú ½ºÄ³´×, ±¤ÇÐ µðÁöŸÀÌÀú´Â °¢°¢ ´Ù¾çÇÑ ÀÀ¿ë ºÐ¾ß¿¡¼­ ÃøÁ¤ÀÇ Á¤È®¼º°ú ½Å·Ú¼ºÀ» º¸ÀåÇÏ´Â µ¥ Áß¿äÇÑ ¿ªÇÒÀ» Çϰí ÀÖ½À´Ï´Ù. Áß¿äÇÑ ¿ªÇÒÀ» Çϰí ÀÖ½À´Ï´Ù. ÀÌ·¯ÇÑ µµ±¸´Â ½Å¼ÓÇÑ °áÇÔ °¨Áö ¹× ǰÁú º¸ÁõÀ» ¿ëÀÌÇÏ°Ô ÇÒ »Ó¸¸ ¾Æ´Ï¶ó º¹ÀâÇÑ Çü»ó ÃøÁ¤ ¹× ¸®¹ö½º ¿£Áö´Ï¾î¸µ ÇÁ·Î¼¼½ºµµ Áö¿øÇÕ´Ï´Ù.

ÈÞ´ë¿ë ÃøÁ¤ ¾Ï, ·¹ÀÌÀú Æ®·¡Ä¿, ±¤ÇÐ ½ºÄ³³Ê¿Í °°Àº °í±Þ 3D ±¤ÇÐ ÃøÁ¤ Çϵå¿þ¾î Á¦Ç°À» »ç¿ëÇÒ ¼ö ÀÖ´Â °ÍÀº Á¤È®ÇÑ ÃøÁ¤À» ¼öÇàÇÏ´Â µ¥ ¸Å¿ì Áß¿äÇÕ´Ï´Ù. ÀÌ·¯ÇÑ ±¸¼º ¿ä¼Ò´Â ±¤¹üÀ§ÇÑ Á¤¹Ð ÃøÁ¤ ¿ëµµ¸¦ Áö¿øÇϰí Á¾ÇÕÀûÀÎ µ¥ÀÌÅÍ ¼öÁý°ú Á¤È®ÇÑ ÇØ¼®À» º¸ÀåÇÕ´Ï´Ù. ÇÔ²² Á¦°øµÇ´Â ¼ÒÇÁÆ®¿þ¾î ¸ðµâÀº ¸Þ½¬¸¦ ÃÖÀûÈ­Çϰí, 3D ÇÁ¸°ÆÃÀ» À§ÇÑ 3D ½ºÄµÀ» ÁغñÇϸç, ǰÁú °ü¸® Àü¹®°¡°¡ »ó¼¼ÇÑ °Ë»ç¸¦ ¼öÇàÇϰí Á¾ÇÕÀûÀÎ º¸°í¼­¸¦ ÀÛ¼ºÇÒ ¼ö ÀÖµµ·Ï Áö¿øÇÕ´Ï´Ù.

Ç×°ø¿ìÁÖ ¹× ¹æÀ§, ÀÚµ¿Â÷, Á¦Á¶, ¹ÝµµÃ¼ µîÀÇ »ê¾÷Àº 3D ±¤ÇÐ ÃøÁ¤ÀÇ ÇýÅÃÀ» ´©¸®°í ÀÖ½À´Ï´Ù. ÀÌµé ºÐ¾ß´Â Ä¡¼ö °Ë»ç, ǰÁú °ü¸®, °øÁ¤ ÃÖÀûÈ­¸¦ À§ÇØ ÀÌ ±â¼úÀ» Ȱ¿ëÇϰí ÀÖ½À´Ï´Ù. ¶ÇÇÑ, Á¦¾à ¾÷°è´Â 3D ±¤ÇÐ ÃøÁ¤À» »ç¿ëÇÏ¿© Á¤Á¦, ĸ½¶ µîÀÇ ºÎǰÀ» ºÐ¼®ÇÏ¿© ¾ö°ÝÇÑ »ç¾çÀ» ÃæÁ·ÇÏ´ÂÁö È®ÀÎÇÕ´Ï´Ù.

