[{"data":1,"prerenderedAt":2057},["ShallowReactive",2],{"store-product-fiber-sensing\u002Fdtsx3000":3,"store-surround-dtsx3000":2045,"store-related-DTSX3000-DTS-FIBER":2056},{"id":4,"title":5,"_path":6,"anchors":7,"badge":17,"body":18,"category":1943,"categoryDescription":1944,"categoryIcon":25,"compareAtPrice":6,"compatibility":1945,"currency":1950,"date":1951,"description":1952,"downloads":1953,"draft":1965,"excerpt":6,"extension":1966,"featured":1965,"gallery":1967,"highlights":1976,"image":1983,"inStock":1984,"lastUpdated":1951,"meta":1985,"navigation":1984,"path":1991,"price":6,"seo":1992,"sku":1995,"specs":1996,"stem":2031,"tags":2032,"useCases":2039,"version":6,"__hash__":2044},"store\u002Fstore\u002Ffiber-sensing\u002Fdtsx3000.md","Yokogawa DTSX3000 Distributed Temperature Sensor",null,[8,13],{"label":9,"icon":10,"to":11,"target":12},"Official Yokogawa DTSX3000 Product Gateway","i-lucide-external-link","https:\u002F\u002Fwww.yokogawa.com\u002Fsolutions\u002Fproducts-platforms\u002Ffield-instruments\u002Ffiber-optic-sensor\u002Fdtsx3000\u002F","_blank",{"label":14,"icon":15,"to":16,"target":12},"Yokogawa Fiber Optic Sensing Solutions Portal","i-lucide-shield-check","https:\u002F\u002Fwww.yokogawa.com\u002Fsolutions\u002Fproducts-platforms\u002Ffield-instruments\u002Ffiber-optic-sensor\u002F","50 km Long Range",{"type":19,"value":20,"toc":1934},"minimark",[21,34,39,54,57,63,879,882,886,1887,1889,1893,1910,1912,1916,1919],[22,23,26],"callout",{"color":24,"icon":25},"primary","i-lucide-activity",[27,28,29,33],"p",{},[30,31,32],"strong",{},"Zero Blind Spots Over 50 km:"," The Yokogawa DTSX3000 converts standard fiber-optic cable into thousands of virtual\ntemperature sensors. By analyzing Raman backscattering light along the fiber, it provides continuous, real-time thermal\nprofiles without point-sensor gaps.",[35,36,38],"h2",{"id":37},"executive-summary-core-capabilities","Executive Summary & Core Capabilities",[27,40,41,42,45,46,49,50,53],{},"The ",[30,43,44],{},"Yokogawa DTSX3000"," is a flagship Distributed Temperature Sensor (DTS) built to protect critical infrastructure\nacross vast operational distances. Traditional point sensors like thermocouples or RTDs leave dangerous unmonitored gaps\nand require thousands of individual signal cables. The DTSX3000 uses a single fiber line to measure temperature every\n",[30,47,48],{},"0.2 to 1 meter"," along distances up to ",[30,51,52],{},"50 km",".",[27,55,56],{},"Because optical fiber is completely passive and immune to electromagnetic interference (EMI), high voltages, and\nexplosive gas atmospheres, the DTSX3000 provides total operational awareness in severe processing and transmission\nenvironments.",[58,59,60],"tip",{},[27,61,62],{},"Dynamic Cable Rating (DCR) Integration: Feed real-time DTSX3000 thermal profiles directly into power grid control\nsystems to dynamically adjust power transmission loads based on actual ambient cable heating rather than static\nestimates.",[64,65,67,164],"accordion",{":defaultValue":66},"[\"0\"]",[68,69,72],"accordion-item",{"icon":70,"label":71},"i-lucide-sparkles","Core System Advantages",[73,74,75,82,88,94],"ul",{},[76,77,78,81],"li",{},[30,79,80],{},"100% Linear Coverage:"," Replaces thousands of point thermal