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How to understand schematics?

I am a mechanical engineer currently working in mechatronics project. can any one suggest me some website that contain free schematic diagram and build the electronic system from that schematic. Basically step by step by building of electronic components with the help of schematic.

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Give a cheat of need for speed hot peir shut

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How could I repair the code4e21


You can go to most auto parts stores to find out what the error code actually means. Once you know that, you'll have a few repair options. You could do it yourself, but that's really only a good idea if you have experience fixing cars yourself. You could also go to a mechanic. With some cars you can sometimes even find specialized mechanics to help you. I think that would be a really good way to make sure that your car gets fixed properly.
http://www.cinciforeigncarrepair.com/services

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Which branch of engineering robots are?


You may need to study Mechanical Engineering, take Mechatronics if available and choose Robotiocs as one of the elective subject. A student in electronics/ electrical can also do his masters in Robotics. Hope I could help. Good Day

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POWER SUPPLY BAD, NEED SCHEMATIC DIAGRAM COMPONENT LEVEL


Polaroid will not release component schematics not even to service centers as they are designed to replace the entire modules while under warranty out of warranty there is very little Chance of obtaining new replacement parts. As i have a 2006 LCD and a 2007 Plasma Polaroids and polaroid told me they are considered a disposable TV replacement parts are not available and suggested that I try ebay

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Career in robotics


At my university, they offer a graduate program in robotic engineering. Here are the course requirements:

=================

RBE 1001. Introduction to Robotics (Formerly ES 2201).
Cat. I
Multidisciplinary introduction to robotics, involving concepts from the fields of electrical engineering, mechanical engineering and computer science. Topics
covered include sensor performance and integration, electric and pneumatic actuators, power transmission, materials and static force analysis, controls and programmable embedded computer systems, system integration and robotic applications. Laboratory sessions consist of hands-on exercises and team projects where students design and build mobile robots. Undergraduate credit may not be earned for both this course and for ES 2201.
Recommended background: mechanics (PH 1110/PH 1111).
Suggested background: electricity and magnetism (PH 1120/PH 1121), may be taken concurrently.


=================


RBE 2001. Unified Robotics I.
Cat. I
First of a four-course sequence introducing foundational theory and practice of robotics engineering from the fields of computer science, electrical engineering and mechanical engineering. The focus of this course is the effective conversion of electrical power to mechanical power, and power transmission for purposes of locomotion, and of payload manipulation and delivery. Concepts of energy, power and kinematics will be applied. Concepts from statics such as force, moments and friction will be applied to determine power system requirements and structural requirements. Simple dynamics relating to inertia and the equations of motion of rigid bodies will be considered. Power control and modulation methods will be introduced through software control of existing embedded processors and power electronics. The necessary programming concepts and interaction with simulators and Integrated Development Environments will be introduced. Laboratory sessions consist of hands-on exercises and team projects where students design and build robots and related sub-systems.
Recommended background: ES 2201/RBE 1001, ES 2501 (can be taken concurrently), ECE 2022.


=================


RBE 2002. Unified Robotics II.
Cat. I
Second of a four-course sequence introducing foundational theory and practice of robotics engineering from the fields of computer science, electrical engineering and mechanical engineering. The focus of this course is interaction with the environment through sensors, feedback and decision processes. Concepts of stress and strain as related to sensing of force, and principles of operation and interface methods for electronic transducers of strain, light, proximity and angle will be presented. Basic feedback mechanisms for mechanical systems will be implemented via electronic circuits and software mechanisms. The necessary software concepts will be introduced for modular design and implementation of decision algorithms and finite state machines. Laboratory sessions consist of hands-on exercises and team projects where students design and build robots and related sub-systems.
Recommended background: RBE 2001, CS 1101 or CS 1102


=================


RBE 3001. Unified Robotics III.

Cat. I
Third of a four-course sequence introducing foundational theory and practice of robotics engineering from the fields of computer science, electrical engineering and mechanical engineering. The focus of this course is actuator design, embedded computing and complex response processes. Concepts of dynamic response as relates to vibration and motion planning will be presented. The principles of operation and interface methods various actuators will be discussed, including pneumatic, magnetic, piezoelectric, linear, stepper, etc. Complex feedback mechanisms will be implemented using software executing in an embedded system. The necessary concepts for real-time processor programming, re-entrant code and interrupt signaling will be introduced. Laboratory sessions will culminate in the construction of a multi-module robotic system that exemplifies methods introduced during this course.
Recommended background: RBE 2002, ECE 2801, CS 2223, MA 2051
This course will be offered starting in 2008-09.

