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Showing posts with label Power Quality. Show all posts
Showing posts with label Power Quality. Show all posts

power engineer


Power engineering, also called power systems engineering, is a subfield of energy engineering that deals with the generation, transmission and distribution of electric power as well as the electrical devices connected to such systems including generators, motors and transformers. Although much of the field is concerned with the problems of three-phase AC power - the standard for large-scale power transmission and distribution across the modern world - a significant fraction of the field is concerned with the conversion between AC and DC power as well as the development of specialized power systems such as those used in aircraft or for electric railway networks. It was a subfield of electrical engineering before the emergence of energy engineering.

Electricity became a subject of scientific interest in the late 17th century with the work of William Gilbert.[1] Over the next two centuries a number of important discoveries were made including the incandescent lightbulb and the voltaic pile.[2][3] Probably the greatest discovery with respect to power engineering came from Michael Faraday who in 1831 discovered that a change in magnetic flux induces an electromotive force in a loop of wire—a principle known as electromagnetic induction that helps explain how generators and transformers work.[4]
In 1881 two electricians built the world's first power station at Godalming in England. The station employed two waterwheels to produce an alternating current that was used to supply seven Siemens arc lamps at 250 volts and thirty-four incandescent lamps at 40 volts.[5] However supply was intermittent and in 1882 Thomas Edison and his company, The Edison Electric Light Company, developed the first steam-powered electric power station on Pearl Street in New York City. The Pearl Street Station consisted of several generators and initially powered around 3,000 lamps for 59 customers.[6][7] The power station used direct current and operated at a single voltage. Since the direct current power could not be easily transformed to the higher voltages necessary to minimise power loss during transmission, the possible distance between the generators and load was limited to around half-a-mile (800 m).[8]
That same year in London Lucien Gaulard and John Dixon Gibbs demonstrated the first transformer suitable for use in a real power system. The practical value of Gaulard and Gibbs' transformer was demonstrated in 1884 at Turin where the transformer was used to light up forty kilometres (25 miles) of railway from a single alternating current generator.[9] Despite the success of the system, the pair made some fundamental mistakes. Perhaps the most serious was connecting the primaries of the transformers in series so that switching one lamp on or off would affect other lamps further down the line. Following the demonstration George Westinghouse, an American entrepreneur, imported a number of the transformers along with a Siemens generator and set his engineers to experimenting with them in the hopes of improving them for use in a commercial power system.
One of Westinghouse's engineers, William Stanley, recognised the problem with connecting transformers in series as opposed to parallel and also realised that making the iron core of a transformer a fully enclosed loop would improve the voltage regulation of the secondary winding. Using this knowledge he built a much improved alternating current power system at Great Barrington, Massachusetts in 1886.[10] Then in 1887 and 1888 another engineer called Nikola Tesla filed a range of patents related to power systems including one for a two-phase induction motor. Although Tesla cannot necessarily be attributed with building the first induction motor, his design, unlike others, was practical for industrial use.[11]
By 1890 the power industry had flourished and power companies had built literally thousands of power systems (both direct and alternating current) in the United States and Europe - these networks were effectively dedicated to providing electric lighting. During this time a fierce rivalry known as the "War of Currents" emerged between Edison, Westinghouse and Tesla over which form of transmission (direct or alternating current) was superior. In 1891, Westinghouse installed the first major power system that was designed to drive an electric motor and not just provide electric lighting. The installation powered a 100 horsepower (75 kW) synchronous motor at Telluride, Colorado with the motor being started by a Tesla induction motor.[12] On the other side of the Atlantic, Oskar von Miller built a 20 kV 176 km three-phase transmission line from Lauffen am Neckar to Frankfurt am Main for the Electrical Engineering Exhibition in Frankfurt.[13] In 1895, after a protracted decision-making process, the Adams No. 1 generating station at Niagara Falls began transmitting three-phase alternating current power to Buffalo at 11 kV. Following completion of the Niagara Falls project, new power systems increasingly chose alternating current as opposed to direct current for electrical transmission.[14]
Although the 1880s and 1890s were seminal decades in the field, developments in power engineering continued throughout the 20th and 21st century. In 1936 the first commercial HVDC (high voltage direct current) line using Mercury arc valves was built between Schenectady and Mechanicville, New York. HVDC had previously been achieved by installing direct current generators in series (a system known as the Thury system) although this suffered from serious reliability issues.[15] In 1957 Siemens demonstrated the first solid-state rectifier (solid-state rectifiers are now the standard for HVDC systems) however it was not until the early 1970s that this technology was used in commercial power systems.[16] In 1959 Westinghouse demonstrated the first circuit breaker that used SF6 as the interrupting medium.[17] SF6 is a far superior dielectric to air and, in recent times, its use has been extended to produce far more compact switching equipment (known as switchgear) and transformers.[18][19] Many important developments also came from extending innovations in the information technology and telecommunications field to the power engineering field. For example, the development of computers meant load flow studies could be run more efficiently allowing for much better planning of power systems. Advances in information technology and telecommunication also allowed for much better remote control of the power system's switchgear and generators.

