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Tuesday, May 11, 2010

Electrical network


Electrical network




An electrical network is an interconnection of electrical elements such as resistors, inductors, capacitors, transmission lines, voltage sources, current sources, and switches.

An electrical circuit is a network that has a closed loop, giving a return path for the current. A network is a connection of two or more components, and may not necessarily be a circuit.

Electrical networks that consist only of sources (voltage or current), linear lumped elements (resistors, capacitors, inductors), and linear distributed elements (transmission lines) can be analyzed by algebraic and transform methods to determine DC response, AC response, and transient response.

A network that also contains active electronic components is known as an electronic circuit. Such networks are generally nonlinear and require more complex design and analysis tools.
Contents
[hide]

* 1 Design methods
* 2 Electrical laws
* 3 Network simulation software
o 3.1 Linearization around operating point
o 3.2 Piecewise-linear approximation
* 4 See also

[edit] Design methods

To design any electrical circuit, either analog or digital, electrical engineers need to be able to predict the voltages and currents at all places within the circuit. Linear circuits, that is, circuits with the same input and output frequency, can be analyzed by hand using complex number theory. Other circuits can only be analyzed with specialized software programs or estimation techniques.

Circuit simulation software, such as VHDL and HSPICE, allows engineers to design circuits without the time, cost and risk of error involved in building circuit prototypes.
[edit] Electrical laws

A number of electrical laws apply to all electrical networks. These include:

* Kirchhoff's current law: The sum of all currents entering a node is equal to the sum of all currents leaving the node.
* Kirchhoff's voltage law: The directed sum of the electrical potential differences around a loop must be zero.
* Ohm's law: The voltage across a resistor is equal to the product of the resistance and the current flowing through it (at constant temperature).
* Norton's theorem: Any network of voltage and/or current sources and resistors is electrically equivalent to an ideal current source in parallel with a single resistor.
* Thévenin's theorem: Any network of voltage and/or current sources and resistors is electrically equivalent to a single voltage source in series with a single resistor.

* See also Analysis of resistive circuits.

Other more complex laws may be needed if the network contains nonlinear or reactive components. Non-linear self-regenerative heterodyning systems can be approximated. Applying these laws results in a set of simultaneous equations that can be solved either by hand or by a computer.
[edit] Network simulation software

More complex circuits can be analyzed numerically with software such as SPICE or GNUCAP, or symbolically using software such as SapWin.
[edit] Linearization around operating point

When faced with a new circuit, the software first tries to find a steady state solution, that is, one where all nodes conform to Kirchhoff's Current Law and the voltages across and through each element of the circuit conform to the voltage/current equations governing that element.

Once the steady state solution is found, the operating points of each element in the circuit are known. For a small signal analysis, every non-linear element can be linearized around its operation point to obtain the small-signal estimate of the voltages and currents. This is an application of Ohm's Law. The resulting linear circuit matrix can be solved with Gaussian elimination.
[edit] Piecewise-linear approximation

Software such as the PLECS interface to Simulink uses piecewise-linear approximation of the equations governing the elements of a circuit. The circuit is treated as a completely linear network of ideal diodes. Every time a diode switches from on to off or vice versa, the configuration of the linear network changes. Adding more detail to the approximation of equations increases the accuracy of the simulation, but also increases its running time.

Sunday, May 2, 2010

ASUS N61Jv-X2



ASUS N61Jv-X2



When looking for an entertainment notebook that costs less than $1,000, you have to decide what bells and whistles you can live without, and what’s most critical to an optimal experience. The ASUS N61Jv-X2 gets it mostly right. For $899, users get an Intel Core i5 processor, Nvidia GeForce GT325M graphics, and a handsome design. Plus, the N61Jv is the third notebook we’ve tested with Nvidia’s Optimus technology, which means it can seamlessly switch between its powerful Nvidia GPU and the more energy-efficient integrated graphics for more battery life. However, we’re not sure how much of a benefit this feature is in a 6-pound laptop, which raises the question as to whether ASUS made all the right decisions in building this value-priced multimedia machine.
Design

Unlike the U30Jc or the UL50, the lid of the N61Jv is glossy with a subtle wavy pinstripe pattern, much like the K42F. This looks cool, but it doesn’t do a great job of hiding fingerprint smudges. Inside, however, ASUS has made several interesting design changes. The palm rest is rubberized, making it very comfortable to the touch.

Above the chiclet-style keyboard is the most striking feature: a silver speaker bar perforated by tiny holes. At the right side is a circular chrome power button encircled by a backlit ring; on the other side are buttons to control multimedia playback and to launch the ExpressGate Instant-On environment. At either end of the silver bar are two translucent strips that light up blue when the notebook is on. All in all, it has a very retro-chic look, like something Braun might have designed in the 80s.