3D ±¤ÇÐ ÃøÁ¤ ¼¼°è ½ÃÀå Á¶»ç¿¡¼­ °í·ÁµÈ ÁÖ¿ä Áö¿ªÀº ¾Æ½Ã¾ÆÅÂÆò¾ç, ºÏ¹Ì, À¯·´, Áß³²¹Ì, ±âŸ ¶óƾ¾Æ¸Þ¸®Ä«ÀÔ´Ï´Ù. ºÏ¹Ì´Â 3D ±¤ÇÐ ÃøÁ¤ ºÐ¾ß¿¡¼­ ¼öÀÍ Ãø¸é¿¡¼­ °¡Àå Å« ºñÁßÀ» Â÷ÁöÇÏ´Â Áö¿ªÀÔ´Ï´Ù. ÀÌ Áö¿ª ½ÃÀå ¼ºÀåÀº Á¦Á¶ ÀÚµ¿È­ ¹× ±â¼ú Çõ½ÅÀ¸·ÎÀÇ Àüȯ Áõ°¡¿Í °°Àº ¿äÀο¡ ±âÀÎÇϸç, APAC Áö¿ª ¿ª½Ã »ê¾÷ ¼ºÀå, ÇöÁö »ý»êÀ» Àå·ÁÇÏ´Â Á¤ºÎÀÇ ÀÌ´Ï¼ÅÆ¼ºê, ÷´Ü Á¦Á¶ ±â¼ú äÅÃÀ¸·Î ÀÎÇØ ±Þ¼ÓÇÑ ¼ºÀåÀ» °æÇèÇϰí ÀÖ½À´Ï´Ù. ÇÑÆí, ¾ÆÅÂÁö¿ª ½ÃÀåÀº »ê¾÷ ¼ºÀå, ÇöÁö »ý»êÀ» ÃËÁøÇϱâ À§ÇÑ Á¤ºÎÀÇ ÀÌ´Ï¼ÅÆ¼ºê, ÷´Ü Á¦Á¶ ±â¼ú äÅà µîÀ¸·Î ÀÎÇØ ¿¹Ãø ±â°£ µ¿¾È °¡Àå ºü¸¥ ¼Óµµ·Î ¼ºÀåÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. ¶ÇÇÑ, Àß ±¸ÃàµÈ Á¦Á¶ ºÎ¹®°ú Çõ½Å ±â¼ú¿¡ ´ëÇÑ ¸·´ëÇÑ ÅõÀÚ°¡ ÀÌ Áö¿ª ½ÃÀå ¼ºÀåÀ» ´õ¿í ÃËÁøÇϰí ÀÖ½À´Ï´Ù.

¸ñÂ÷

Á¦1Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ÁÖ¿ä ¿ä¾à

  • ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø(2022-2032³â)
  • Áö¿ªº° °³¿ä
  • ºÎ¹®º° °³¿ä
    • À¯Çüº°
    • ÄÄÆ÷³ÍÆ®º°
    • »ê¾÷º°
    • ¿ëµµº°
  • ÁÖ¿ä µ¿Çâ
  • °æ±âÈÄÅðÀÇ ¿µÇâ
  • ¾Ö³Î¸®½ºÆ®ÀÇ °á·Ð ¹× Á¦¾È

Á¦2Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå Á¤ÀÇ¿Í Á¶»çÀÇ ÀüÁ¦Á¶°Ç

  • Á¶»ç ¸ñÀû
  • ½ÃÀåÀÇ Á¤ÀÇ
  • Á¶»çÀÇ ÀüÁ¦Á¶°Ç
    • Æ÷ÇÔ°ú Á¦¿Ü
    • Á¦ÇÑ »çÇ×
    • °ø±ÞÃø ºÐ¼®
      • °¡¿ë¼º
      • ÀÎÇÁ¶ó
      • ±ÔÁ¦ ȯ°æ
      • ½ÃÀå °æÀï
      • °æÁ¦¼º(¼ÒºñÀÚ ½ÃÁ¡)
    • ¼ö¿äÃø ºÐ¼®
      • ±ÔÁ¦ ÇÁ·¹ÀÓ¿öÅ©
      • ±â¼ú Áøº¸
      • ģȯ°æ
      • ¼ÒºñÀÚ Àǽİú ¼ö¿ë
  • Á¶»ç ¹æ¹ý
  • Á¶»ç ´ë»ó³âµµ
  • ÅëÈ­ ȯ»êÀ²

