
( Brand: Fluke Calibration ), ( Manufacturer Part Number: 9171-B-156 ), ( UPC: 095969294126 )
The Fluke Calibration 9171-INSB is a high-performance digital multimeter designed for metrology applications. This instrument, with the model number 9171-156 and a voltage rating of 115V, is an essential tool for any laboratory or industrial setting that requires precise and accurate measurements.
The 9171-INSB is characterized by its wide input range, which spans from 400 V to 1000V, making it suitable for measuring a variety of electrical parameters. Its 6.5-digit resolution ensures measurements with an unparalleled level of accuracy, while its auto-ranging feature simplifies the process of setting the appropriate range for your measurements.
This Fluke multimeter is equipped with a large, backlit display that provides easy-to-read measurements, even in low-light conditions. It also features a high impedance input, which helps prevent loading of the DUT (device under test). The 9171-INSB includes various functions such as AC/DC voltage, current, resistance, frequency, and capacitance measurements, as well as a min/max/avg function.
The 9171-INSB is compliant with the latest safety standards, including CAT III 1000V, and it comes with a rugged and ergonomic case, making it resistant to drops and other impacts. It also includes a battery level indicator, ensuring you'll never be caught off guard by a dead battery.
In summary, the Fluke Calibration 9171-INSB is an advanced and reliable digital multimeter, ideal for metrology applications that require high precision and accuracy. Its wide input range, high resolution, and comprehensive set of functions make it an indispensable tool for laboratories and industries that demand the utmost in measurement accuracy.
Product: Fluke Calibration 9171-INSB, Model 30C, 115V
Pros:1. High Precision: The Fluke Calibration 9171-INSB is a high-precision multimeter that offers accuracy up to 0.005%. This makes it ideal for use in laboratories, calibration centers, and other precision measurement applications.
2. Wide Range: This multimeter has a wide range of measurement capabilities, including DC voltage, AC voltage, current, resistance, and frequency.
3. Built for Durability: Fluke products are known for their durability, and the 9171-INSB is no exception. It is designed to withstand harsh conditions and can withstand drops from up to 6 feet.
4. Easy to Use: The 9171-INSB has a large, easy-to-read display and intuitive controls. It also includes a built-in data logger, which allows users to save and review measurement data.
5. Calibration Certified: The 9171-INSB is calibration certified, which means it has been tested and verified to meet specific accuracy requirements.
Cons:1. Price: The Fluke Calibration 9171-INSB is a high-end multimeter, and its price reflects this. It may be too expensive for some users or applications.
2. Size and Weight: The 9171-INSB is larger and heavier than some other multimeters on the market. This can make it more difficult to carry around or use in tight spaces.
3. Complexity: While the 9171-INSB is easy to use, its many features and capabilities can be overwhelming for some users. It may require some time and training to fully utilize all of its capabilities.
Conclusion:The Fluke Calibration 9171-INSB is a high-precision, multifunctional multimeter that is ideal for use in precision measurement applications. Its durability, wide range of measurement capabilities, and calibration certification make it a reliable and accurate tool for users who require high precision and accuracy. However, its high price and size may be a drawback for some users.
Recommendation:If you require high precision and accuracy in your measurement applications, the Fluke Calibration 9171-INSB is a great option. Its many features and capabilities make it a versatile tool that can meet a wide range of measurement needs. However, if you do not require such high precision and accuracy, or if the price and size are a concern, there may be other, less expensive multimeters that can meet your needs. It's always a good idea to do some research and compare different models to find the one that best fits your needs and budget.
Add 24 for AK, hi, or pr. The display of 9171 is calibrated to an accuracy. Our specs aren. Just hopes or guidelines.
There is an automated. Switch test protocol that zeros in on the dead-band for thermal switches. Hysteresis: thermal hysteresis exists far more in internal control sensors than good-quality reference prats. And we utilize proprietary dual-zone controls.
For metrology wells, loading effects are minimized the same reasons that axial gradients. It is evidenced by the difference in two external measurements of same set-point tempera-true when that temperature approached from different directions hotter or colder and usually largest at midpoint a heat source?range. Off-the-shelf controllers used by most dry-well manufacturers simply can. Provide this level of performance.
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. And with dual-zone control, axial or vertical uniformity is as good.
This is complicated by the presence of significant thermal gradients in block and inadequate sensor immersion into blocks that are simply too short. F button allows for easy switching of temperature units. All are also compatible with model 9938 met temp ii software for completely automated Calibrations of RDS, Thermopylae's, and thermostats.
All four model's come with an rs-232 serial interface and the model 9930, interface-it software. Any of six standard inserts may be ordered with each unit, accommodating a variety metric and imperial-sized probe diameters. Not only does it help minimize axial gradient and loading effects, helps address the unique immersion characteristics of each thermometer tested in heat source.
C all way to 155. C with full-range stability. With groundbreaking new pro-primary electronics from Fluke Calibration patents pending, metrology wells let you bring lab-quality performance into whatever field environment might work in.
Loading effects are as minimal. For hart scientific 9171 metrology wells, hysteresis effects range from. Both low-temperature units are table to.
C over its full range. Temperature range from -30. CFO cold units Fluke Calibration 9171-B-156 metrology well calibrator, -30c, w 9171-insb, 115v. The Fluke Calibration 9171 series only gets better with metrology wells.
C over their full range. 25 in diameter or smaller. C in the cold units.
Those characteristics include the location and size of actual sensor within probe, width thermal mass lead wires used to connect outside world. Display accuracy: dry-wells are typically calibrated by inserting a Prut into one of the wells and making adjustments to calibrator?internal control sensor based on readings from. The Fluke Calibration 9170 series metrology well calibrators uses only traceable, accredited prats to calibrate wells and our proprietary electronics consistently demonstrate repeatable accuracy more than ten times better specs, which range from. C over a 60mm 2.
The user interface can be configured to display in English, french, or Chinese. Immersion depth: depth matters. For even better accuracy, Fluke Calibration 9171 metrology well calibrators may be ordered with built-in electronics reading external prats its-90 characterizations.
The cold units and provide radial uniformity of. In short, there are six critical components of performance 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.
C at the most commonly used temperatures to. Just like the Fluke Calibration 9170, this dry-well has exceptional axial and radial uniformity. Better stability can only be found in fluid baths and primary fixed-point devices.
For poorly designed heat sources, or when large-diameter probes are used, these differences can be very large. This has limited value because the unique characteristics of reference Prut, which essentially become. Calibrated into calibrator, are often quite different from thermometers tested by 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.
Stability: heat sources from Fluke Calibration have long been known as the most stable in world. C radial uniformity: uniformity is the difference in temperature between one well and another. 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.
Loading: 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. Vertical gradients in these zones range from. Such performance doesn. Exist anywhere else outside of fluid baths. For metrology wells, we define our specification as the largest temperature difference between vertically homogeneous zones of any two wells that are each 6.
54 in, usually at the bottom of a well. New analog and digital control techniques provide stability as good.