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    74 vout jobs found, pricing in SGD

    Phase shift full bridge converter with ZVS simulation including control feedback simulation in matlab it has to be implemented as visual as possible with all elements shown: mosfets, choke, transformer, output inductor, capacitor and load resistor, feedback, reference voltage, error amplifier, correction circuit/PID, phase shift block, and...choke, transformer, output inductor, capacitor and load resistor, feedback, reference voltage, error amplifier, correction circuit/PID, phase shift block, and pulses former driving the mosfets. Every mosfet has to contain a diode and capacitance across it, to be able to achieve ZVS. The simulation should allow to variate main parameters: Vin, Vou, Iout, Switching frequency. Parameters: Vin: 400vdc Vout: 24v Iout: 50 ampere Switching Frequen...

    $142 (Avg Bid)
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    25 bids

    ...pads to be connected to the off board strain gauges (2 strange gauges). The two strain gauges and two resistors (350 ohm) will be used to construct a Wheatstone bridge (in this case a half bridge). Instead of R1 and R4 (as in the attached image ""), there will be two strain gauges for which you will need to leave pads for the strain gauges to be connected to. The two end points at Vout (as in the attached image "") are to be connected to B+ and B- on HX711. I want to use the B+ and B- pins instead of A+ and A- pins to save energy, please let me know if I am wrong and if it does not save battery. I Need the Bluetooth chip to send the data from the HX711 over Bluetooth but if possible it would be nice if the chip would also send over the value of the voltage it...

    $203 (Avg Bid)
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    Development and eventually delivery of a control PCB Specification adjustable speed of 1-4 12Vdc fan 1.) Input voltage: 12Vdc ...potentiometer. a. Visual indication: 3 LED's are placed on the board. Also a connector which can connect external LED's. 5.) Adjustability: 10 ~ 100% speed. i. How: 3 pieces 10-turn mini potentiometer. ii. All: All connected fans are adjusted at the same time 6.) Special feature: each output gets a support electrolytic capacitor, so that the Vout is smoothed and the fan rotates optimally. 7.) Connector Vin: Molex pin 2-pin 4mm and screw terminals 8.) Connector Vout: 4 pcs. Molex 2-pin 2,54mm and screw terminal block 9.) Connector pushbutton: 4-pin connector on PCB for illuminated pushbutton. Also I am looking for a producer / ...

    $899 (Avg Bid)
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    38 bids

    The board will have 2 main functions. First, 4 gpios will be used to send PWM signals to a...tri-state 4 channel bus converter will be needed for outputting 5V PWM ( something like 74ahct125 ). Second function will be controlling a linear solenoid with onboard MOSFET and diode.(Solenoid power consumption Vout<20V, C~30A) The solenoid cycling speed/frequency will be controlled by a second pin set of ADC. 2 additional switch pin header will also be required to act as on/off to each circuit. Plus A USB C port alone with a reset and boot button. I want the PCB to be as small as possible. Less than 25x25mm/30x30mm. P.S. I want to have direct solderable pads on the board for Vin,GND and Vout GND for the solenoid part. I attached a vague reference of PCB design, that’s ...

    $645 (Avg Bid)
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    20 bids

    Introduction We are using a half-brick D... The required connections are as follows - refer to Section 2 of the Application Notes for a diagram & description): - Vin & Vout terminal connections (Pins 1,6,7 & 11) - Pin 7 to Pin 8 - Pin 10 to Pin 11 - A capacitor between pin 6 & pin 5 (the specified 240uF VISHAY 118 AHT is no longer available. I was advised to use one of these by the DC/DC supplier: ). - A capacitor between output pins 7 & 11- Something like this Terminals Screw terminals should be provided for the Vin & Vout connections (4 terminals in total). These must be able to accept 2.5mm square wires terminated with ferrules.

    $236 (Avg Bid)
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    Design a small PCB to convert input signals of +/-12V for the analog input pins of the Arduino Nano. Signal inputs: - Vin1, -12 V to ...terminal blocks e.g. similar to Phoenix Contact 1725672 - At least two through holes 3.4mm for mounting - Voltage limitation 5V on the outputs - Inputs and outputs labeled (if sufficient space :-) - Additional label: LNF #9t4Z - I want to order the assembled PCB at or - whatever you get along better with, no preference from my side. Tasks: - Design circuit - Provide Vout simulations for Vin = min...max, 0, 10, 100, 1000 Hz (no HF required) - Design PCB and create everything required for assembled prototype manufacturing at or : Gerber files, BOM (Bill of Materials) and CPL (Component Placement List etc.