Á¦3Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ¿ªÇÐ

  • ½ÃÀå ¼ºÀå ÃËÁø¿äÀÎ ]
  • ½ÃÀåÀÌ ÇØ°áÇØ¾ß ÇÒ °úÁ¦
  • ½ÃÀå ±âȸ

      Á¦4Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå »ê¾÷ ºÐ¼®

      • Porter's Five Forces ¸ðµ¨
        • °ø±Þ ±â¾÷ÀÇ ±³¼··Â
        • ¹ÙÀ̾îÀÇ ±³¼··Â
        • ½Å±Ô ÁøÃâ¾÷üÀÇ À§Çù
        • ´ëüǰÀÇ À§Çù
        • °æÀï ±â¾÷°£ °æÀï °ü°è
        • Porter's Five Forces ¸ðµ¨¿¡ ´ëÇÑ ¹Ì·¡Àû Á¢±Ù
        • Porter's Five ForcesÀÇ ¿µÇ⠺м®
      • PESTEL ºÐ¼®
        • Á¤Ä¡
        • °æÁ¦
        • »çȸ
        • ±â¼ú
        • ȯ°æ
        • ¹ý·ü
      • ÁÖ¿ä ÅõÀÚ ±âȸ
      • ÁÖ¿ä ¼º°ø Àü·«
      • ÆÄ±«Àû µ¿Çâ
      • ¾÷°è Àü¹®°¡ÀÇ °ßÇØ
      • ¾Ö³Î¸®½ºÆ®ÀÇ °á·Ð ¹× Á¦¾È

      Á¦5Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : À¯Çüº°, 2022³â-2032³â

      • ºÎ¹® ´ë½Ãº¸µå
      • ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå : ¸ÅÃâ µ¿Ç⠺м®, 2022³â¡¤2032³â
        • 3D ÀÚµ¿ ±¤ÇÐ °Ë»ç ½Ã½ºÅÛ
        • 3D ÁÂÇ¥ ÃøÁ¤±â
        • ·¹ÀÌÀú ½ºÄµ
        • ±¤ÇÐ µðÁöŸÀÌÀú

      Á¦6Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : ÄÄÆ÷³ÍÆ®º°, 2022³â-2032³â

      • ºÎ¹® ´ë½Ãº¸µå
      • ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå : ¸ÅÃâ µ¿Ç⠺м®, 2022³â¡¤2032³â
        • Çϵå¿þ¾î
        • ¼ÒÇÁÆ®¿þ¾î

      Á¦7Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : »ê¾÷º°, 2022³â-2032³â

      • ºÎ¹® ´ë½Ãº¸µå
      • ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå : ¸ÅÃâ µ¿Ç⠺м®, 2022³â¡¤2032³â
        • Ç×°ø¿ìÁÖ ¹× ¹æÀ§
        • °ÇÃà ¹× °Ç¼³
        • ÀÚµ¿Â÷ ¹× ¿î¼Û
        • ¿¡³ÊÁö ¹× À¯Æ¿¸®Æ¼
        • Á¦Á¶¾÷
        • ÀÇ·á ¹× Á¦¾à
        • ¹ÝµµÃ¼ ¹× ÀÏ·ºÆ®·Î´Ð½º

      Á¦8Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : ¿ëµµº°, 2022³â-2032³â

      • ºÎ¹® ´ë½Ãº¸µå
      • ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå : ¸ÅÃâ µ¿Ç⠺м®, 2022³â¡¤2032³â
        • ǰÁú °ü¸®
        • ½Å¼Ó ÇÁ·ÎÅäŸÀÌÇÎ
        • ¸®¹ö½º ¿£Áö´Ï¾î¸µ
        • °¡»ó ¾î¼Àºí¸®

