![]() |
½ÃÀ庸°í¼
»óǰÄÚµå
1403352
¼¼°èÀÇ ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â ½ÃÀå ¿¹Ãø(-2030³â) : À¯Çü, Á֯ļö ¹üÀ§, ÀÀ¿ë ºÐ¾ß ¹× Áö¿ªº° ºÐ¼®Modular Phase Noise Analyzer Market Forecasts to 2030 - Global Analysis By Type (RF Phase Noise Analyzer and Laser Phase Noise Analyzer), Frequency Range (Up to 1 GHz, 1-10 GHz, 10-50 GHz and Above 50 GHz), Application and By Geography |
¼¼°èÀÇ ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â ½ÃÀå ±Ô¸ð´Â ¿¹Ãø ±â°£ µ¿¾È ¿¬Æò±Õ º¹ÇÕ ¼ºÀå·ü(CAGR) 5.5%·Î ¼ºÀåÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù.
¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â´Â ÀüÀÚ ½ÅÈ£ÀÇ À§»ó ÀâÀ½À» ÃøÁ¤ÇÏ´Â Áß¿äÇÑ Àü¹® µµ±¸ÀÔ´Ï´Ù. ³ëÀÌÁîÀÇ Æ¯¼ºÀ» Á¤È®ÇÏ°Ô Æò°¡ÇÏ¿© Åë½Å, Ç×°ø¿ìÁÖ, ¹«¼± Åë½Å¿¡¼ ½ÅÈ£ÀÇ ¾ÈÁ¤¼ºÀ» º¸ÀåÇÕ´Ï´Ù. ½ÅÈ£ ¹«°á¼º Æò°¡¿¡ ÇʼöÀûÀ̸ç 5G, ¾çÀÚ ÄÄÇ»ÆÃ, À§¼º Åë½Å µî ÷´Ü ±â¼úÀ» Áö¿øÇÏ¿© º¹ÀâÇÑ ÀüÀÚ ½Ã½ºÅÛ¿¡¼ °íǰÁúÀÇ ¾ÈÁ¤ÀûÀÎ ½ÅÈ£ Àü¼ÛÀ» º¸ÀåÇÕ´Ï´Ù.
»ç¹°ÀÎÅͳÝ, ÀÚµ¿Â÷, ¸ð¹ÙÀÏ ±â±â, ½º¸¶Æ® ÀÎÇÁ¶ó µî ´Ù¾çÇÑ »ê¾÷¿¡¼ ¹«¼± Åë½ÅÀÌ È®»êµÊ¿¡ µû¶ó ¾ÈÁ¤ÀûÀÌ°í °íǰÁúÀÇ ¹«¼± Á֯ļö¿¡ ´ëÇÑ Çʿ伺ÀÌ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. ¿øÈ°ÇÏ°í ½Å·ÚÇÒ ¼ö ÀÖ´Â ¹«¼± Åë½ÅÀ» À§ÇØ ÀÌ ºÐ¼®±â´Â Àü¼Û ½ÅÈ£°¡ ÇÊ¿äÇÑ ¾ÈÁ¤¼º, ½ºÆåÆ®·³ ¼øµµ ¹× ÀúÀâÀ½ ¼öÁØÀ» À¯ÁöÇϵµ·Ï º¸ÀåÇÕ´Ï´Ù. ¶ÇÇÑ, Á¡Á¡ ´õ È®´ëµÇ°í ÀÖ´Â ¹«¼± Åë½Å ±â¼ú¿¡¼ ÃÖÀûÀÇ ½ÅÈ£ ǰÁú°ú È¿À²¼ºÀ» º¸ÀåÇϱâ À§Çؼ´Â ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â¿Í °°Àº Á¤¹ÐÇÑ Å×½ºÆ® ¹× ºÐ¼® Àåºñ°¡ ÇÊ¿äÇÕ´Ï´Ù.
¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â´Â ÀüÀÚ ½ÅÈ£ÀÇ À§»ó ÀâÀ½À» Á¤È®ÇÏ°Ô ÃøÁ¤ÇÏ°í ºÐ¼®Çϱâ À§ÇØ º¹ÀâÇÑ ±â¼ú°ú Ư¼öÇÑ ±¸¼º ¿ä¼Ò¸¦ °®Ãß°í ÀÖ½À´Ï´Ù. Á¤±³ÇÑ ¿£Áö´Ï¾î¸µ, °í±Þ ºÎǰ, ¾ö°ÝÇÑ Á¦Á¶ ±âÁØÀº Á¦Á¶ ºñ¿ë »ó½ÂÀ¸·Î À̾îÁý´Ï´Ù. ±× °á°ú, ÀÌ·¯ÇÑ ºÐ¼®±â¸¦ Á¶´ÞÇÏ´Â µ¥ ÇÊ¿äÇÑ Ãʱâ ÅõÀÚ´Â ÀáÀçÀû ±¸¸ÅÀÚ, ƯÈ÷ ¿¹»êÀÌ Á¦ÇÑµÈ Áß¼Ò±â¾÷, ¿¬±¸ ±â°ü ¹× ½Å»ý ±â¾÷¿¡°Ô Àå¾Ö¹°ÀÌ µÇ´Â °æ¿ì°¡ ¸¹½À´Ï´Ù. ¶ÇÇÑ, Áö¼ÓÀûÀÎ À¯Áöº¸¼ö, ±³Á¤ ¹× ¾÷±×·¹ÀÌµå ºñ¿ëÀÌ ¹ß»ýÇÏ¿© ÃѼÒÀ¯ºñ¿ëÀÌ ´õ¿í Áõ°¡ÇÏ°Ô µË´Ï´Ù.
¾çÀÚ ÄÄÇ»ÆÃ, Ç×°ø¿ìÁÖ Çõ½Å, À§¼º Åë½Å°ú °°Àº ½Å±â¼úÀº ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â ½ÃÀå¿¡ ¸Å·ÂÀûÀÎ ±âȸ¸¦ Á¦°øÇÕ´Ï´Ù. ÀÌ·¯ÇÑ Ã·´Ü ºÐ¾ß¿¡¼´Â º¹ÀâÇÑ ½Ã½ºÅÛÀ» À§ÇØ ¸Å¿ì ¾ÈÁ¤ÀûÀÎ Á֯ļö ¼Ò½º¿Í Á¤¹ÐÇÑ ½ÅÈ£ ºÐ¼®ÀÌ ¿ä±¸µË´Ï´Ù. À§»ó ³ëÀÌÁî ºÐ¼®±â´Â ÀÌ·¯ÇÑ Ã·´Ü ±â¼úÀÇ ±âÃʰ¡ µÇ´Â Á֯ļö ¼Ò½ºÀÇ Á¤È®¼º°ú ¾ÈÁ¤¼ºÀ» º¸ÀåÇÏ´Â µ¥ Áß¿äÇÑ ¿ªÇÒÀ» ÇÕ´Ï´Ù. ¿¹¸¦ µé¾î, ¾çÀÚ ÄÄÇ»ÆÃ¿¡¼´Â ¾çÀÚ ºñÆ®ÀÇ ÀÛµ¿À» À§ÇØ ¸Å¿ì ¾ÈÁ¤ÀûÀÎ ½ÅÈ£°¡ ÇÊ¿äÇϸç, Ç×°ø¿ìÁÖ ¹× À§¼º Åë½Å ½Ã½ºÅÛ¿¡¼´Â ½Å·ÚÇÒ ¼ö ÀÖ°í Á¤È®ÇÑ µ¥ÀÌÅÍ Àü¼ÛÀ» À§ÇØ °í¼º´É ºÎǰÀÌ ÇÊ¿äÇÕ´Ï´Ù.