sensors with a single fiber cable, leaving zero blind\nspots.",[76,83,84,87],{},[30,85,86],{},"Immune to Severe EMI & Lightning:"," Operates safely inside high-voltage power conduits, subsea power lines, and\ntransformer yards where copper wiring fails.",[76,89,90,93],{},[30,91,92],{},"16-Channel Switching Capability:"," A single DTSX3000 unit can sequentially scan up to 16 separate optical fiber\nloops using an integrated optical switch.",[76,95,96,99,100,53],{},[30,97,98],{},"Extreme Temperature Resilience:"," Compatible with passive optical fibers capable of operating from cryogenic\ntemperatures up to 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relative to time delay ",[101,346,348,362],{"className":347},[104],[101,349,351],{"className":350},[108],[110,352,353],{"xmlns":112},[114,354,355,360],{},[117,356,357],{},[202,358,359],{},"t",[132,361,359],{"encoding":134},[101,363,365],{"className":364,"ariaHidden":140},[139],[101,366,368,372],{"className":367},[144],[101,369],{"className":370,"style":371},[148],"height:0.6151em;",[101,373,359],{"className":374},[153,242],", the unit determines exact local\ntemperature ",[101,377,379,404],{"className":378},[104],[101,380,382],{"className":381},[108],[110,383,384],{"xmlns":112},[114,385,386,401],{},[117,387,388,391,395,398],{},[202,389,390],{},"T",[120,392,394],{"stretchy":393},"false","(",[202,396,397],{},"x",[120,399,400],{"stretchy":393},")",[132,402,403],{"encoding":134},"T 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m}",[101,1162,1164],{"className":1163,"ariaHidden":140},[139],[101,1165,1167,1170,1173],{"className":1166},[144],[101,1168],{"className":1169,"style":1091},[148],[101,1171,1155],{"className":1172},[153],[101,1174,1176],{"className":1175},[153,160],[101,1177,1078],{"className":1178},[153],[101,1180,1182,1198],{"className":1181},[104],[101,1183,1185],{"className":1184},[108],[110,1186,1187],{"xmlns":112},[114,1188,1189,1195],{},[117,1190,1191,1193],{},[124,1192,973],{},[128,1194,950],{},[132,1196,1197],{"encoding":134},"50\\text{ km}",[101,1199,1201],{"className":1200,"ariaHidden":140},[139],[101,1202,1204,1207,1210],{"className":1203},[144],[101,1205],{"className":1206,"style":1130},[148],[101,1208,973],{"className":1209},[153],[101,1211,1213],{"className":1212},[153,160],[101,1214,950],{"className":1215},[153]," range)",[900,1218,1219,1224],{},[916,1220,1221],{"align":905},[30,1222,1223],{},"Sampling Resolution",[916,1225,1226,1227,1101,1265,400],{"align":905},"Down to ",[101,1228,1230,1247],{"className":1229},[104],[101,1231,1233],{"className":1232},[108],[110,1234,1235],{"xmlns":112},[114,1236,1237,1244],{},[117,1238,1239,1242],{},[124,1240,1241],{},"0.2",[128,1243,1078],{},[132,1245,1246],{"encoding":134},"0.2\\text{ m}",[101,1248,1250],{"className":1249,"ariaHidden":140},[139],[101,1251,1253,1256,1259],{"className":1252},[144],[101,1254],{"className":1255,"style":1091},[148],[101,1257,1241],{"className":1258},[153],[101,1260,1262],{"className":1261},[153,160],[101,1263,1078],{"className":1264},[153],[101,1266,1268,1286],{"className":1267},[104],[101,1269,1271],{"className":1270},[108],[110,1272,1273],{"xmlns":112},[114,1274,1275,1283],{},[117,1276,1277,1280],{},[124,1278,1279],{},"20",[128,1281,1282],{}," cm",[132,1284,1285],{"encoding":134},"20\\text{ cm}",[101,1287,1289],{"className":1288,"ariaHidden":140},[139],[101,1290,1292,1295,1298],{"className":1291},[144],[101,1293],{"className":1294,"style":1091},[148],[101,1296,1279],{"className":1297},[153],[101,1299,1301],{"className":1300},[153,160],[101,1302,1282],{"className":1303},[153],[900,1305,1306,1311],{},[916,1307,1308],{"align":905},[30,1309,1310],{},"Temperature Accuracy",[916,1312,1313,1357],{"align":905},[101,1314,1316,1336],{"className":1315},[104],[101,1317,1319],{"className":1318},[108],[110,1320,1321],{"xmlns":112},[114,1322,1323,1333],{},[117,1324,1325,1328,1331],{},[120,1326,1327],{},"±",[124,1329,1330],{},"1.0",[128,1332,130],{},[132,1334,1335],{"encoding":134},"\\pm 1.0\\text{ °C}",[101,1337,1339],{"className":1338,"ariaHidden":140},[139],[101,1340,1342,1345,1348,1351],{"className":1341},[144],[101,1343],{"className":1344,"style":149},[148],[101,1346,1327],{"className":1347},[153],[101,1349,1330],{"className":1350},[153],[101,1352,1354],{"className":1353},[153,160],[101,1355,130],{"className":1356},[153]," (time and distance dependent)",[890,1359,1361],{"label":1360},"Electrical & Data Interfaces",[894,1362,1363,1373],{},[897,1364,1365],{},[900,1366,1367,1370],{},[903,1368,1369],{"align":905},"Feature",[903,1371,1372],{"align":905},"Technical Profile",[911,1374,1375,1493,1557,1567],{},[900,1376,1377,1382],{},[916,1378,1379],{"align":905},[30,1380,1381],{},"Supply Voltage",[916,1383,1384,1438,1439],{"align":905},[101,1385,1387,1410],{"className":1386},[104],[101,1388,1390],{"className":1389},[108],[110,1391,1392],{"xmlns":112},[114,1393,1394,1407],{},[117,1395,1396,1399,1402,1404],{},[124,1397,1398],{},"10",[128,1400,1401],{}," to ",[124,1403,963],{},[128,1405,1406],{}," VDC",[132,1408,1409],{"encoding":134},"10\\text{ to }30\\text{ VDC}",[101,1411,1413],{"className":1412,"ariaHidden":140},[139],[101,1414,1416,1420,1423,1429,1432],{"className":1415},[144],[101,1417],{"className":1418,"style":1419},[148],"height:0.6833em;",[101,1421,1398],{"className":1422},[153],[101,1424,1426],{"className":1425},[153,160],[101,1427,1401],{"className":1428},[153],[101,1430,963],{"className":1431},[153],[101,1433,1435],{"className":1434},[153,160],[101,1436,1406],{"className":1437},[153]," (Wide-range DC) or ",[101,1440,1442,1466],{"className":1441},[104],[101,1443,1445],{"className":1444},[108],[110,1446,1447],{"xmlns":112},[114,1448,1449,1463],{},[117,1450,1451,1454,1457,1460],{},[124,1452,1453],{},"100",[128,1455,1456],{},"–",[124,1458,1459],{},"240",[128,1461,1462],{}," VAC",[132,1464,1465],{"encoding":134},"100\\text{--}240\\text{ VAC}",[101,1467,1469],{"className":1468,"ariaHidden":140},[139],[101,1470,1472,1475,1478,1484,1487],{"className":1471},[144],[101,1473],{"className":1474,"style":1419},[148],[101,1476,1453],{"className":1477},[153],[101,1479,1481],{"className":1480},[153,160],[101,1482,1456],{"className":1483},[153],[101,1485,1459],{"className":1486},[153],[101,1488,1490],{"className":1489},[153,160],[101,1491,1462],{"className":1492},[153],[900,1494,1495,1500],{},[916,1496,1497],{"align":905},[30,1498,1499],{},"Power 