      Á¦9Àå ¼¼°èÀÇ 3D ±¤ÇÐ ÃøÁ¤ ½ÃÀå ±Ô¸ð¿Í ¿¹Ãø : Áö¿ªº°, 2022³â-2032³â

      • ºÏ¹Ì
        • ¹Ì±¹
        • ij³ª´Ù
      • À¯·´
        • ¿µ±¹
        • µ¶ÀÏ
        • ÇÁ¶û½º
        • ½ºÆäÀÎ
        • ÀÌÅ»¸®¾Æ
        • ±âŸ À¯·´
      • ¾Æ½Ã¾ÆÅÂÆò¾ç
        • Áß±¹
        • Àεµ
        • ÀϺ»
        • È£ÁÖ
        • Çѱ¹
        • ±âŸ ¾Æ½Ã¾ÆÅÂÆò¾ç
      • ¶óƾ¾Æ¸Þ¸®Ä«
        • ºê¶óÁú
        • ¸ß½ÃÄÚ
        • ±âŸ ¶óƾ¾Æ¸Þ¸®Ä«
      • Áßµ¿ ¹× ¾ÆÇÁ¸®Ä«
        • »ç¿ìµð¾Æ¶óºñ¾Æ
        • ³²¾ÆÇÁ¸®Ä«°øÈ­±¹
        • ±âŸ Áßµ¿ ¹× ¾ÆÇÁ¸®Ä«

      Á¦10Àå °æÀï Á¤º¸

      • ÁÖ¿ä ±â¾÷ÀÇ SWOT ºÐ¼®
      • ÁÖ¿ä ½ÃÀå Àü·«
      • ±â¾÷ °³¿ä
        • Advantest Corporation
          • ÁÖ¿ä Á¤º¸
          • °³¿ä
          • À繫(µ¥ÀÌÅÍ ÀÔ¼ö°¡ °¡´ÉÇÑ °æ¿ì)
          • Á¦Ç° °³¿ä
          • ½ÃÀå Àü·«
        • AMETEK, Inc.
        • Artec Europe, S.a.r.l.
        • Atlas Copco AB
        • Baker Hughes Company
        • Bruker Corporation
        • Carl Zeiss AG
        • Cognex Corporation
        • FARO Technologies, Inc.
        • Hexagon AB
        • InnovMetric Software Inc.
        • Jenoptik AG
        • Keyence Corporation
        • KLA Corporation
        • Mahr GmbH

      Á¦11Àå Á¶»ç °úÁ¤

      • Á¶»ç °úÁ¤
        • µ¥ÀÌÅÍ ¸¶ÀÌ´×
        • ºÐ¼®
        • ½ÃÀå ÃßÁ¤
        • °ËÁõ
        • ÃâÆÇ
      • Á¶»ç ¼Ó¼º
      LSH 24.07.24

      Global 3D Optical Metrology Market is valued at approximately USD 7.57 billion in 2023 and is anticipated to grow with a healthy growth rate of more than 8.44% over the forecast period 2024-2032. 3D optical metrology leverages light as an information carrier to measure physical properties such as dimensions, distances, and temperatures of manufacturing products and components. With the rise of Industry 4.0 and the shift towards automation, there is a growing demand for advanced technologies like 3D optical metrology. This technology enhances precision in measurement and analysis, making it invaluable for mapping complex products in three-dimensional space.

      3D optical metrology is increasingly adopted in the industrial sector due to its efficient and cost-effective inspection capabilities for intricate products. It captures detailed data points and provides precise measurements, thereby improving product design, manufacturing processes, and quality control. This technology also offers significant insights into process optimization, helping companies reduce costs while enhancing efficiency, safety, and product quality. Despite its advantages, the high setup costs of 3D optical metrology systems can hinder its widespread adoption. However, ongoing advancements and the increasing need for improved traceability are expected to drive the technology's uptake in manufacturing sectors globally.

      The high adoption of automated optical inspection (AOI) systems across the manufacturing sector highlights the growing significance of 3D optical metrology. AOI systems, coordinate measuring machines (CMMs), laser scanning, and optical digitizers each play crucial roles in ensuring the accuracy and reliability of measurements in various applications. These tools not only facilitate rapid defect detection and quality assurance but also support complex geometric measurements and reverse engineering processes.