ÄÄÇöóÀ̾𽺠ǥÁØÀÇ º¯°æ°ú »õ·Î¿î ±ÔÁ¤ÀÇ µµÀÔÀº ÃֽŠ¿ä±¸ »çÇ×À» ÃæÁ·Çϱâ À§ÇØ Á¦Á¶ °øÁ¤°ú Á¦Ç° ±â´ÉÀ» Á¶Á¤Çϰųª ¼öÁ¤ÇÏ´Â µ¥ ºñ¿ëÀÌ ¸¹ÀÌ µå´Â ÀÛ¾÷À» ¿ä±¸ÇÕ´Ï´Ù. Á¦Á¶¾÷ü´Â Áö¼ÓÀûÀÎ Á¦Ç° Çõ½Å°ú ºñ¿ë È¿À²¼ºÀ» º¸ÀåÇÏ¸é¼ ÀÌ·¯ÇÑ Ç¥ÁØÀ» ÃæÁ·ÇØ¾ß ÇÏ´Â ¹®Á¦¿¡ Á÷¸éÇØ ÀÖ½À´Ï´Ù. ÀÌ·¯ÇÑ ±ÔÁ¦¸¦ ÁؼöÇÏÁö ¸øÇÏ¸é ½ÃÀå Á¢±ÙÀÌ Á¦Çѵǰųª ¹ú±ÝÀÌ ºÎ°úµÉ ¼ö ÀÖÀ¸¸ç, ÀÌ´Â À§»ó ³ëÀÌÁî ºÐ¼®±â Á¦Á¶¾÷üÀÇ °æÀï·Â°ú ½ÃÀå ÀÔÁö¿¡ ¿µÇâÀ» ¹ÌÄ¥ ¼ö ÀÖ½À´Ï´Ù.
Äڷγª19 »çÅ´ Ãʱ⿡´Â ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â ½ÃÀå¿¡ È¥¶õÀ» ÀÏÀ¸Ä״µ¥, ÀÌ´Â ºÀ¼â¿Í °ø±Þ¸Á È¥¶õÀ¸·Î ÀÎÇØ »ý»êÀÌ Áö¿¬µÇ°í ¼³Ä¡¿¡ Â÷ÁúÀÌ »ý°å±â ¶§¹®ÀÔ´Ï´Ù. ±×·¯³ª ¿ø°Ý Å×½ºÆ® ¼Ö·ç¼Ç¿¡ ´ëÇÑ ¼ö¿ä Áõ°¡¿Í ¿ø°Ý ±Ù¹« ¹× ¿Â¶óÀÎ ¼ºñ½º¸¦ À§ÇÑ ¾ÈÁ¤ÀûÀÎ Åë½Å ½Ã½ºÅÛ¿¡ ´ëÇÑ ÀÇÁ¸µµ°¡ ³ô¾ÆÁü¿¡ µû¶ó ½ÃÀåÀº Á¡Â÷ ȸº¹¼¼¸¦ º¸À̰í ÀÖ½À´Ï´Ù. Åë½Å, Ç×°ø¿ìÁÖ, ±¹¹æ µî ºÐ¼®±â¸¦ ¸¹ÀÌ »ç¿ëÇÏ´Â »ê¾÷Àº ÷´Ü Å×½ºÆ® Àåºñ¿¡ ´ëÇÑ ÅõÀÚ¸¦ °è¼ÓÇß½À´Ï´Ù. ¶ÇÇÑ Àü¿°º´Àº µðÁöÅÐ Çõ½ÅÀ» °¡¼ÓÈÇÏ°í °íǰÁú Åë½Å ³×Æ®¿öÅ©ÀÇ Çʿ伺À» °Á¶ÇÏ¿© ½ÃÀå ¼ºÀåÀ» °¡¼ÓÇß½À´Ï´Ù.
RF À§»ó ³ëÀÌÁî ºÐ¼®±â ºÎ¹®ÀÌ °¡Àå Å« Á¡À¯À²À» Â÷ÁöÇÒ °ÍÀ¸·Î ¿¹»óµÇ¸ç, RF À§»ó ³ëÀÌÁî ºÐ¼®±â´Â Åë½Å, ·¹ÀÌ´õ ¹× ¹«¼± ½Ã½ºÅÛ¿¡¼ Áß¿äÇÑ RF ½ÅÈ£ÀÇ ´Ü±âÀûÀÎ À§»ó º¯µ¿À» ºÐ¼®Çϰí Á¤·®ÈÇÏ´Â µ¥ ƯȵǾî ÀÖ½À´Ï´Ù. ½ºÆåÆ®·³ ¹Ðµµ¸¦ Æò°¡Çϱâ À§ÇØ °íÁÖÆÄ ±â¼úÀ» »ç¿ëÇÏ¿© ½ÅÈ£ ǰÁúÀÇ Á¤È®ÇÑ ÃøÁ¤ ¹× Ư¼ºÈ¸¦ º¸ÀåÇÕ´Ï´Ù. ¶ÇÇÑ, ÀÌ·¯ÇÑ ºÐ¼®±â´Â ÀϹÝÀûÀ¸·Î ¹ßÁø±â ¼º´É, Á֯ļö ÇÕ¼º±â ¹× ±âŸ RF ±¸¼º ¿ä¼Ò¸¦ ÃÖÀûÈÇÏ´Â µ¥ µµ¿òÀÌ µÇ´Â ÃøÁ¤°ªÀ» Á¦°øÇϸç, ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±âÀÇ ±¤¹üÀ§ÇÑ ½ºÆåÆ®·³¿¡¼ ´Ù¾çÇÑ RF ÀÀ¿ë ºÐ¾ß¿¡¼ ½ÅÈ£ ¹«°á¼º°ú ½Å·Ú¼ºÀ» À¯ÁöÇÏ´Â µ¥ ÇʼöÀûÀÎ ¿ªÇÒÀ» ÇÕ´Ï´Ù.