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16\\text{-channel}",[101,1619,1621],{"className":1620,"ariaHidden":140},[139],[101,1622,1624,1627,1630,1633,1636,1639,1642,1645,1648,1651,1654,1657,1660,1663,1669,1672],{"className":1623},[144],[101,1625],{"className":1626,"style":988},[148],[101,1628,1075],{"className":1629},[153],[101,1631,953],{"className":1632},[1001],[101,1634],{"className":1635,"style":1005},[570],[101,1637,1155],{"className":1638},[153],[101,1640,953],{"className":1641},[1001],[101,1643],{"className":1644,"style":1005},[570],[101,1646,1599],{"className":1647},[153],[101,1649,953],{"className":1650},[1001],[101,1652],{"className":1653,"style":1005},[570],[101,1655,1604],{"className":1656},[153],[101,1658,953],{"className":1659},[1001],[101,1661],{"className":1662,"style":1005},[570],[101,1664,1666],{"className":1665},[153,160],[101,1667,1609],{"className":1668},[153],[101,1670,956],{"className":1671},[153],[101,1673,1675],{"className":1674},[153,160],[101,1676,1614],{"className":1677},[153]," optical switches",[890,1680,1682],{"label":1681},"Housing & Certifications",[894,1683,1684,1694],{},[897,1685,1686],{},[900,1687,1688,1691],{},[903,1689,1690],{"align":905},"Metric",[903,1692,1693],{"align":905},"Specification",[911,1695,1696,1706,1716,1877],{},[900,1697,1698,1703],{},[916,1699,1700],{"align":905},[30,1701,1702],{},"Form Factor",[916,1704,1705],{"align":905},"Rack-mountable or field enclosure modular frame",[900,1707,1708,1713],{},[916,1709,1710],{"align":905},[30,1711,1712],{},"Laser Safety Class",[916,1714,1715],{"align":905},"Class 1M Laser Product (Safe under standard operation)",[900,1717,1718,1723],{},[916,1719,1720],{"align":905},[30,1721,1722],{},"Operating 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°F to }+149\\text{ °F}",[101,1833,1835,1862],{"className":1834,"ariaHidden":140},[139],[101,1836,1838,1841,1844,1847,1853,1856,1859],{"className":1837},[144],[101,1839],{"className":1840,"style":149},[148],[101,1842,1739],{"className":1843},[153],[101,1845,1742],{"className":1846},[153],[101,1848,1850],{"className":1849},[153,160],[101,1851,1820],{"className":1852},[153],[101,1854],{"className":1855,"style":1780},[570],[101,1857,122],{"className":1858},[833],[101,1860],{"className":1861,"style":1780},[570],[101,1863,1865,1868,1871],{"className":1864},[144],[101,1866],{"className":1867,"style":1130},[148],[101,1869,1825],{"className":1870},[153],[101,1872,1874],{"className":1873},[153,160],[101,1875,1828],{"className":1876},[153],[900,1878,1879,1884],{},[916,1880,1881],{"align":905},[30,1882,1883],{},"Optical Connectors",[916,1885,1886],{"align":905},"FC\u002FAPC or E2000\u002FAPC angle-polished connections",[880,1888],{},[35,1890,1892],{"id":1891},"target-industry-applications","Target Industry Applications",[1894,1895,1896,1904],"card-group",{},[1897,1898,1901],"card",{"icon":1899,"title":1900},"i-lucide-zap","High-Voltage Power Lines",[27,1902,1903],{},"Tracks localized thermal hot spots along underground transmission conduits and subsea cables to prevent insulation\nbreakdown.",[1897,1905,1907],{"icon":15,"title":1906},"Pipeline Leak Detection",[27,1908,1909],{},"Detects sudden local temperature drops from high-pressure gas expansion leaks or temperature spikes from hot oil leaks.",[880,1911],{},[35,1913,1915],{"id":1914},"official-provider-resources-in-depth-documentation","Official