    $494 (Avg Bid)
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    i have a schematic and BOM in the form of a .prjpcb, an .schdoc and a .pdf i need to have the schematic validated, and a PCB designed and ready to prototype. i also need code written to run the module. code output 0.50V at startup then run every 100ms: if shunt sense <45mV AND Vout <1.00V increment Vout +0.01V if shunt >45mV decrement Vout -0.01V wait 100ms then repeat i will prototype the control module, load your code, validate the operation of the module and then pay

    $711 (Avg Bid)
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    9 bids

    ...Electric Schematic & Layout 4) LT SPICE and IRSIM where needed to show performance 5) Verify your design by putting pulses to see the outputs. 6) Complete a Truth table for the MUX. 7) Find a Boolean expression for the MUX. 8) Extract Rp, Rn, and C's from your layout using electric. Use the extraction guide I put under the CAD folder. 9) Run LTSPICE in Electric to "plot" waveforms of Vinputs and Vout. Use 100ns period, 5ns rise time (tr) and 5ns fall time (tf) for Vin. Use 50% duty cycle which means 50% logic high and 50% logic low levels. ...

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    I need a SEPIC converter with the following characteristics Vin(min) = 11V Vin(max) = 30V Vout = 12V Iout (max) = 2A f = 100khz - 300khz found design with LT3759 chip ANALOG DEVICES i dont know if its an high cost design or not and good quality or no too and Analog devices parts are now not used very much in professional design ? and other think i see some board use regulator like LM2678, LM2596 .... maybe we should ensure that the input voltage is higher than the output but if the input was 12.8v and ouput was 11v its not a problem i can get my 3.3v and 5v from this output ... Thank you in advance.

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    In this project, A and B are digital signals, while VOUT is an analog output signal. You are required to.1. Design Verilog block to generate waveforms as shown in the following figure.2. Design analog block acting as a NAND gate to generate “VOUT”. Simulate and verify your design.

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    We have a power supply that goes through a R1 and a variable R2 resistor. We can adjust manually its Vout with a potentiometer. Our goal is to maintain Vref stabilized to a preset manual value SET Vref (with a potentiometer) despite the change of load (R1, R2, R1+R2). At this point you have to understand that Vout is not the Vref. Vout has to be adjusted as much as it has to maintain Vref equal to our SET Vref value. This can be achieved through manual mode (manual adjustment of Vout until Vref=Vset) or automatically which is the main issue. (It is something like a voltage potentiostat but without the circular modes.)

    $199 (Avg Bid)
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    Hello, I have a voltage regulator made with a LM25085 (Vin 6 to 12V, Vout 4.3V), the max current is 5.5A. I have used TI Webench to make the design, and I have just get the PCB from my supplier. The circuit doesn't work, when a load connected as output (see the attached picture Vin, Vsw, and Vout). I need someone expert with this kind of regulator that can fix the problem. Regards, Riccardo

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    step up from 24 to 200v dc 2.5 A controls: direction. Pwm enable Vout adjustment 24-200V

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    ...& Layout 4) LT SPICE and IRSIM where needed to show performance 5) Verify your design by putting pulses to see the outputs. 6) Complete a Truth table for the MUX. 7) Find a Boolean expression for the MUX. 8) Extract Rp, Rn, and C&#39;s from your layout using electric. Use the extraction guide I put under the CAD folder. 9) Run LTSPICE in Electric to "plot" waveforms of Vinputs and Vout. Use 100ns period, 5ns rise time (tr) and 5ns fall time (tf) for Vin. Use 50% duty cycle which means 50% logic high and 50% logic low levels. If after reading this much, you are sure to complete it, please bid I will share remaining details with you. I need this done in 96 hours from now....