Åë½Å ºÎ¹®Àº ¿¹Ãø ±â°£ µ¿¾È À¯¸®ÇÑ ¼ºÀå¼¼¸¦ º¸ÀÏ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. Åë½ÅÀº Á¤È®ÇÑ Á֯ļö Á¦¾î¿Í ½ÅÈ£ ¾ÈÁ¤¼º¿¡ Å©°Ô ÀÇÁ¸Çϰí ÀÖ½À´Ï´Ù. À§»ó ³ëÀÌÁî ºÐ¼®±â´Â Åë½Å ³×Æ®¿öÅ©¿¡¼ ¹ßÁø±â, ÇÕ¼º±â ¹× RF ±¸¼º ¿ä¼ÒÀÇ ¼º´ÉÀ» Æò°¡Çϰí Çâ»ó½ÃŰ´Â µ¥ ¸Å¿ì Áß¿äÇÑ ¿ªÇÒÀ» ÇÕ´Ï´Ù. ÀÌ·¯ÇÑ ºÐ¼®±â´Â ½ÅÈ£ ǰÁúÀ» ÃÖÀûÈÇϰí, °£¼·À» ÁÙÀ̸ç, ½ºÆåÆ®·³ È¿À²À» °³¼±ÇÏ´Â µ¥ µµ¿òÀ» ÁÖ¸ç, 5G ¹× Beyond 5G¿Í °°Àº Åë½Å ±â¼úÀÌ Áö¼ÓÀûÀ¸·Î ¹ßÀüÇÔ¿¡ µû¶ó ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â¿¡ ´ëÇÑ ¼ö¿ä´Â Åë½Å ³×Æ®¿öÅ©ÀÇ Ç°Áú°ú È¿À²¼ºÀ» À¯Áö ¹× °³¼±ÇÏ´Â µ¥ Áß¿äÇÑ ¿ªÇÒÀ» Çϰí ÀÖ½À´Ï´Ù. Áß¿äÇÑ ¿ªÇÒÀ» Çϰí ÀÖ½À´Ï´Ù.
¾Æ½Ã¾ÆÅÂÆò¾çÀº Åë½Å ±â¼úÀÇ ±Þ¼ÓÇÑ ¹ßÀü°ú °í¼Ó µ¥ÀÌÅÍ Àü¼Û¿¡ ´ëÇÑ ¼ö¿ä Áõ°¡·Î ÀÎÇØ ¿¹Ãø ±â°£ µ¿¾È °¡Àå Å« ½ÃÀå Á¡À¯À²À» Â÷ÁöÇÒ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. ÀÌ Áö¿ª¿¡¼´Â Á¤È®ÇÑ Á֯ļö ºÐ¼®°ú ½ÅÈ£ ǰÁú Çâ»óÀ» À§ÇØ Åë½Å, Ç×°ø¿ìÁÖ, ¹æÀ§ »ê¾÷¿¡¼ ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±âÀÇ Ã¤ÅÃÀÌ Áõ°¡Çϰí ÀÖ½À´Ï´Ù. ƯÈ÷ Áß±¹, ÀϺ», Çѱ¹ µîÀÇ ±¹°¡¿¡¼ ¿¬±¸°³¹ß¿¡ ´ëÇÑ ÅõÀÚ°¡ Áõ°¡ÇÏ¸é¼ ½ÃÀå È®´ë¿¡ ´õ¿í ¹ÚÂ÷¸¦ °¡Çϰí ÀÖ½À´Ï´Ù. ¶ÇÇÑ, 5G ³×Æ®¿öÅ© °³¹ß ¹× À§¼º Åë½Å ½Ã½ºÅÛ¿¡ ´ëÇÑ °ü½ÉÀÌ ³ô¾ÆÁö¸é¼ ¾Æ½Ã¾ÆÅÂÆò¾çÀÇ ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±â ¼ö¿ä Áõ°¡¿¡ Å« ±â¿©¸¦ Çϰí ÀÖ½À´Ï´Ù.
