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Optical fiber temperature sensor newLight FS63-FS63LTS
Optical fiber temperature sensor newLight FS63-FS63CTS
Optical fiber temperature sensor newLight FS63-FS63WTS
Optical fiber temperature sensor newLight FS63-FS63RTS
Optical fiber temperature sensor newLight FS63-Hottinger Brüel & Kjær

Optical fiber temperature sensor newLight FS63
Hottinger Brüel & Kjær

Hottinger Brüel & Kjær's Response Status

Response Rate

100.0%

Response Time

22.7hours

Relatively Fast Response


About This Product

■High precision temperature measurement

Optical fiber temperature sensor FS63: proven high stability. For measuring large structures, laboratories, and electrically powered equipment.

■Highly accurate and reliable optical fiber temperature sensor newLight FS63

The newLight FS63 fiber optic temperature sensor is based on fiber Bragg grating technology (FBG) and is designed to accurately collect temperature measurements on large structures and machinery without being affected by environmental noise. . Its compact and lightweight structure makes it suitable for hard-to-reach measurement points, and it also enables measurements with low transmission loss even in harsh environments. The improved temperature stability makes this sensor particularly suitable for temperature measurement of large structures and thermal mapping of electrical machines. Additionally, the FS63 temperature sensor can be used for temperature compensation of other fiber optic sensors. The FS63 can be ordered calibrated or uncalibrated for absolute temperature measurements and as a ready-to-use temperature compensation element.

■Features

1. Smart fit ・Used in an appropriate manner even under severe measurement conditions, such as efficient temperature compensation during strain measurement ・Accurate and reliable strain and temperature measurements possible 2. High economic efficiency ・Uses dual fiber that allows multiple sensors to be connected to a single optical fiber cable ・Supports a variety of applications 3. Safe and robust - Uses insulating material that can be used in explosive atmospheres, high voltage areas, and strong electromagnetic fields. ・Effective even in dangerous measurement environments

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    Optical fiber temperature sensor newLight FS63

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4 Models of Optical fiber temperature sensor newLight FS63

Click on the part number for more information about each product

Image Part Number Price (excluding tax) Weight Measuring range Temperature correction factor Maximum calibration error Sensitivity External dimensions Installation method Operating humidity Resolution Input/output connector Input/output cable length Input/output cable type Input/output cable bending radius Optical fiber cladding diameter/covering diameter Protection class Storage humidity Storage temperature Main material Fiber type Hand width (FWHM), reflectance, sidelobe suppression Bending radius of sensor part FBG reflection wavelength
Optical fiber temperature sensor newLight FS63-Part Number-FS63LTS

FS63LTS

Available upon quote

8g (when the cable length on both sides is 2m and there is no connector)

-40~+100℃

20 (μm/m) /°C (Temperature correction factor (TCF) is the apparent induced strain caused by a 1°C temperature change. This value can be used to correct strain sensors)

±0.5°C (Absolute measurements described in this data sheet require an interrogator with at least ±2pm accuracy; typical traceability uncertainty is ±0.7°C)

30pm/℃ (Value for FBG with a wavelength of 1,550nm. Typical ordering example)

Φ2.6±0.5×65±0.5mm

Adhesive or tie cable

≤100%

0.02℃ (Resolution 0.5pm in wavelength measurement is the value for interrogator FS22SI)

FC/APC, SC/APC, NC (no connector)

0.5~6m

Φ1mm braid (glass fiber, silicone varnish)

>16mm (Inductive loss less than 0.05dB per turn when tested by wrapping the cable around a mandrel (cylindrical reel with a radius of 16mm or 30mm))

125/195μm

-

<95%

-20~+80℃ (limited by connector)

Stainless steel, ormocer® (the entire sensor configuration including the cable is RoHS, REACH, Conflict Minerals and Fire Propagation Directive compliant)

SMF-28 compatible

≤0.3nm, 21±4%, >10dB

Cannot be bent

1,500~1,600nm (±0.5)

Optical fiber temperature sensor newLight FS63-Part Number-FS63CTS

FS63CTS

Available upon quote

Φ3mm aramid: 47, Φ3mm armor: 97 (Weight when cable length is 2m and there are no connectors at both ends)

-20~+80℃ (Aramid cable's mechanical properties change above 70℃. Sensor operation and measurement values ​​are not affected by this change)

20 (μm/m) /℃ (Temperature correction factor (TCF) is the apparent induced strain caused by a temperature change of 1℃. Temperature compensation of strain sensors uses this value.)

±0.5°C (To achieve the absolute measurements listed in this data sheet, use a data logger with an accuracy of ±2 pm or better. Typical traceability uncertainty is ±0.7)

30pm/℃ (This is the value for FBG with a wavelength of 1,550nm.It can usually be approximated by a linear function, and corresponds to its first-order coefficient.)