    $68 - $95
    Sealed
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    6 bids

    Design an Automotive DC-DC Charger. This should include: PCB layout Firmware Windows Based Software for configuration. Vin : 24-32VDC Vout: 28.8VDC Iout: 50A max All Source files are required apon completion Please read attacehd file for more detail

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    Feedback Amplifier For the circuit shown below, perform all calculations neglecting ro and the backgate effect for M1 a) Write an expression for the mid-band gain, vout(s)/iin(s) b) Write an expression for the mid-band gain, vout(s)/iin(s) , assuming Av becomes arbitrarily large (i.e. Av = ∞) Feedback Operational transconductance amplifier ... Check the PDF file for more details. please only bid what you are willing to work for. DEADLINE is 72 Hours ( 12P.M. Pacific Standard Time)

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    An input voltage of 15V <Vin< 20V and an output of Vout= 40V over a load range of1W <Pout< 100W. Switching frequency is fsw= 750kHz.

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    Analyze and design a boost converter and its controller given the following specifications: An input voltage of 15V <Vin< 20V and an output of Vout= 40V over a load range of1W <Pout< 100W. Switching frequency is fsw= 750kHz.

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    An input voltage of 15V <Vin< 20V and an output of Vout= 40V over a load range of1W <Pout< 100W. Switching frequency is fsw= 750kHz.

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    You must have multisim or be able to analyze Analog circuits. I need answers to a lab report regarding Vout, Fc1, Fc2, BW, and other values. I can do this myself within 2 hours using multisim but have no time.

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    specification: Vout = 230V, Freq = 50Hz Pout = 4.5-5 Kw

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    Hi im looking for someone to make a software for me . For STM32F429I-DISC1 board will need a variable duty cycle PWM of 15KHz frecvency . Will have an Voltage and curent sensor for input and output and will need to make the PWM with the duty cycle to keep output at 14,2V and input Closer to 17.5V (MPPT of the sollar pannel) . Also i would want to write the Vin Vout Iin Iout and D (duty cycle) on his LCD. (POLOLU-2452---curent sensor // DF-DFR0051--voltage sensor) The price its a reference i can pay more if needed ! Best Regards , Raul.

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    Hi im looking for someone to make a software for me . For STM32F429I-DISC1 board will need a variable duty cycle PWM of 15KHz frecvency . Will have an Voltage and curent sensor for input and output and will need to make the PWM with the duty cycle to keep output at 14,2V and input Closer to 17.5V (MPPT of the sollar pannel) . Also i would want to write the Vin Vout Iin Iout and D (duty cycle) on his LCD. (POLOLU-2452---curent sensor // DF-DFR0051--voltage sensor) The price its a reference i can pay more if needed ! Best Regards , Raul.

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    Hi im looking for someone to make a software for me . For STM32F429I-DISC1 board will need a variable duty cycle PWM of 15KHz frecvency . Will have an Voltage and curent sensor for input and output and will need to make the PWM with the duty cycle to keep output at 14,2V and input Closer to 17.5V (MPPT of the sollar pannel) . Also i would want to write the Vin Vout Iin Iout and D (duty cycle) on his LCD. (POLOLU-2452---curent sensor // DF-DFR0051--voltage sensor) The price its a reference i can pay more if needed !

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    Hello, I'm Looking for someone to perform the analysis of the simple parallel RC circuit as in the attached picture: A) In the case where Ip, In, are linear and R and C are constants. B) In the case shown in the figure. Analysis to be performed (equivalent set of differential equations, small-signal equivalent, transfer function and solution Vout, Simulink and matlab models to solve for Vout) The equations should preferably be written in Latex.

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    ...clip. 3) When a list video is selected, a start button is activated. 4) When the start button is pressed, the video starts to play and mixes with the camera as a chroma key filter, resulting in a video where the actor is inside the video. 5) After a few seconds of playback, automatic recording starts until the end of the video. The file is saved with the consecutive number in the folder named "vout". 6) Write the Mysql table with the resulting video number for this actor. - The format of the videos will depend on the recommendation of the programmer according to the best performance. - Only the audio of the video clips will be used. - Set up of green background will be similar to this: Requirements: - Deliver source code, developed in XCode, Objective

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    Hi I have circuit of step down power supply with an inductor and capacitor. Vin9-30V Vout:5V Iout: 5A freq:150KHz. I need design inductor.