ºÏ¹Ì´Â ÷´Ü ±â¼ú ºÐ¾ß¿¡¼ °·ÂÇÑ ÀÔÁö¸¦ ±¸ÃàÇϰí ÀÖ¾î ¿¹Ãø ±â°£ µ¿¾È ¼öÀͼº ³ôÀº ¼ºÀåÀ» º¸ÀÏ °ÍÀ¸·Î ¿¹»óµË´Ï´Ù. ÷´Ü Åë½Å, Ç×°ø¿ìÁÖ, ¹æÀ§»ê¾÷¿¡ ÁßÁ¡À» µÎ°í ÀÖ´Â ÀÌ Áö¿ª¿¡¼´Â ¸ðµâÇü À§»óÀâÀ½ ºÐ¼®±â¿Í °°Àº Á¤¹ÐÇÑ Á֯ļö ºÐ¼® µµ±¸¿¡ ´ëÇÑ ¼ö¿ä°¡ ³ô½À´Ï´Ù. ½ÃÀå È®´ë´Â ƯÈ÷ ¹Ì±¹, ij³ª´Ù, ¸ß½ÃÄÚÀÇ Áö¼ÓÀûÀÎ ±â¼ú Çõ½Å°ú ¿¬±¸¿¡ ÀÇÇØ ÃËÁøµÇ°í ÀÖ½À´Ï´Ù. ¶ÇÇÑ, 5G ±â¼ú, À§¼º Åë½Å ¹× IoT ¿ëµµ¿¡ ´ëÇÑ ÅõÀÚ Áõ°¡´Â ¸ðµâÇü À§»ó ³ëÀÌÁî ºÐ¼®±âÀÇ Ã¤ÅÃÀ» ÃËÁøÇϰí, ºÏ¹Ì¸¦ ±â¼ú ¹ßÀüÀÇ Áß¿äÇÑ °ÅÁ¡À¸·Î¼ ÀÌ ½ÃÀå ºÎ¹®ÀÇ Áö¼ÓÀûÀÎ ¼ºÀåÀ» °¡¼ÓÇϰí ÀÖ½À´Ï´Ù.
According to Stratistics MRC, the Global Modular Phase Noise Analyzer Market is growing at a CAGR of 5.5% during the forecast period. Modular phase noise analyzers are specialised tools crucial for measuring phase noise in electronic signals. They ensure signal stability in telecommunications, aerospace, and wireless communications by precisely evaluating noise characteristics. They're vital for signal integrity assessment, supporting advanced technologies like 5G, quantum computing, and satellite communications, and ensuring high-quality, reliable signal transmission in complex electronic systems.
The need for stable, high-quality radio frequencies is growing as wireless communication becomes increasingly prevalent in various industries, such as the Internet of Things, automobiles, mobile devices, and smart infrastructure. For smooth and dependable wireless communication, these analyzers ensure that the transmitted signals retain the necessary stability, spectral purity, and low noise levels. Moreover, to ensure optimal signal quality and efficiency in the ever-expanding landscape of wireless communication technologies, precise testing and analysis equipment, such as modular phase noise analyzers, are required.
Modular phase noise analyzers encompass intricate technology and specialised components to ensure precise measurement and analysis of phase noise in electronic signals. The sophisticated engineering, advanced components, and stringent manufacturing standards contribute to elevated production costs. Consequently, the initial investment required to procure these analyzers often becomes a hurdle for potential buyers, particularly smaller companies, research institutions, or start-ups with limited budgets. Moreover, ongoing maintenance, calibration, and upgrades incur additional expenses, amplifying the total cost of ownership.
