Automatic Temperature Recording Device

Automatic temperature recorders collect temperature data through built-in sensors, process it via digital circuits, and store the values in memory. Some models can connect to computers to export temperature curves. They are used to monitor environmental temperature changes during production, storage, and transportation, ensuring material stability in industries such as chemicals, food, and pharmaceuticals.
Selection
When selecting, ensure the measurement range covers the usage scenarios, the accuracy meets control requirements, and the probe type is compatible with the measured medium. Consider the protection rating to suit the environment, battery life to match the recording cycle, storage capacity to correspond with data volume, data interface compatibility with the existing system, and ensure data credibility through metrological calibration.

Terms

Standards

Instruments

Color is irreversible after over-temperature discoloration, with recording function, Measuring temperature 42 ℃, strong gluing and easy pasting, in line with railway related technical standards.

$ 81.00

Color is irreversible after over-temperature discoloration, with recording function, Measuring temperature 38 ℃, strong gluing and easy pasting, in line with railway related technical standards.

$ 81.00

Using irreversible discoloration mode, providing 5 temperature monitoring points (49 ℃ to 71 ℃), with recording function and easy pasting, the size of 18 * 40mm rectangular grid design.

$ 87.00

Color is irreversible after over-temperature discoloration, with recording function, Measuring temperature 43 ℃, strong gluing and easy to paste, Dimensions 12 * 12mm, in line with railway related technical standards.

$ 81.00

The equipment can be used for vibration resistance and impact testing. The impact height can be adjusted from 0 to 150mm, and the Test speed can be adjusted from 0 to 40cpm. It has the functions of automatic stop and automatic recording of sample drop to ensure accurate and efficient testing.

$ 2460.00

Using irreversible discoloration technology, Color changes permanently after overheating, providing reliable recording; Rated temperature 143 ℃, size 12 * 12mm, easy to paste and strong gluing.

$ 81.00

Color is irreversible after over-temperature discoloration, with recording function, Measuring temperature 44 ° C, Dimensions 12 * 12mm, easy to paste and gluing, with reference to railway-related standards for pRoduction.

$ 81.00

Using irreversible discoloration method, Measuring temperature 99 ℃, easy to paste and gluing, Color change after overtemperature has recording function.

$ 81.00

Color is irreversible after over-temperature discoloration, with recording function, rated temperature 49 ℃, Dimensions 12 * 12mm, strong gluing and easy to paste.

$ 81.00

Provides irreversible temperature recording with accuracy of +/- 1 ° C below 100 ° C and +/- 1.5 ° C from 100 ° C to 154 ° C. Self-adhesive design, resistant to oil, water and steam, ensures reliable monitoring.

$ 98.00

Using irreversible discoloration technology, providing 5 temperature measurement points (77 ° C to 99 ° C), easy to paste and gluing, rectangular temperature grid design for easy observation and recording.

$ 87.00

With irreversible discoloration, it provides 8 temperature measurement points, covering the range of 116 ° C to 154 ° C, easy to paste and recording function, suitable for temperature monitoring applications.

$ 89.00

With 4 grid temperature monitoring window, size 12x40mm, full sealing protective film design, with waterproof and oil-proof function, temperature recording is irreversible, Color change can not be restored to the original state.

$ 145.00

Using irreversible discoloration technology, easy to paste and gluing, rated temperature 110 ℃, size 12 * 12mm, providing accurate temperature monitoring records.

$ 81.00

Using irreversible discoloration technology, Measuring temperature up to 160 ℃, easy to paste and strong gluing, providing 20 pieces/sheet standard Encasement to meet a variety of temperature monitoring needs.

$ 81.00

Articles

Determination of Thermal Decomposition Temperature and Inorganic Filler Content in Ink by Thermogravimetric Analyzer
This article introduces how to determine the thermal decomposition temperature and inorganic filler content of ink using a thermogravimetric analyzer. During the test, a small amount of ink sample is heated in a nitrogen or air atmosphere, and the mass change curve is recorded.
Differential Scanning Calorimetry measures the phase transition temperature of liquid crystal polymers.
This article introduces the method of determining the phase transition temperature of liquid crystal polymers using a differential scanning calorimeter. The differential scanning calorimeter analyzes the phase transition behavior of materials by comparing the heat difference between the sample and a reference material, recording the heat flow curve during temperature changes.
Vicat Softening Point Tester measures the heat resistance of plastics.
This article introduces how a Vicat softening point tester measures the heat resistance of plastics. During the test, the instrument applies a fixed load to the plastic sample and heats it at a constant rate. When the flat-ended needle penetrates the sample to a depth of 1 millimeter, the temperature at that moment is recorded, which is known as the Vicat softening point.
Vicat Softening Point Tester evaluates the heat deformation resistance of resins.
The Vicat softening point tester is used to measure the thermal deformation resistance of resins. It heats and applies pressure to the specimen until it deforms by 1 millimeter, recording the temperature at that point as the softening point.
Operation Specification for Determining the Softening Point of Resin Using the Ring-and-Ball Apparatus
This article introduces the standard procedure for determining the softening point of resins using the ring-and-ball method. The softening point is a critical indicator for evaluating the thermal properties of resins. During testing, the resin is heated until it deforms under the weight of a steel ball to a specified distance, and the corresponding temperature is recorded.