      The availability of advanced 3D optical metrology hardware products, such as portable measuring arms, laser trackers, and optical scanners, is crucial for precise measuring purposes. These components cater to a wide range of precision measurement applications, ensuring comprehensive data capture and accurate interpretation. The accompanying software modules optimize meshes, prepare 3D scans for 3D printing, and enable quality control professionals to perform detailed inspections and generate comprehensive reports.

      Industries such as aerospace & defense, automotive, manufacturing, and semiconductor sectors are significantly benefiting from 3D optical metrology. These sectors rely on the technology for dimensional inspection, quality control, and process optimization. Additionally, the pharmaceutical industry utilizes 3D optical metrology for analyzing components like tablets and capsules, ensuring they meet stringent specifications.

      The key regions considered for the global 3D Optical Metrology study include Asia Pacific, North America, Europe, Latin America, and Rest of the World. North America is a dominating region in the 3D Optical Metrology in terms of revenue. The market growth in the region is being attributed to factors including the increasing shift towards automation and innovation in manufacturing. The APAC region is also experiencing rapid expansion, driven by industrial growth, government initiatives to boost local production, and the adoption of advanced manufacturing technologies. Whereas, the market in Asia Pacific is anticipated to grow at the fastest rate over the forecast period fueled by industrial growth, government initiatives to boost local production, and the adoption of advanced manufacturing technologies. Also, well-established manufacturing sectors and substantial investments in innovative technologies are further fostering the regional market growth.

      Major market players included in this report are:

      • Advantest Corporation
      • AMETEK, Inc.
      • Artec Europe, S.a.r.l.
      • Atlas Copco AB
      • Baker Hughes Company
      • Bruker Corporation
      • Carl Zeiss AG
      • Cognex Corporation
      • FARO Technologies, Inc.
      • Hexagon AB
      • InnovMetric Software Inc.
      • Jenoptik AG
      • Keyence Corporation
      • KLA Corporation
      • Mahr GmbH

      The detailed segments and sub-segment of the market are explained below:

      By Type:

      • 3D Automated Optical Inspection System
      • Coordinate Measuring Machine
      • Laser Scanning
      • Optical Digitizer

      By Component:

      • Hardware
      • Software

      By Industry:

      • Aerospace & Defense
      • Architecture & Construction
      • Automotive & Transportation
      • Energy & Utilities
      • Manufacturing
      • Medical & Pharmaceuticals
      • Semiconductor & Electronics

      By Application:

      • Quality Control
      • Rapid Prototyping
      • Reverse Engineering
      • Virtual Assembly

      By Region:

      • North America
      • U.S.
      • Canada
      • Europe
      • UK
      • Germany
      • France
      • Spain
      • Italy
      • ROE
      • Asia Pacific
      • China
      • India
      • Japan
      • Australia
      • South Korea
      • RoAPAC
      • Latin America
      • Brazil
      • Mexico
      • RoLA
      • Middle East & Africa
      • Saudi Arabia
      • South Africa
      • RoMEA

      Years considered for the study are as follows:

      • Historical year - 2022
      • Base year - 2023
      • Forecast period - 2024 to 2032

      Key Takeaways:

      • Market Estimates & Forecast for 10 years from 2022 to 2032.
      • Annualized revenues and regional level analysis for each market segment.
      • Detailed analysis of geographical landscape with Country level analysis of major regions.
      • Competitive landscape with information on major players in the market.
      • Analysis of key business strategies and recommendations on future market approach.
      • Analysis of competitive structure of the market.
      • Demand side and supply side analysis of the market.