=================

RBE 3002. Unified Robotics IV.
Cat. I

Fourth of a four-course sequence introducing foundational theory and practice of robotics engineering from the fields of computer science, electrical engineering and mechanical engineering. The focus of this course is navigation, position estimation and communications. Concepts of dead reckoning, landmark updates, inertial sensors, vision and radio location will be explored. Control systems as applied to navigation will be presented. Communication, remote control and remote sensing for mobile robots and tele-robotic systems will be introduced. Wireless communications including wireless networks and typical local and wide area networking protocols will be discussed. Considerations will be discussed regarding operation in difficult environments such as underwater, aerospace, hazardous, etc. Laboratory sessions will be directed towards the solution of an open-ended problem over the course of the entire term.
Recommended background: RBE 3001.
Suggested background: ES 3011
This course will be offered starting in 2008-09.

=================


RBE/ME 4322. Modeling and Analysis of Mechatronic Systems.
Cat. I
This course introduces students to the modeling and analysis of mechatronic systems. Creation of dynamic models and analysis of model response using the bond graph modeling language are emphasized. Lecture topics include energy storage and dissipation elements, transducers, transformers, formulation of equations for dynamic systems, time response of linear systems, and system control through open and closed feedback loops. Computers are used extensively for system modeling, analysis, and control. Hands-on projects will include the reverse engineering and modeling of various physical systems. Physical models may sometimes also be built and tested.
Recommended background: mathematics (MA 2051, MA 2071), fluids (ES 3004), thermodynamics (ES 3001), mechanics (ES 2501, ES 2503)


=================


RBE/ME 4815. Industrial Robotics.

Cat. I
This course introduces students to robotics within manufacturing systems. Topics include: classification of robots, robot kinematics, motion generation and transmission, end effectors, motion accuracy, sensors, robot control and automation. This course is a combination of lecture, laboratory and project work, and utilizes industrial robots. Through the laboratory work, students will become familiar with robotic programming (using a robotic programming language VAL II) and the robotic teaching mode. The experimental component of the laboratory exercise measures the motion and positioning capabilities of robots as a function of several robotic variables and levels, and it includes the use of experimental design techniques and analysis of variance.
Recommended background: manufacturing (ME 1800), kinematics (ME 3310), control (ES 3011), and computer programming.

=================

Dec 16, 2008 | Microsoft Windows Vista Ultimate Edition

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TO INCLUDE MUTILINGUAL SOURCE CODE IN OUR PROJECT


I'm not sure I totally understand your question. Are you asking for a tool or package to include that will convert all strings labels in your application from english to another language? From what I know, there isn't such a tool.

Typically, you need to map all your variables to a single 'resource' file, which contains the mappings for the specific language. So, your US English, you'd have a en-us resource file that contains a name value pair of your variable and english form, such as:
TEXT1LABEL=Full Name
TEXT2LABEL=Address 1
... etc

Then, to support another language, simply take that resource file to a 'localization' company or someone or some site that can generate language specific strings.

Then, in your application, you need a mechanism to switch to alternate languages, or key off something with the operating system. Once changed, your code should switch to use a different language resource file.

Kind of a simplistic view of this I know, but don't want to dig much deeper without understanding your question further. Does this help?

Jan 28, 2008 | Computers & Internet

2 Answers

Blury


Your problem could be a bad focus pack, a bad convergence board or a problem in the power supply board. If you know how to read a schematic diagram, I suggest that, that is the first thing you should invest in. If you do not understand how to service solid state circuit boards, read a schematic, or use a multimeter, my best advice to you would be to call in a servicer for Samsung, as there is a lot of high voltage inside these puppies even when you unplug them. This is not a place to be experiementing around inside of. Good Luck with this repair.

Jun 08, 2007 | Samsung HCN5529W 55" Rear Projection...

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RCA Projection TV MM52110 Won't Power Up


Being able to read a schematic and understanding how a TV works are two different things. These chassis that RCA used in these sets can be somewhat complex to troubleshoot. I would geuess that unless the power light comes on at all then you have a dead power supply in the TV.

Apr 14, 2007 | RCA MM52110 52" Rear Projection HDTV-Ready...

1 Answer

Service manual (schematics)


I just bought a service manual on Ebay. I'm not at home so I don't remember the vendors name, however it was $8.50 and the documentation seems complete. I also just found this site: www.john-oliver.net/video/50H81.pdf which contains a block diagram but not the full set of schematics. If you really need the schematics let me know and try and get them to you.

Oct 04, 2006 | Toshiba 57H81 57" Rear Projection...

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