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PN 7700/PN7710-Power Navigator

PN 7700/PN7710-Power Navigator



We are offering power navigator
power navigator – high profile power analyser
elmeasure has developed “power navigator”, a quality product that would help in conserving energy. Categorized as high profile multifunction meter, power navigator is used for measuring the amount of power consumed and for keeping a tight check on power wastage. With the help of power navigator, one can even combine all the meters together in a centralized location and check data in real time.

true to its name, this power navigator has four 4 keys with lcd display displaying 7 parameter at a time for easy navigation.

several of the features of this product are unique and first time in india which include:

7 row 7 digit lcd dispaly
4 keys in the front panel for easy navigation.
Displays energy, power, basic and options like minimum and maximum demand, etc.
Displays wave forms, phase wise voltage & current.
High low - voltage, current, hz, w, va, var, pf
digital outputs (4 potential free contacts-optional with programmable delay periods hysteresis 1%)
digital input (upto 4 inputs - optional)
analog output voltage (0-1v) / current (0-20ma or
4-20ma), programmable for any measured parameter.
% of unbalance v & a for all the phases
thd for voltage and current individual phases
ampere hour and pf average
optional built-in memory data logging with time stamp – 1 mb / 8 mb.
demand (optional) updates every second for better prediction and control.
Dynamic communication for easy communication of user selectable parameters
display and communication of total harmonic distortion and individual harmonics upto 3rd harmonics


all these attributes enhance user value in analyzing electrical signals without any break.

generally, for any industry, electrical measurement is different from process measurement (temperature, pressure, rpm, oil level etc), whereas in the power navigator, these electrical and process parameters can be clubbed together and both these parameters can be read in real time and can be integrated to a common network (pc). Power navigator has optional dual communication port so that the process parameter network can access the instrument simultaneously while the electrical parameter network is accessed. Since it has a high speed ti processor, it can even measure individual harmonics to the tune of 31st level and thd.


power navigator can reduce power cost and therefore enable elimination of power wastage. By connecting such instruments to different symmetrical loads (motors, transformers, etc.), one can compare the efficiency of the power and rectify it if required, thereby increasing efficiency of the equipments. This device is quite user-friendly. It has seven parameters that can be displayed at the same time and can measure electrical and process parameters. It also has a controlling application with features like digital output with 1,2 & 4 relays that can be programmed for any threshold for parameters like voltage, current, frequency, kilo watt (kw), power factor (pf). this innovative product has generated rave reviews in the market.


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Aemc Instruments, Three Phase Power Quality Analyzer


Aemc Instruments, Three Phase Power Quality Analyzer


Condition :New

We are offering aemc instruments 8335 three-phase power quality analyzers (no probes)

the powerpad model 8335 is a three-phase power quality analyzer that is easy-to-use, compact and shock-resistant. It is intended for technicians and engineers to measure and carry out diagnostic work and power quality work on one, two or three phase low voltage networks.
the powerpad 2gb of memory is conveniently partitioned to let you store four different types of data, synchronized or independent of each other. You can store up to 50 screen snapshots, up to 300 captured transients that contain four cycles for each active input, and 10,000 alarm events from up to 40 different parameters. You can also record trend data for days, weeks or even months.