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    need to find the right components values of a dc-dc boost switch circuit based on ic data sheet and excell application design assistance. part of the values have been determined, need an experionce eye for rest of the components. ic NCV8871, Vin 12v, Vout 27v, Iout 1.7A. I am using the boost schematic on page 12. Please contact for further details. Regards,

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    I need a design of a multi-channel, ultra-high efficiency switching LED driver (Constant Current) with the following specs: Topology: AC to DC (CC) single stage with PFC Vin = 100 VAC to 240 VAC Output quantity: 4 Vout = 24 V DC to 36V DC Iout = 0.0 A to 1.4 A (per channel) CC adjustable: yes, with analog or PWM control voltage Overall Efficiency: >95% (at all working point with load I > 0.2A) Power Factor: > 0.95 Size: < 100 mm x 40 mm x 20 mm Component Cost: < $10 at 1000 pcs I know, that specification are very difficult to reach and I'm available to discuss exceptions and tradeoffs. Some hints for topology (not binding, just suggestions):

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    ...necessary, please include a Vreferecnce, error summer, pi block, limiter and the gating signal should be appropriate with the reason for choice. I require a transfer function for the controller and converter with variable descriptions and component relation to variables in transfer function. Topologies provided as attachments 5 of them. Use these specifications, Specification 1: P=1MW; Vin = 20kV; Vout=50kV. 2-5kHZ is an example of the switching frequency that can be used for this converter unless discussed other idea with myself . Design the converters for OPTIMUM efficiency and show calculation overall efficiency with Pin and Pout Values; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. I'm trying ...

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    ...necessary, please include a Vreferecnce, error summer, pi block, limiter and the gating signal should be appropriate with the reason for choice. I require a transfer function for the controller and converter with variable descriptions and component relation to variables in transfer function. Topologies provided as attachments 7 of them. Use these specifications, Specification 1: P=1MW; Vin = 20kV; Vout=50kV. 2-5kHZ is an example of the switching frequency that can be used for this converter unless discussed other idea with myself . Design the converters for OPTIMUM efficiency and show calculation overall efficiency with Pin and Pout Values; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. I'm trying ...

    $114 (Avg Bid)
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    ...limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and analysis on Control design. Please refer to the completion table attached for further clarity of requirements. The circuit should simulate correctly with minimal ripple and smooth outputs. Topologies provided as attachments. Use these specifications, Specification 1: P=1MW; Vin = 20kV; Vout=50kV. 2-5kHZ is an example of the switching frequency that can be used for this converter unless discussed other idea with myself . Design the converters for OPTIMUM efficiency and show calculation overall efficiency with Pin and Pout Values; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. I'm trying to do a...

    $41 - $340
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    0 bids

    ...limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and analysis on Control design. Please refer to the completion table attached for further clarity of requirements. The circuit should simulate correctly with minimal ripple and smooth outputs. Topologies provided as attachments. Use these specifications, Specification 1: P=1MW; Vin = 20kV; Vout=50kV. 2-5kHZ is an example of the switching frequency that can be used for this converter unless discussed other idea with myself . Design the converters for OPTIMUM efficiency and show calculation overall efficiency with Pin and Pout Values; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. I'm trying to do an ...

    $41 - $340
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    0 bids

    ...with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and analysis on design. Please refer to the completion table attached for further clarity of requirements. Topologies provided as attachments. Use these specifications, Specification 1: P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology/circuit (for circuit 1, 3-7). Specification 2: P=60-100W; Vin = approximately 20V (Where allowable); Vout=100Vdc_max for the design of one topology/circuit (for circuit 8). I would need an experimental validation circuit for designing a breadboard/ circuit board. 2-5 kHz is a reasonable switching frequency for the converters for simulating these high power/voltage topologies even though in real implementa...

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    ...sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Stable outputs and inputs required with very low input ripples and output ripples Examples of the style of control needed or attempted is given in the schematics, a load is required for the circuits as a resistor. Topologies provided as attachments. Use this specification, Specification 1: P=1MW; Vin = 20kV; Vout=50kV for the 3 schematics design of each topology. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. There are 3 topologies/ circuits. I'm trying to do an investigation looking at installed power in the semiconductors,...

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    ...Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use these specification, Specification 1 : P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. I would need an experimental validation circuit for designing a breadboard/ circuit board for a second specification of P=60-100W; Vout_max= 100V. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of re...