Emerging technologies like quantum computing, aerospace innovations and satellite communications present a compelling opportunity for the modular phase noise analyzer market. These cutting-edge fields demand ultra-stable frequency sources and precise signal analysis for their intricate systems. Phase noise analyzers play a crucial role in ensuring the accuracy and stability of frequency sources, which are fundamental to these advanced technologies. Quantum computing, for instance, relies on extremely stable signals for qubit manipulation, while aerospace and satellite communication systems necessitate high-performance components for reliable and precise data transmission.
Changes in compliance criteria or the introduction of new regulations demand costly adjustments and modifications in manufacturing processes and product features to meet the updated requirements. Manufacturers face a problem meeting these standards while ensuring ongoing product innovation and cost-effectiveness. Failure to comply with these regulations could limit market access or result in penalties, potentially impacting the competitiveness and market presence of phase noise analyzer manufacturers.
The COVID-19 pandemic initially disrupted the modular phase noise analyzer market as lockdowns and supply chain disruptions slowed production and hindered installations. However, the market gradually recovered due to increased demand for remote testing solutions and the growing reliance on stable communication systems for remote work and online services. Industries like telecommunications, aerospace, and defence, which heavily use these analyzers, continued to invest in advanced testing equipment. Furthermore, the pandemic accelerated digital transformation, emphasising the need for high-quality communication networks, subsequently driving the market's growth.
The RF Phase Noise Analyzer segment is estimated to hold the largest share. The RF Phase Noise Analyzer specialises in analysing and quantifying the short-term fluctuations in the phase of RF signals, which are crucial in communication, radar, and wireless systems. RF-phase noise analyzers employ high-frequency techniques to evaluate noise spectral density around the carrier frequency, ensuring precise measurement and characterization of signal quality. Moreover, these analyzers typically provide measurements that assist in optimising oscillator performance, frequency synthesisers, and other RF components critical for maintaining signal integrity and reliability in diverse RF applications within the broader spectrum of modular phase noise analysis.
The Telecommunications segment is anticipated to have lucrative growth during the forecast period. Telecommunications heavily relies on precise frequency control and signal stability. Phase noise analyzers play a pivotal role in assessing and enhancing the performance of oscillators, synthesisers, and RF components within communication networks. These analyzers aid in optimising signal quality, reducing interference, and improving spectral efficiency. With the constant evolution of telecommunication technologies, such as 5G and beyond, the demand for modular phase noise analyzers remains instrumental in maintaining and advancing the quality and efficiency of telecommunications networks.
Asia Pacific commanded the largest market share during the extrapolated period owing to burgeoning advancements in telecommunication technologies and the expanding demand for high-speed data transfer. The region's market is witnessing increased adoption of modular phase noise analyzers across industries like telecommunications, aerospace, and defence for precise frequency analysis and signal quality enhancement. Growing investments in research and development, particularly in countries like China, Japan, and South Korea, further propel market expansion. Moreover, the rising focus on 5G network development and satellite communication systems contributes significantly to the escalating demand for modular phase noise analyzers in the Asia-Pacific region.
North America is expected to witness profitable growth over the projection period, due to its strong presence in advanced technological sectors. With a focus on cutting-edge telecommunications, aerospace, and defence industries, the region witnesses high demand for precise frequency analysis tools like modular phase noise analyzers. The market expansion is fuelled by continuous innovation and research, particularly in the United States, Canada, and Mexico. Additionally, increasing investments in 5G technology, satellite communications, and IoT applications bolster the adoption of modular phase noise analyzers, positioning North America as a key hub for technological advancements and driving sustained growth in this market segment.
Some of the key players in the Modular Phase Noise Analyzer Market include Rohde & Schwarz, Keysight Technologies, Inc., Anritsu Corporation, Noise XT, Microchip Technology, Berkeley Nucleonics Corporation, Wenzel Associates, Holzworth Instrumentation, OEwaves, Aeroflex, Inc. and Viavi Solutions Inc.
In September 2023, Rohde & Schwarz and SRC partner for new product developments for Electronic Warfare. The two companies work together to develop a new EW test solution, using both companies' technologies to generate high density RF environments, and more.
In March 2023, Rohde & Schwarz launches new EMI test receiver for emission measurements up to 30 MHz at the EMV 2023 in Stuttgart. The R&S EPL1000 is a compact, complete and CISPR 16-1-1 compliant test receiver for quick and precise EMI measurements up to 30 MHz. The additional spectrum analyzer and signal and tracking generator make the R&S EPL1000 ideal for various lab applications.