130±0.5×20±0.5×6.5±0.5mm

Adhesive (HBK FiberSensing recommends using a two-part epoxy adhesive such as 3M DP490 cold cure adhesive)

<95%

0.02℃ (Resolution 0.5pm in wavelength measurement is the value for interrogator FS22SI)

FC/APC, SC/APC, NC (no connector)

0.5~20m

Φ3mm aramid cable (Hytrel, Kevlar®, LSZH) or Φ3mm armored (Hytrel, stainless steel spiral, Kevlar®, stainless mesh, LDPE)

>30mm (When tested by winding the cable around a mandrel (cylindrical reel with a radius of 30mm), the induction loss during one revolution is less than 0.05dB)

125/195μm

-

<95%

-20~+80℃

Stainless steel, CFRP (carbon fiber reinforced plastic), Ormocer® (the entire sensor configuration including the cable is RoHS, REACH, Conflict Minerals and Fire Propagation Directive compliant)

SMF-28 compatible

≤0.3nm, 21±4%, >10dB

Cannot be bent

1,500~1,600nm (±0.5)

Optical fiber temperature sensor newLight FS63-Part Number-FS63WTS

FS63WTS

Available upon quote

Φ3mm aramid fiber reinforced cable: 21g, Φ3mm armored cable: 65g

-20~+80℃ (Aramid cable's mechanical properties change above 70℃. Sensor operation and measurement values ​​are not affected by this change)

20 (μm/m) /℃ (Temperature correction coefficient refers to the "apparent induced strain" induced due to a temperature change of 1℃. Temperature compensation of strain sensors uses this value. )

±0.5°C (To achieve the absolute measurements listed in this data sheet, the data logger must have an accuracy of at least ±2pm. Due to calibration, the measurement uncertainty is typically ±0.7°C. )

30pm/℃ (Typical value. Value for FBG with reflection wavelength 1,550nm)

100±1×23±1×6±0.5mm, sensor board thickness: 0.1mm

By spot welding (Use a low-power spot welder, with a voltage in the range of 20V to 70V and an output of 26Ws to 80Ws. We recommend the model C30S provided by the company or its equivalent)

100% or less (additional protective measures are recommended for long-term use)

0.02℃ (Resolution 0.5pm in wavelength measurement is the value for data logger FS22SI)

FC/APC, SC/APC, NC (no connector)

0.5~20m

Φ3mm aramid fiber reinforced cable (Hytrel, Kevlar®, LSZH) or Φ3mm armored cable (Hytrek, stainless steel spiral, Kevlar®, stainless steel woven mesh, LDPE)

Can be bent up to R30 (inductive loss less than 0.05 dB per turn when tested by wrapping the cable around a mandrel (cylindrical reel with a radius of 16 mm or 30 mm))

125/195μm

-

Less than 95%

-20~+80℃ (Aramid cable starts to change its mechanical properties above 70℃. Sensor operation and measurement values ​​are not affected by this change)

Stainless steel, epoxy, ormocer® (the entire sensor configuration including cable is RoHS, REACH, Conflict Minerals and Fire Propagation Directive compliant)

SMF-28 compatible

≤0.3nm, 21±4%, >10dB

Bendable up to R300

1,500~1,600nm (±0.5)

Optical fiber temperature sensor newLight FS63-Part Number-FS63RTS

FS63RTS

Available upon quote

117g (Weight when cable length is 2m and there are no connectors at both ends)

-20~+80℃

20 (μm/m) /℃ (Temperature correction coefficient refers to the "apparent induced strain" induced due to a temperature change of 1℃. Temperature compensation of strain sensors uses this value. )

±0.5°C (To achieve the absolute measurements listed in this data sheet, the data logger must have an accuracy of at least ±2pm. Due to calibration, the measurement uncertainty is typically ±0.7°C. )

30pm/℃ (Typical value. Value for FBG with reflection wavelength 1,550nm)

Length: 100±0.5, Fixed plate: Φ10±0.5mm

Ensure contact by directly embedding or using adhesive (HBK 0X60, X120, X280) (e.g. cable ties)

Less than 95%

0.02℃ (Resolution 0.5pm in wavelength measurement is the value for data logger FS22SI)

FC/APC, SC/APC, NC (no connector)

0~20m

Φ3mm armored cable (Hytrel, stainless steel spiral, Kevlar®, stainless steel woven mesh, LDPE)

Can be bent up to R30 (inductive loss less than 0.05 dB per turn when tested by wrapping the cable around a mandrel (cylindrical reel with a radius of 16 mm or 30 mm))

125/195μm

IP68 (according to European harmonized German standard DIN EN 60529)

Less than 95%

-20~+80℃

Stainless steel, ormocer® (complete sensor configuration including cable is RoHS, REACH, Conflict Minerals and Fire Propagation Directive compliant)

SMF-28 compatible

≤0.3nm, 21±4%, >10dB

Cannot be bent

1,500~1,600nm (±0.5)

Click on the part number for more information about each product

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About Company Handling This Product

Response Rate

100.0%


Response Time

22.7hrs


Company Review

5.0

Company Overview

HBK, formerly named HBM, is a global ISO9001 and ISO14001-certified company founded in 1950. It is known for p...

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