Provider Resources & In-Depth Documentation",[27,1917,1918],{},"For complete technical handbooks, enterprise system integration guides, and direct support from Yokogawa's engineering\nteam, explore the official manufacturer portals below:",[1894,1920,1921,1927],{},[1897,1922,1924],{"icon":10,"title":1923,"target":12,"to":11},"Yokogawa DTSX3000 Official Product Hub",[27,1925,1926],{},"Access full product line specifications, compliance documentation, and global support contacts directly from Yokogawa.",[1897,1928,1931],{"icon":1929,"title":1930,"target":12,"to":16},"i-lucide-file-text","Yokogawa Fiber Optic Sensing Solutions",[27,1932,1933],{},"Explore comprehensive application notes, white papers, and system architecture guides for distributed sensing\ndeployments.",{"title":1935,"searchDepth":1936,"depth":1936,"links":1937},"",3,[1938,1940,1941,1942],{"id":37,"depth":1939,"text":38},2,{"id":884,"depth":1939,"text":885},{"id":1891,"depth":1939,"text":1892},{"id":1914,"depth":1939,"text":1915},"Fiber Optic Sensing","Distributed temperature and acoustic fiber optic sensing systems for infrastructure integrity.",[1946,1947,1948,1949],"Standard single-mode (50\u002F125 µm or 62.5\u002F125 µm) and multi-mode optical fiber cables","Yokogawa CENTUM VP DCS, FAST\u002FTOOLS, and CIServer automation architectures","Modbus TCP, Modbus RTU, and Ethernet\u002FIP industrial network communications","DTAP3000 analysis and configuration software package","USD","2026-09-30T12:35:00Z","High-performance flagship Distributed Temperature Sensor (DTS) designed to monitor continuous temperature profiles over long distances using standard fiber optic cable.",[1954,1960],{"name":1955,"url":1956,"type":1957,"format":1958,"size":1959},"Yokogawa DTSX3000 Technical Specifications Datasheet","\u002Fstore\u002Ffiber-sensing\u002Fdtsx3000\u002FDS_Yokogawa_DTSX3000_en.pdf","datasheet","pdf","2.1 MB",{"name":1961,"url":1962,"type":1963,"format":1958,"size":1964},"Yokogawa DTSX3000 User & Installation Manual","\u002Fstore\u002Ffiber-sensing\u002Fdtsx3000\u002FMAN_Yokogawa_DTSX3000_en.pdf","manual","6.5 MB",false,"md",[1968,1972],{"src":1969,"alt":1970,"caption":1971},"\u002Fstore\u002Ffiber-sensing\u002Fdtsx3000\u002Fgallery-1.png","Yokogawa DTSX3000 Distributed Temperature Sensor optical main unit rack","Yokogawa DTSX3000 Modular Main Unit Frame",{"src":1973,"alt":1974,"caption":1975},"\u002Fstore\u002Ffiber-sensing\u002Fdtsx3000\u002Fgallery-2.png","Diagram illustrating fiber optic Raman scattering and OTDR temperature measurement","Raman Backscatter Optical Time Domain Reflectometry (OTDR) Principle",[1977,1978,1979,1980,1981,1982],"Continuous linear temperature monitoring up to 50 km (31 miles) on a single optical fiber channel","High spatial resolution down to 1 meter with sampling resolution as fine as 0.2 meters","Raman backscatter Optical Time Domain Reflectometry (OTDR) for total immunity to EMI and RF noise","Multi-channel optical switch configuration options (up to 16 channels) for complex infrastructure matrixing","Wide operating temperature range from -40 °C to +65 °C with low power consumption","Direct integration into Yokogawa CENTUM VP DCS and SCADA platforms via Modbus TCP\u002FRTU and LAS","\u002Fstore\u002Ffiber-sensing\u002Fdtsx3000\u002Fimage.png",true,{"readingTime":1986},{"text":1987,"minutes":1988,"time":1989,"words":1990},"3 min read",2.13,127800,426,"\u002Fstore\u002Ffiber-sensing\u002Fdtsx3000",{"title":1993,"description":1994},"Yokogawa DTSX3000 Distributed Temperature Sensor | NodeWave","Buy Yokogawa DTSX3000 Distributed Temperature Sensor. 