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    ...comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specification, Specification 1: P=1MW; Vin = 20kV; Vout=50kV for the 6 schematics design of each topology. I would need an experimental validation circuit for designing a breadboard/ circuit board for a second specification 2: of P=60-100W; Vout = 100Vout_max. (I would like the circuit current and voltage ripples to be limited as much as possible especially for the experimental circuit.) Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use ...

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    ...filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specification, Specification : P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. I would need an experimental validation circuit for designing a breadboard/ circuit board for a second specification of P=1MW; Vin = 20kV; Vout = 50kV. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. There are 5-7 topologies/ circuits. I'm trying to do an inves...

    $335 (Avg Bid)
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    ...filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specification, Specification : P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. I would need an experimental validation circuit for designing a breadboard/ circuit board for a second specification of P=1MW; Vin = 20kV; Vout = 50kV. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. There are 5-7 topologies/ circuits. I'm trying to do an inves...

    $377 (Avg Bid)
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    ...Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specification, Specification : P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. There are 3 topologies/ circuits. I'm trying to do an investigation looking at installed power in the semiconductors, size of pas...

    $477 (Avg Bid)
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    ...Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specification, Specification : P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. There are 3 topologies/ circuits. I'm trying to do an investigation looking at installed power in the semiconductors, size of pas...

    $340 - $1021
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    ...Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specification, Specification : P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. There are 9 topologies/ circuits. I'm trying to do an investigation looking at installed power in the semiconductors, size of pa...

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    ...Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specifications, Specification 1: P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. The second design of each topology should use Specification 2: Vmax_out = 100Vdc; P = 60-100W, as this will be the design for experimental implementation and validation. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they incre...

    $264 (Avg Bid)
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    ...Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this specifications, Specification 1: P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. The second design of each topology should use Specification 2: Vmax_out = 100Vdc; P = 60-100W, as this will be the design for experimental implementation and validation. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they incr...

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    ...components were chosen? Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this spec: P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. The second design of each topology should use Vmax_out = 100Vdc; P = 60-100W, as this will be the design for experimental implementation and validation. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of re...

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    ...components were chosen? Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this spec: P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. The second design of each topology should use Vmax_out = 100Vdc; P = 60-100W, as this will be the design for experimental implementation and validation. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of re...

    $406 (Avg Bid)
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    3 bids

    ...components were chosen? Closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc.) with reasons for block use and notes on design. Examples of the style of control needed or attempted is given in the semi-complete schematics. Topologies provided as attachments. Use this spec: P=1MW; Vin = 20kV; Vout=50kV for the first design of each topology. The second design of each topology should use Vmax_out = 100Vdc; P = 60-100W, as this will be the design for experimental implementation and validation. Design the converters for optimum efficiency and show calculation overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of re...

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    ...Calculations of component parameters and why size passive components chosen? and closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc) with reasons for block use and notes. Examples of the style of control needed is given in the schematics. Topologies provided. Use this spec: P=1MW; Vin = 20kV; Vout=50kV. Design for optimum efficiency and calculate overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. Save SimView figures of Gate Signals, Voltages, Current ripples, Processed power against Installed Power and evaluation of losses (including magnetic losses). Brief notes or sentences on des...

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    $242 Avg Bid
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    ...Calculations of component parameters and why size passive components chosen? and closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc) with reasons for block use and notes. Examples of the style of control needed is given in the schematics. Topologies provided. Use this spec: P=1MW; Vin = 20kV; Vout=50kV. Design for optimum efficiency and calculate overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. Save SimView figures of Gate Signals, Voltages, Current ripples, Processed power against Installed Power and evaluation of losses (including magnetic losses). Brief notes or sentences on des...

    $41 - $340
    $41 - $340
    0 bids

    ...Calculations of component parameters and why size passive components chosen? and closed loop current and voltage control design (where necessary, with PI blocks, limiters, filters, comparators, voltage sensors, voltmeters, ammeters etc) with reasons for block use and notes. Examples of the style of control needed is given in the schematics. Topologies provided. Use this spec: P=1MW; Vin = 20kV; Vout=50kV. Design for optimum efficiency and calculate overall efficiency; also design for lowest losses with reason for use of components and how they increase efficiency of reduce losses. Save SimView figures of Gate Signals, Voltages, Current ripples, Processed power against Installed Power and evaluation of losses (including magnetic losses). Brief notes or sentences on descr...

    $340 (Avg Bid)
    $340 Avg Bid
    1 bids