      Table of Contents

      Chapter 1. Global 3D Optical Metrology Market Executive Summary

      • 1.1. Global 3D Optical Metrology Market Size & Forecast (2022-2032)
      • 1.2. Regional Summary
      • 1.3. Segmental Summary
        • 1.3.1. By Type
        • 1.3.2. By Component
        • 1.3.3. By Industry
        • 1.3.4. By Application
      • 1.4. Key Trends
      • 1.5. Recession Impact
      • 1.6. Analyst Recommendation & Conclusion

      Chapter 2. Global 3D Optical Metrology Market Definition and Research Assumptions

      • 2.1. Research Objective
      • 2.2. Market Definition
      • 2.3. Research Assumptions
        • 2.3.1. Inclusion & Exclusion
        • 2.3.2. Limitations
        • 2.3.3. Supply Side Analysis
          • 2.3.3.1. Availability
          • 2.3.3.2. Infrastructure
          • 2.3.3.3. Regulatory Environment
          • 2.3.3.4. Market Competition
          • 2.3.3.5. Economic Viability (Consumer's Perspective)
        • 2.3.4. Demand Side Analysis
          • 2.3.4.1. Regulatory frameworks
          • 2.3.4.2. Technological Advancements
          • 2.3.4.3. Environmental Considerations
          • 2.3.4.4. Consumer Awareness & Acceptance
      • 2.4. Estimation Methodology
      • 2.5. Years Considered for the Study
      • 2.6. Currency Conversion Rates

      Chapter 3. Global 3D Optical Metrology Market Dynamics

      • 3.1. Market Drivers
        • 3.1.1. Growing Focus on Industry 4.0 and Automation
        • 3.1.2. Increasing Demand for Precise Measurement in Manufacturing
        • 3.1.3. Process Optimization and Cost Reduction
      • 3.2. Market Challenges
        • 3.2.1. High Setup Costs
        • 3.2.2. Technical Complexity and Integration Issues
      • 3.3. Market Opportunities
        • 3.3.1. Advancements in 3D Metrology Technology
        • 3.3.2. Emerging Use Cases and Applications
        • 3.3.3. Improved Traceability and Quality Control

      Chapter 4. Global 3D Optical Metrology Market Industry Analysis

      • 4.1. Porter's 5 Force Model
        • 4.1.1. Bargaining Power of Suppliers
        • 4.1.2. Bargaining Power of Buyers
        • 4.1.3. Threat of New Entrants
        • 4.1.4. Threat of Substitutes
        • 4.1.5. Competitive Rivalry
        • 4.1.6. Futuristic Approach to Porter's 5 Force Model
        • 4.1.7. Porter's 5 Force Impact Analysis
      • 4.2. PESTEL Analysis
        • 4.2.1. Political
        • 4.2.2. Economical
        • 4.2.3. Social
        • 4.2.4. Technological
        • 4.2.5. Environmental
        • 4.2.6. Legal
      • 4.3. Top investment opportunity
      • 4.4. Top winning strategies
      • 4.5. Disruptive Trends
      • 4.6. Industry Expert Perspective
      • 4.7. Analyst Recommendation & Conclusion

      Chapter 5. Global 3D Optical Metrology Market Size & Forecasts by Type 2022-2032

      • 5.1. Segment Dashboard
      • 5.2. Global 3D Optical Metrology Market: Type Revenue Trend Analysis, 2022 & 2032 (USD Billion)
        • 5.2.1. 3D Automated Optical Inspection System
        • 5.2.2. Coordinate Measuring Machine
        • 5.2.3. Laser Scanning
        • 5.2.4. Optical Digitizer

      Chapter 6. Global 3D Optical Metrology Market Size & Forecasts by Component 2022-2032

      • 6.1. Segment Dashboard
      • 6.2. Global 3D Optical Metrology Market: Component Revenue Trend Analysis, 2022 & 2032 (USD Billion)
        • 6.2.1. Hardware
        • 6.2.2. Software

      Chapter 7. Global 3D Optical Metrology Market Size & Forecasts by Industry 2022-2032

      • 7.1. Segment Dashboard
      • 7.2. Global 3D Optical Metrology Market: Industry Revenue Trend Analysis, 2022 & 2032 (USD Billion)
        • 7.2.1. Aerospace & Defense
        • 7.2.2. Architecture & Construction
        • 7.2.3. Automotive & Transportation
        • 7.2.4. Energy & Utilities
        • 7.2.5. Manufacturing
        • 7.2.6. Medical & Pharmaceuticals
        • 7.2.7. Semiconductor & Electronics

