
( Brand: Fluke Calibration ), ( Manufacturer Part Number: 9172-A-R-156 ), ( UPC: 095969294348 )
The 9172-a-r-156 9172-INSAA 115V Fluke 9172 425C 156 Metrology is a high-performance calibration tool designed for precise and accurate measurements. This device, with the model number 095969294348, is a Fluke 9172 425C 156 calibrator, specifically designed for use in the 115V AC voltage range.
The Fluke 9172 425C 156 calibrator is a digital multimeter (DMM) that offers a wide range of measurement capabilities. It features a 6.5-digit resolution, ensuring high accuracy and precision in its readings. The device is equipped with a large, backlit LCD display, making it easy to read even in low-light conditions.
The calibrator is designed for use in metrology applications, which require high accuracy and reliability. It is equipped with various features that enhance its performance and usability. These include auto and manual ranging, data hold, and statistic functions. It also features advanced safety features, such as overvoltage protection and diode test functions.
The Fluke 9172 425C 156 calibrator is designed for use in a wide range of environments. It is rugged and durable, with a water-resistant housing that protects it from dust and moisture. It is also lightweight and portable, making it easy to carry around for field measurements.
In conclusion, the 9172-a-r-156 9172-INSAA 115V Fluke 9172 425C 156 Metrology calibrator is a high-performance device that offers accurate and reliable measurements in the 115V AC voltage range. Its advanced features, rugged design, and portability make it an ideal tool for metrology applications.
Product: Fluke 9172-A-R-156 9172-INSA 115V Metrology Calibrator (Model 095969294348)
Pros:1. High Accuracy: This calibrator offers high accuracy and precision, making it suitable for various metrology applications.
2. Wide Voltage Range: It supports a wide voltage range of 115V, which is ideal for a variety of electrical devices.
3. Automated Calibration: The automatic calibration feature ensures consistent and reliable results, reducing the likelihood of human error.
4. Durable Construction: The Fluke 9172 is built to withstand harsh environments, making it a reliable choice for industrial use.
5. User-Friendly Interface: The easy-to-use interface allows operators with varying levels of technical expertise to operate the calibrator effectively.
Cons:1. Expensive: Compared to other calibrators, the Fluke 9172 is quite expensive, which may be a deterrent for some buyers.
2. Limited Frequency Range: While it supports a wide voltage range, its frequency range is limited, which may not be suitable for all applications.
3. Requires Regular Maintenance: Like any high-precision electronic device, the Fluke 9172 requires regular maintenance and calibration to ensure its accuracy.
Conclusion:The Fluke 9172-A-R-156 9172-INSA 115V Metrology Calibrator is a high-quality, reliable, and accurate tool for electrical calibration. Its wide voltage range, automated calibration, and user-friendly interface make it an excellent choice for various metrology applications. However, its high price and limited frequency range are factors to consider before purchasing. If the high cost and limited frequency range are not a concern, then the Fluke 9172 is an excellent investment for any metrology lab. If these factors are a concern, there may be other calibrators available that better suit your needs and budget.
For poorly designed heat sources, or when large diameter probes are used, these differences can be very large. 54 in, usually at the bottom of a well.
Display accuracy dry wells are typically calibrated by inserting a calibrated Prut into one of the wells and making adjustments to the calibrator internal control sensor based on the readings from the Prut. Not only does it help minimize axial gradient and loading effects, it helps address the unique immersion characteristics of each thermometer tested in the heat source. The display shows the block temperature, built in reference thermometer temperature, cutout temperature, stability criteria, and ramp rate. In addition to exceptional accuracy, the hart 9172 is stable from loading effects are as minimal as vertical gradients in these zones range from in diameter or smaller.
The off the shelf controllers used by most dry well manufacturers simply can't provide this level of performance. Loading is defined as the change in temperature sensed by a reference thermometer inserted into the bottom of a well after the rest of the wells are filled with thermometers, too.
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. This has limited value because the unique characteristics of the reference Prut, which essentially become calibrated into the calibrator, are often quite different from the thermometers tested by the calibrator. 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.
Immersion depth immersion depth matters. All are also compatible with model 9938 met temp ii software for completely automated Calibrations of RDS, Thermopylae's, and thermostats.
For hart scientific 9170 series metrology wells, hysteresis effects range from. Hysteresis thermal hysteresis exists far more in internal control sensors than in good quality reference prats c to with groundbreaking new pro primary electronics from Fluke Calibration patents pending, metrology wells let you bring lab quality performance into whatever field environment you might work in. This is complicated by the presence of significant thermal gradients in the block and inadequate sensor immersion into blocks that are simply too short.
02 c at c to 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. 25 c at 661 c.
The Fluke Calibration 9170 series metrology well calibrators uses only traceable, accredited prats to calibrate metrology wells and our proprietary electronics consistently demonstrate repeatable accuracy more than ten times better than our specs, which range Fromm. Any of six standard inserts may be ordered with each unit, accommodating a variety of metric and imperial sized probe diameters. For metrology wells, we define our specification as the largest temperature difference between the vertically homogeneous zones of any two wells that are each 6. And we utilize proprietary dual zone controls.
Axial uniformity the Fluke Calibration 9170 series ea document suggests that dry wells should include a zone of maximum temperature homogeneity, which extends for 40mm c at 700 c radial uniformity radial uniformity is the difference in temperature between one well and another well. And with dual zone control, axial or vertical uniformity is as good as c at 700 c. In short, there are six critical components of performance in an industrial heat source which the European metrology community explains, for example, in the document ea calibrated display accuracy, stability, axial vertical uniformity, radial well to well uniformity, impact from loading, and hysteresis.
Territories. The user interface can be configured to display in English, french, or Chinese. All four model's come with an rs 232 serial interface and the model 9930, interface it software.
For even better accuracy, Fluke Calibration 9172 metrology well calibrators may be ordered with built in electronics for reading external prats with its 90 characterizations.
Those characteristics include the location and size of the actual sensor within the probe, the width and thermal mass of the probe, and the lead wires used to connect the sensor to the outside world c over their full range. The Fluke Calibration 9172 metrology well calibrators provides temperatures from 35 c to 425 c with a calibrated display accurate. Add 24 for AK, hi, or pr c.
2 c at 425 c. The Fluke Calibration 9172 only gets better with metrology wells. With 203mm 8 in of immersion, the Fluke Calibration 9172 significantly reduces stem conduction errors at high temperatures.
For metrology wells, loading effects are minimized for the same reasons that axial gradients are minimized.
It is evidenced by the difference in two external measurements of the same set point tempera true when that temperature is approached from two different directions hotter or colder and is usually largest at the midpoint of a heat source temperature range. Such performance doesn exist anywhere else outside of fluid baths.