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Type: Posts; User: promach

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  1. Replies
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    Closed: Re: Verilator width warnings

    parameter DDR_ADDR_BITWIDTH = $clog2(NUM_OF_DATA_ENTRIES);

    input clk, reset;

    output [DDR_ADDR_BITWIDTH-1:0] buf_address;

    assign buf_address = {{(DDR_ADDR_BITWIDTH-IDX_N_WIDTH){1'b0}}, idx_n}...
  2. Replies
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    Closed: Re: fastest multiplication alghorithms

    See my multiplication implementation in verilog

    https://github.com/promach/multiply
  3. Replies
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    Closed: Verilator width warnings

    Could anyone advise about the verilator width warnings below ?




    module in_buf_load(clk, reset, buf_address); // generates DDR address for the AWS guy code

    localparam MAX_J = 10;...
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    Closed: Clock divider circuit

    How is https://www.academia.edu/9005130/DESIGN_OF_A_LOW_POWER_MULTIBAND_CLOCK_DISTRIBUTION_CIRCUIT_USING_SINGLE_PHASE_CLOCK different compared to clock divider tutorial at...
  5. Closed: Fast Arbiters for On-Chip Network Switches

    For Fast Arbiters for On-Chip Network Switches , what is the difference between Proposed-I and Proposed-II topologies ?

    156427

    156428
  6. Closed: Re: Round-Robin Arbiter Architecture from Efficient microarchitecture for network-on-

    Thanks for the wikipedia link. However, I am in the dark on how prefix sum could actually replace blocks F and R ?

    https://i.imgur.com/5Yvk3nu.png

    https://i.imgur.com/euXUGVW.png
    ...
  7. Closed: Round-Robin Arbiter Architecture from Efficient microarchitecture for network-on-chip

    I have formally verified a round-robin arbiter code

    Could anyone advise about the various methods of minimizing the combinational delay tcomb penalty mentioned at the end of section 2.3 of...
  8. Closed: Derivation of basis function for M-ary PAM baseband PAM signal set

    Do anyone have any idea why Am = 2m-1-M ?

    http://i.imgur.com/iKxm2N8.png
  9. Closed: Slide 0951 of the book : Analog Design Essentials

    I am reading the book Analog Design Essentials

    However, the attached slide 0951 on the book pdf is so unclear.

    Could anyone upload the same slide with higher sampling resolution ? Thanks !!!
    ...
  10. Closed: Re: Understanding Linear implementation of a round-robin arbiter

    What is the actual purpose of the chain of fixed-priority cells F in figure 2.3 ?

    How does this chain actually help to eliminate the circular loop logic as described in the paper itself ?
    ...
  11. Closed: Re: Determine whether a binary number is of power of two in verilog code

    20 = 1

    So, in[0] could have the value of 1

    Note: I am trying to detect one-hot as mentioned in post #1
  12. Closed: Re: Understanding Linear implementation of a round-robin arbiter

    @std_match

    What is wrong with my verilog code implementation that resulted in wrong waveform result ?

    https://i.stack.imgur.com/uGFct.png


    module arbiter2 #(parameter WIDTH = 4) (clk,...
  13. Closed: Re: Determine whether a binary number is of power of two in verilog code

    @ads-ee

    The following will also work, with less LUTs and higher fmax compared to the solution above.

    always @(*) is_power_of_two = ((in[7] + in[6] + in[5] + in[4] + in[3] + in[2] + in[1] +...
  14. Closed: Understanding Linear implementation of a round-robin arbiter

    For Efficient microarchitecture for network-on-chip routers , do anyone know how this round-robin arbiter actually works ?


    Note: The corresponding verilog codes seem to be located at...
  15. Closed: Re: Determine whether a binary number is of power of two in verilog code

    The solution is to use


    always @(*) f = (v != 0) && ((v & (v - 1)) == 0);


    Someone suggested me to use power_of_two = ^v which is so much simpler.

    Any comment ?
  16. Closed: Re: Determine whether a binary number is of power of two in verilog code

    See the verilator linting output with is_power_of_two.v


    verilator -Wall --lint-only is_power_of_two.v
    %Warning-WIDTH: is_power_of_two.v:6: Logical Operator LOGAND expects 1 bit on the LHS, but...
  17. Closed: Determine whether a binary number is of power of two in verilog code

    I am trying to determine whether a binary number is of power of two (in other words, is it of one-hot encoding).

    I found a method to do so, but it is for integer.

    Could anyone help to transform...
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    Closed: Re: Derivation of Marchand Balun equations

    Analysis and design of impedance-transforming planar Marchand baluns talks about the derivation process, but it is still not complete.

    We still need to derive equation (1) of the paper.
  19. Closed: Re: HFSS port 'Port1' does not have a valid reference plane above or below it.

    See https://github.com/promach/planar_marchand_balun

    I suppose I made mistake in the width of the coupled microstrip (W=2mm) in terms of ports impedance of 50 ohm ??
    ...
  20. Replies
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    Closed: Derivation of Marchand Balun equations

    Could anyone advise about derivation of Marchand Balun Equations ?

    Note: Screenshot below is taken from paper :

    New Design Formulas for Impedance-Transforming 3-dB Marchand Baluns

    ...
  21. Closed: Re: microstrip low pass filter design issues with sonnet

    Could you post the ADS linecalc window screenshot which shows 120° ?
  22. Closed: Re: microstrip low pass filter design issues with sonnet

    Someone else told me the above.

    What do you think ?
  23. Closed: Re: microstrip low pass filter design issues with sonnet

    Is it possible to prove this mathematically using some microstrip expressions ?
  24. Closed: Re: microstrip low pass filter design issues with sonnet

    I am trying to understand why open-circuited stub has a better S21 response compared to stepped impedance according to the result at figure 5.4 below:

    this microstrip equation for Zo does not...
  25. Closed: Re: microstrip low pass filter design issues with sonnet

    See https://github.com/promach/low_pass_filter

    By the way, what is the difference between open-circuited stub and stepped-impedance ?



    See 2GHz Microstrip Low Pass Filter Design with...
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