      Chapter 8. Global 3D Optical Metrology Market Size & Forecasts by Application 2022-2032

      • 8.1. Segment Dashboard
      • 8.2. Global 3D Optical Metrology Market: Application Revenue Trend Analysis, 2022 & 2032 (USD Billion)
        • 8.2.1. Quality Control
        • 8.2.2. Rapid Prototyping
        • 8.2.3. Reverse Engineering
        • 8.2.4. Virtual Assembly

      Chapter 9. Global 3D Optical Metrology Market Size & Forecasts by Region 2022-2032

      • 9.1. North America 3D Optical Metrology Market
        • 9.1.1. U.S. 3D Optical Metrology Market
          • 9.1.1.1. Type breakdown size & forecasts, 2022-2032
          • 9.1.1.2. Component breakdown size & forecasts, 2022-2032
          • 9.1.1.3. Industry breakdown size & forecasts, 2022-2032
          • 9.1.1.4. Application breakdown size & forecasts, 2022-2032
        • 9.1.2. Canada 3D Optical Metrology Market
      • 9.2. Europe 3D Optical Metrology Market
        • 9.2.1. U.K. 3D Optical Metrology Market
        • 9.2.2. Germany 3D Optical Metrology Market
        • 9.2.3. France 3D Optical Metrology Market
        • 9.2.4. Spain 3D Optical Metrology Market
        • 9.2.5. Italy 3D Optical Metrology Market
        • 9.2.6. Rest of Europe 3D Optical Metrology Market
      • 9.3. Asia-Pacific 3D Optical Metrology Market
        • 9.3.1. China 3D Optical Metrology Market
        • 9.3.2. India 3D Optical Metrology Market
        • 9.3.3. Japan 3D Optical Metrology Market
        • 9.3.4. Australia 3D Optical Metrology Market
        • 9.3.5. South Korea 3D Optical Metrology Market
        • 9.3.6. Rest of Asia Pacific 3D Optical Metrology Market
      • 9.4. Latin America 3D Optical Metrology Market
        • 9.4.1. Brazil 3D Optical Metrology Market
        • 9.4.2. Mexico 3D Optical Metrology Market
        • 9.4.3. Rest of Latin America 3D Optical Metrology Market
      • 9.5. Middle East & Africa 3D Optical Metrology Market
        • 9.5.1. Saudi Arabia 3D Optical Metrology Market
        • 9.5.2. South Africa 3D Optical Metrology Market
        • 9.5.3. Rest of Middle East & Africa 3D Optical Metrology Market

      Chapter 10. Competitive Intelligence

      • 10.1. Key Company SWOT Analysis
      • 10.2. Top Market Strategies
      • 10.3. Company Profiles
        • 10.3.1. Advantest Corporation
          • 10.3.1.1. Key Information
          • 10.3.1.2. Overview
          • 10.3.1.3. Financial (Subject to Data Availability)
          • 10.3.1.4. Product Summary
          • 10.3.1.5. Market Strategies
        • 10.3.2. AMETEK, Inc.
        • 10.3.3. Artec Europe, S.a.r.l.
        • 10.3.4. Atlas Copco AB
        • 10.3.5. Baker Hughes Company
        • 10.3.6. Bruker Corporation
        • 10.3.7. Carl Zeiss AG
        • 10.3.8. Cognex Corporation
        • 10.3.9. FARO Technologies, Inc.
        • 10.3.10. Hexagon AB
        • 10.3.11. InnovMetric Software Inc.
        • 10.3.12. Jenoptik AG
        • 10.3.13. Keyence Corporation
        • 10.3.14. KLA Corporation
        • 10.3.15. Mahr GmbH

      Chapter 11. Research Process

      • 11.1. Research Process
        • 11.1.1. Data Mining
        • 11.1.2. Analysis
        • 11.1.3. Market Estimation
        • 11.1.4. Validation
        • 11.1.5. Publishing
      • 11.2. Research Attributes
ºñ±³¸®½ºÆ®
0 °ÇÀÇ »óǰÀ» ¼±Åà Áß
»óǰ ºñ±³Çϱâ
Àüü»èÁ¦