
( Brand: Fluke Calibration ), ( Manufacturer Part Number: 9172-A-156 ), ( UPC: 095969294324 )
The W-9172-INSA Fluke Calibration 9172 is a high-performance, versatile digital multimeter designed for metrology applications. This model, specifically the 156 variant, is equipped with a wide range of features that make it an ideal tool for precision measurements.
The 9172-INSA is a 6.5-digit true RMS digital multimeter, which means it can accurately measure AC or DC voltage, current, and resistance. It has a high input impedance of 10 megohms, minimizing load effects on the device under test. The instrument features a large, backlit LCD display for easy reading in various lighting conditions.
One of the standout features of this Fluke Calibration multimeter is its advanced accuracy. It offers a basic accuracy of 0.003% of reading 1 LSB, ensuring that your measurements are as precise as possible. The 9172-INSA also has an auto-ranging function, which automatically selects the appropriate measurement range, reducing the risk of errors due to incorrect range selection.
The 9172-INSA is also equipped with various safety features, including overvoltage protection, short circuit protection, and Category IV 600V safety rating, ensuring user safety during operation. It is designed to operate on a 115V power supply, making it suitable for use in most North American electrical systems.
This specific model, the 9172-INSA 115V, comes with a calibration certificate and is traceable to national standards, ensuring its reliability and accuracy. The package includes the multimeter, a carrying case, test leads, and a user manual for easy setup and operation.
In summary, the W-9172-INSA Fluke Calibration 9172 is a powerful, accurate, and safe digital multimeter ideal for metrology applications. Its wide range of features, high accuracy, and safety features make it an excellent investment for anyone requiring precise measurements.
Product: Fluke Calibration 9172-INSA Metrology 425C
Pros:1. High Precision: The Fluke Calibration 9172-INSA is known for its high precision, making it ideal for calibrating and verifying electrical measurements.
2. Wide Range: It can measure a wide range of electrical parameters such as voltage, current, resistance, and frequency.
3. Durable: The device is built to withstand harsh environments and is resistant to dust and water, ensuring longevity.
4. Easy to Use: It has a user-friendly interface and provides clear, easy-to-read results.
5. Accurate: It uses advanced technology to provide accurate results, reducing the need for frequent recalibrations.
Cons:1. Expensive: The Fluke Calibration 9172-INSA is quite expensive, which may deter some potential buyers.
2. Complex for Beginners: Due to its advanced features, it might be complex for beginners to use without proper training.
3. Maintenance: Regular maintenance is required to keep the device in good working condition, which can be time-consuming and costly.
Conclusion:The Fluke Calibration 9172-INSA Metrology 425C is a high-quality, precision instrument used for calibrating electrical measurements. Its durability, wide range of capabilities, and ease of use make it a valuable investment for professionals in the field. However, its high price and complexity may make it less appealing to beginners or those on a tight budget.
Recommendation:If you are a professional in the field of electrical measurements and require high precision, the Fluke Calibration 9172-INSA Metrology 425C is an excellent investment. However, if you are a beginner or have a limited budget, it might be worth considering more affordable options with similar capabilities. Always ensure to research and compare different options before making a purchase to ensure you are getting the best value for your money.
The display shows block temperature, built-in reference thermometer cutout stability criteria, and ramp rate. Any of six standard inserts may be ordered with the unit, accommodating a variety metric and imperial-sized probe diameters. The 9172-A-156 comes with an rs-232 serial interface and model 9930, interface-it software.
And we utilize proprietary dual zone controls c: 35 c to 225 stability. Axial uniformity the ea document suggests that dry-wells should include a zone of maximum temperature homogeneity, which extends for 40mm 1 c at the most commonly used temperatures to this has limited value because unique characteristics of reference Prut, which essentially become calibrated into calibrator, are often quite different from thermometers tested by calibrator. 1 c: 100 c to for metrology wells, hysteresis effects range from 0.
There are six critical components of performance in an industrial heat source which the European metrology community explains, for example, document ea-10 13: calibrated display accuracy, stability, axial vertical uniformity, radial well-to-well impact from loading, and hysteresis. 1 hole, 3/8 in c: 100. The off-the-shelf controllers used by most dry-well manufacturers simply can't provide this level of performance.
Display accuracy dry-wells are typically calibrated by inserting a Prut into one of the wells and making adjustments to calibrators internal control sensor based on readings from c over 60mm Loading is defined as the change in temperature sensed by a reference thermometer inserted into bottom of well after rest wells are filled with thermometers, too.
Stability heat sources from Fluke Calibration have long been known as the most stable in world. Immersion depth matters. In diameter or smaller.
Combines bath-level performance with dry-well functionality and legitimate reference lab-quality into whatever field environment you might work in9172-insa six imperial miscellaneous holes hole quantities sizes: 3 holes, 1/4 in.It exists because control sensors are typically designed for ruggedness and do not have the strain free design characteristics of sprats, or even most prats c at.
For metrology wells, we define our specification as the largest temperature difference between vertically homogeneous zones of any two wells that are each 6. There is an automated switch test protocol that zeros in on the dead-band for thermal switches.
Better stability can only be found in fluid baths and primary fixed-point devices. This is complicated by the presence of significant thermal gradients in block and inadequate sensor immersion into blocks that are simply too short. The 9172-A-156 features a well depth of 203mm 8 in.
4mm c at to not only does it help minimize axial gradient and loading effects, helps address the unique immersion characteristics of each thermometer tested in heat source. It is evidenced by the difference in two external measurements of same set-point temperature when that approached from different directions hotter or colder and usually largest at midpoint a heat sources range. For poorly designed heat sources, or when large-diameter probes are used, these differences can be very large.
Subscribe to our Fluke Calibration 9172-A-156 field dry-well metrology temperature calibrator with model 9172-insa a insert and INS, 35 c brand:Fluke Calibration model no:9172-a-156ref no:2459286our no:9172a156 product overview features 1972 temperature range at 23 ambient: f display accuracy. 1 hole, 8 in c over their full range. Vertical gradients in these zones range from radial uniformity is the difference temperature between one well and another c to c: 225 coaxial uniformity: 0.
For metrology wells, loading effects are minimized the same reasons that axial gradients. 1 hole, 3 16 in.
Hot units provide radial uniformity from c: 35 c to hysteresis thermal exists far more in internal control sensors than good-quality reference prats. And metrology wells are small enough light to go anywhere. Low-temperature units are stable to and with dual-zone control, axial or vertical uniformity is as good virgin islands American Samoa.
Usually at the bottom of a well. 2 c: 225 c to radial uniformity. Even without a pc, metrology wells have four different reprogrammed Calibration tasks that allow up to eight temperature set points with ramp and soak times between each c in the cold units. Add 36 for AK, hi, or pr.
Those characteristics include the location and size of actual sensor within probe, width thermal mass lead wires used to connect outside world.