features

* measurement of trms voltages up to 1000vrms ac/dc for two, three, four or five-wire systems
* measurement of trms currents up to 6500arms (sensor dependent)
* frequency measurement (40 to 69hz systems)
* direct measurement of neutral current for wye configurations
* record and display trend data as fast as once per second for one month for up to 25 variables.
* transient detection on all v and I inputs
* inrush current
* calculation of crest factors for current and voltage
* calculation of the k factor for transformers
* calculation of short-term flicker for voltage
* calculation of the phase unbalance for voltage and current (3 phase only)
*
* measurement of harmonic angles and rates (referenced to the fundamental or rms value) for voltage, current or power, up to 50th harmonic
* display of harmonic sequencing and direction and calculation of overall harmonics
* real time display of phasor diagrams including values and phase angles
* monitoring of the average value of any parameter, calculated over a period running from 1 sec to 2 hrs
* measurement of active, reactive and apparent power per phase and their respective sum total
* calculation of power factor, displacement power factor and tangent factor
* recording, time stamping and characterization of disturbance (swells, sags and interruptions, exceedence of power and harmonic thresholds)
* 2gb internal memory
* dataview software included

applications

* verification of power distribution circuits
* measurement and recording of power system quality (kw, va, var)
* energy metering (kvah, varh, kwh)
* in plant troubleshooting of power distribution panels and individual machinery
* monitor pad mount transformers
* determine harmonic problems originating from source or load
* monitor phase unbalances
* determine transformer k-factor



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Dranetz DranTech PMI-Power Quality Analyzer


Dranetz DranTech PMI-Power Quality Analyzer


Condition :New

We are offering power quality analyzer
drantech pmit precision milliohm insulation resistance tester digital multimeter and data logger

* all-in-one: milliohm resistance meter, digital multimeter, insulation resistance tester and data logger compact and rugged for service applications under harsh conditions as well as laboratory use -- a single device for many applications
* kelvin connection (4-wire measurement) suppresses influence from test leads and contact resistances on measurements of device under test
* insulation resistance tester testing with 50 to 500 v on components, cables and conductors, for example on aircraft and in on-board electrical systems
* compact and multifunctional can be used advantageously in aircraft cockpits as well as in other tight spaces, which would otherwise require the use of several individual instruments.
* data hold for quick, reliable measurement and storage of individual measured values, e.g. Voltages at discrete cells of batteries and emergency power supplies
* lcd panel with backlit display high contrast, even under adverse ambient light conditions



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Q4 Tasman-Spectrometer - Q4 Tasman


Q4 Tasman-Spectrometer - Q4 Tasman



We Offer a Wide Range of Stationery Spectrometer, Which is Manufactured By Our Highly Skilled and Professional Engineers. Our Automatic Stationery Spectrometer is Designed Precisely to Give Our High End Users Complete Satisfaction. Our Stationery Spectrometer is Used to Give Consistent Analytical Quality and is Extensively Used By Various Industries. Our Products are Highly Demanded Due to Their Accuracy and Thus have Enabled Us to Procure a Long List of Clientele Domestically. We are Regarded as One of the Well-known Stationery Spectrometer Machine Suppliers of India and Our Stationery Spectrometer Can Be Obtained At the Most Competitive Prices.

cornado:
coronado is a Fully Automated Metal Analyzer. Just Enter the Sample, Register On the Touch Screen and the System Starts. Sample Preparation, Transportation Within the System, Spectrometric Analysis, Archiving of Samples, Communication of Results; all this is Part of the Complete Process Within Coronado. Even Self-control Functions Including the Analysis of Monitor Samples in Intervals and Standardization if Necessary, are Covered By the System.

this Helps to Reduce Sample Turnaround Times and Ensures Consistent Analytical Quality. Coronado is Available in Different Configurations for Ferrous and Non-ferrous Applications.

high Analytical Performance is Ensured By Using Flagship Oe Spectrometer Magellan Within the Automation System.

q8 Magellan:
where Others Give Up, the Bruker-quantron Mission Begins: from Plenty of Enthusiasm Plus Even More Know-how Arose the Idea to Develop a New Optical Emission Spectrometer ; a Spectrometer Setting New Standards with Respect to Technology, Reliability and Handling. the Result is the Internationally Recognized "magellan". Top Reviews By the European Market Show Quantron Already amongst the Leaders in the Spectroscopy Field.