Weighing 6 pounds even, the N61J is a bit heavier than most notebooks in its class, most of which have smaller 15.6-inch screens. The Samsung R580, for example, weighs 5.6 pounds. However, the N61Jv, at 15.4 x 10.6 x 1.1—1.5 inches, cuts a thinner profile to the R580’s 16.2 x 10.7 x 1.3—1.6 inches.
Heat

After we played a Hulu video at full screen for 15 minutes, we were pleased to see that the N61Jv kept its cool; the touchpad measured 93 degrees Fahrenheit, the space between the G and H keys was just 91, and the middle of the underside was 89 degrees. The hottest place we measured was by the vent, which topped off at a reasonable 95 degrees.

Wednesday, December 30, 2009

Honeywell Electronic Ceramic Heater


Honeywell Electronic Ceramic Heater




This Digital Ceramic Heater allows you to customize your comfort level with an adjustable thermostat, energy savings or maximum heat settings, auto shutoff timer and oscillation for wide heat distribution. Advanced safety features include the SafeGuard Alert Badge to monitor grille heat, cool-touch housing, overheat protection and tip-over switch.

Features

* Honeywell 1500 Watts Compact Ceramic Heater
* Oscillating Design to Circulate Air
* 2 Heat Settings
* Adjustable Thermostat
* Whisper Quiet Operation
* 7.25 x 9 x 13.75 "

Additional Information

* DPCI: 085-19-0087
* ASIN: B000TGX58E
* Catalog #: 10644653
* Item can be gift wrapped.
* Made in the USA or Imported

Shipping & Policies

* You may return this item to any Target store.Opens in New Window
* Shipping & Delivery InformationOpens in New Window
* Estimated Ship Dimensions : 23.8 inches length x 10 inches width x 9.8 inches height
* Estimated Ship Weight: 9.36 pounds.

Wednesday, December 23, 2009

Q-Mark LFK404 Electric Wall Heater.


Q-Mark LFK404 Electric Wall Heater.


If you are looking for a heater with a beautiful Northern white louvered cover and a three piece construction that makes for easy installation look no further than the Q-Mark LFK404 Electric Wall Heater. The rugged stamped steel front cover provides a down-flow air pattern and is finished in Navajo white. There is a hole plug that is there to prevent tampering with the installation. Uniform heat and long service life is provided by the steel finned metal sheath electric heating elements with low sheath temperature.

The Q-Mark LFK404 Electric Wall Heater is a high capacity, heavy-duty fan-forced wall heater. It can be used almost anywhere in residential, commercial or industrial areas and perform well in motels, entryways, playrooms, basements, workshops, garages, stores and other large areas.

A two pole thermostat is included with the LFK404 electric wall heater so that you are able to turn the heater all the way off. There is also a built-in thermal cut out that disconnects power in event of overheating due to accidental blockage and a fan delay switch that energizes the fan only after the elements are heated to prevent unheated air from being discharged. The fan motor is also only de-energized after the residual heat has dissipated when the heat is shut off. The fan motor is permanently lubricated and totally enclosed to ensure long life, low maintenance and gently distribute warmth throughout room area.


Features and Specifications:


* Model: Q-Mark LFK404
* Product Type: Electric Wall Heater
* Weight: 21 lbs.
* Dimensions: 19'' x 16'' x 5.5''
* Wall Cutout: 18'' x 14.5'' x 4''
* BTU Output: 10,239/13,652
* Amps: 14.4/16.7
* Watts: 3000/4000
* Volts: 240/208
* Coverage: Up to 400 Square Feet
* Two Heat Settings
* Three Piece Design
* Steel Finned Metal Sheath Electric Heating Elements
* Rugged Stamped Steel Cover Panel
* Northern White Louvered Cover
* Navajo White Finish
* Hole Plug For Tamper-Resistant Installation
* Integral Double-Pole Thermostat
* Thermal Safety Switch
* Fan Delay Switch
* Can Be Recessed in Wall or Surface Mounted
* Permanently Lubricated Totally Enclosed Fan Motor


Benefits:


* Includes hole plug to prevent tampering.
* Has a built-in thermal cutout.
* Has a three piece design for easy installation.

Real Customer Testimonials
"The LFK404 works great. It is easy to operate, gives off even consisten heat and exceeded my expectation for an easy product to install and operate. The white enamal finish and plain grill front help it blend in with the wall."
-J. Bilder - Chicago, IL
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