50 km fiber optic thermal profiling, 1m spatial resolution, zero blind spots for pipelines and power cables.","DTSX3000-DTS-FIBER",[1997,1999,2002,2004,2006,2008,2012,2015,2018,2022,2025,2028],{"category":1998,"label":920,"value":923},"Sensing Performance",{"category":1998,"label":2000,"value":2001},"Maximum Fiber Distance","Up to 50 km (Long-Range Model) \u002F 16 km \u002F 6 km variants",{"category":1998,"label":1058,"value":2003},"1 m (at 16 km path) \u002F 2 m (at 50 km path)",{"category":1998,"label":1223,"value":2005},"0.2 m minimum (0.5 m standard)",{"category":1998,"label":1310,"value":2007},"±1.0 °C (distance and measurement time dependent)",{"category":2009,"label":2010,"value":2011},"Electrical & Data","Communications","Ethernet (Modbus TCP), RS-485 (Modbus RTU)",{"category":2009,"label":2013,"value":2014},"Optical Channels","1, 2, 4, 8, or 16 channels (via integrated optical switch module)",{"category":2009,"label":2016,"value":2017},"Power Requirements","10 to 30 VDC or 100-240 VAC",{"category":2019,"label":2020,"value":2021},"Mechanical & Environmental","Operating Temperature","-40 to +65 °C (Wide Range Module)",{"category":2019,"label":2023,"value":2024},"Optical Connector Type","FC\u002FAPC or E2000\u002FAPC",{"category":2026,"label":1712,"value":2027},"Environmental & Certification","Class 1M (IEC 60825-1 certified safe)",{"category":2026,"label":2029,"value":2030},"Certifications","CE, FCC, ATEX, IECEx (with suitable outer protective enclosure)","store\u002Ffiber-sensing\u002Fdtsx3000",[2033,2034,2035,2036,2037,2038],"Yokogawa","DTSX3000","Distributed Temperature Sensing","Fiber Optic Sensor","Pipeline Monitoring","Power Cable Monitoring",[2040,2041,2042,2043],"Long-distance oil and gas pipeline leak detection and hot-spot mapping","High-voltage power cable dynamic cable rating (DCR) and underground transmission line thermal tracking","LNG storage tank shell integrity monitoring and containment barrier failure tracking","Tunnel fire detection and conveyor belt thermal runaway detection in mining assets","zzlNG3rt26aeUIzRKl4hhqek2LGt4slKOQvd66F2rNw",[2046,2051],{"title":2047,"path":2048,"stem":2049,"description":2050,"children":-1},"OnLogic Karbon 410 Compact Rugged Computer","\u002Fstore\u002Fedge-computing\u002Fonlogic-k410","store\u002Fedge-computing\u002Fonlogic-k410","Compact fanless edge computer powered by Intel Atom x6000E processors, engineered for extreme environments and industrial IoT applications.",{"title":2052,"path":2053,"stem":2054,"description":2055,"children":-1},"Dräger Polytron Stationary Gas Detector System","\u002Fstore\u002Fgas-detection\u002Fpolytron-ec","store\u002Fgas-detection\u002Fpolytron-ec","Explosion-proof stationary point gas alarm system engineered with pre-calibrated electrochemical DrägerSensors to monitor toxic H2S, O2 depletion, and CO concentrations in hazardous industrial zones.",[],1791086641999]