"magellan" is the First Spectrometer Worldwide that Offers a Previously Unseen Quality of Analysis Because of Measurement Parameters. Extremely Low Maintenance and Tailored Software Underlines the Exceptional Quality of this Uncompromised Product for Elemental Analysis in the Metal Producing and Processing Industries. Offered in Different Versions It is Consequently Suitable for Routine Operation in Both Laboratory and Production Environments.

newly Developed Electronics, Detectors, Optical Components and Information Technology Ensure that "magellan" Dramatically Differs from the Broad Range of Spectrometers in the Market. the Components Were Mated in such a Way that Unmatched Performance Can Be Guaranteed.

thus, the Quantron Development Team Succeeded in Bringing An End to the Long Term Stagnation in the Field of Premium Spark Spectrometers, Breaking New Ground with the Development of "magellan".

q6 Columbus:
when Talking About Our Bench - Top Spectrometers , Customers as Well as Technical Experts Speak of a Solution of Striking Simplicity. Glancing Quickly At the Technical Features, You Will Discover "columbus" Really Opens Up a Whole New World in Optical Spark Spectroscopy. as Low Limits of Detection, Remarkably Reduced Measurement Times, Top Reproducibility, as Well as the Windows Xp Based Qmatrix Software are Only Some Examples of Columbus' Revolutionary High Technology.
q4 Tasman:
q4 Tasman is First Spectrometer Using Specially Treated Ccd. this is also Bench Top Model Which Can Analyze all Elements Present in Solid Metal. Simply Plug and Play Spectrometer with Optimized Parameter for Accurate Analysis of Specially C, S, P, N and other Elements.



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Area Meter


Area Meter



We are Reckoned as One of the Most Eminent Area Meter Manufactures and Suppliers in India. the Materials Used in the Manufacturing of the Leaf Area Meter are of Excellent Quality that Further Ensures High Durability and Resistivity to Various Conditions Favoring Corrosion. Various Leading Industries are Placing Huge and Repeated Orders for the Variable Area Meter as These Less Electricity and Exhibit Inexplicable Performance in Varied Applications. Customers are Facilitated with the Availability of the Portable Area Meter At the Most Affordable Prices.



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Bilirubin Analyzer


Bilirubin Analyzer



The company is the foremost Bilirubin Analyzer Manufacturer, Exporter, Importer, and Supplier in India. Our Bilirubin Analyzer is known for its advanced technology and excellent performance. The Bilirubin Analyzer is designed to perfection, as per international standards. Our Bilirubin Analyzer is available at competitive prices.

Description
Bilirubin Analyser MicroBiI of Sinduri Biotech provides simple, quick and accurate results of total bilirubinMicrobii is advanced and optimized instrument for measuring neonate�s bilirubinMicrobil eliminates interference from turbidity and heomolysis with its unique dual wavelength measurement systemMicrobil requires minimal sample volumeBuilt in self diagnosticsLife long LED light source, which does not require replacementNew design capillary holder, which prevents damage & breakage of capillary tubesQuick reading photometer displays results in 2 secondsBuilt in battery backup that can last for over 500 testThermal printer with built in battery back up for printing the results


Table 1 Specification(s)
Specifications
Light SourceLife Long Super Flux LED
Wave length460 nm & 570 nm
Measuring Range0-40 mg.dL
Display16*2 Alpha Numeric Display with Bluish Back Light
AccuracyWithin � 30%
Power Supply12V1A DC Remote Power Supply
Dimension & Weight222 (W) x 180 (D) x 100 (H) mm & 1.5 Kg
Built in Battery BackupSufficient for 500 Tests

Table 2 Specification(s)
Standard Accessories
Remote Power Supply1 pc
Capillary Tube, Heparinized1 Box (400 pc)
Sealing Wax1 pc
Capillary adaptor3 pcs
User Guide1 pc


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Portable XRF-Portable Xrf Analyzer


Portable XRF-Portable Xrf Analyzer

Posted Date : 25,Aug 08


We Exhibit An Innovative Range of Portable Xrf Analyzer, Which are Completely Portable and Easy to Handle. Our Field Portable Xrf is High in Demand and is Appreciated By Our Clients for Its Highly Accurate Characteristic Quality. We have Manufactured Our Portable Xrf Keeping in Mind the Most Advanced Production Techniques So as to Assure Our Customers of Their Genuine Quality. the Basic Motive of Our Company is to Provide Excellent Quality Field Portable Xrf. We have Received Various Positive Feedbacks from Our Honored Clients for Our Highly Reliable Field Portable Xrf. We are One of the Famed Industrial Portable Xrf Manufacturers and Suppliers, Based in India.



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Power Quality

Power Quality (PQ) problem is “Any voltage, current, or frequency deviations that result in failure or deficient operation of the equipments primarily designed to consume or supply clean Power.”
PQ issues are relatively new, as more and more non-linear loads and energy savings equipments are being used, more prevalent are these issues. It is only recently that the electrical engineers has had to deal with the analysis, diagnosis and solution of PQ problems.
Evenif it has not become a major topic in the industry,engineers are being confrontedwithPQ issues on a daily basis. The problems related to PQ are often difficult to solve, and may allow different solutions, so the choice is not always simple for those engineers and professionals who are involved in this subject.
The main reason is probably due to the fact that PQ is a complex area covering many different topics. The optimal solution to a PQ problem is usually a mix of solutions fora specific situation. In such a situation, it is necessary to identify that problem and proposedifferent solutions to allow the technicians to make the optimal choice.Evaluation of solutions is probably the key element in PQ problem solving, chieflyfor economic reasons.
Our Solutions backed by equipment and engineering support from Electronicon Kondensatoren GmbH , System Electric GmbHand Janitza Electronics GmbHall German companies are up-to-date and at par with the solutions now being offered elsewhere.

Our approach to Power Quality has four main pillars as shown below
Harmonic Measuremnts
Why is it necessary to have Power Quality Monitoring System?
It is very important to note that a typical power system including generators, loads and coupling inductances is a single integrated and dynamic system- any change in voltage, current, impedance etc. at one point immediately brings about a change in every other point in the system.
The industrial facilities are also very dynamic in nature, with new machines, technologies, changes in neighboring industries changes in the State Utility system, all cause different responses.
Power Quality Phenomena thus resulting can be short time like transients or slightly longer duration like voltage outages. Therefore, it is extremely important to have a continuous recording of the Power Quality parameters so that all the events are registered and therefore analyzed.
Finally, it is also very pertinent to have all the devices monitoring power quality be time synchronized. This is so that we can track the origination of the problem and also map the impact of the problem. This enables installation of appropriate solutions/management of the problems.
Harmonic Measuremnts
Integrating Power Quality and Energy Management
Janitza Power Quality Monitors are not just Power Quality Monitors. These are devices that bring local Intelligence to the system. With different I/O possibilities and PLC like features using its programming language, different parameters of energy consumption can be monitored, controlled, calculated and then pre-programmed actions initiated. Actions include switching on/off devices, emails alerts, SMS etc. For example in the in the above graphic the connectivity with temperature, Steam; Flow of fluids; energy counts, light etc. is depicted. It is also possible to connect to other PLCs and have additional features built in the system. To illustrate further- in a factory with several furnaces a rise of temperature beyond a defined value can be indicative of leakage of heat, similarly for steam, HVAC systems. Or change in air pressure or vacuum can also signify leakage.
Power Quality monitoring on the other hand ensures that the equipment has power quality within the specified levels of immunity. If the Power Quality is poor it is likely to deteriorate the life of the equipments which leads to Capital Expenditures (replacement of Equipment) and Operational Expenditures (replacement of Fuses, cables, connectors ...). Reactive Power Management solutions (Power Factor Correction; Passive Filtering) reduce the heat losses in the net and reduce the distortion (harmonics, notches) of the voltage and current, as a result there is reduction in electricity bill and improves performance of the system.
Typical Measuring Levels
The PQ monitoring is built in a hierarchical structure. An example is shown below
Harmonic Measurements
With such a structure two important objectives are achieved-
1. Complete transperncy in the electrical system
2. The system can be built slowly and expanded with time
PQ Solutions
LV MV
System Electric was founded in 1975 and is a well known expert in the field of Reactive Power management and Harmonic filtering. The modular solutions developed by them in 1970s are still very popular and have become a global standard.
We are offering in India our APFC, Dynamic-APFC for fast switching applications, Detuned and Tuned Harmonic filter solutions, both in standalone as well as in modular construction.
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poower
 
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