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  • epub文档 KiCad PCB Editor 4.0

    all the documents necessary for production: Fabrication outputs: Files for Photoplotters in GERBER RS274X format. Files for drilling in EXCELLON format. Plot files in HPGL, SVG and DXF format. Plot output: 11.4.1. GERBER format For each layer, Pcbnew generates a separate file following the GERBER 274X standard, by default in 4.6 format (each coordinate in the file is represented by 10 digits, of which xxxx-B_Mask.gbr for the copper-side solder mask. GERBER file format: The format used by Pcbnew is RS274X format 4.6, Imperial, Leading zero omitted, Abs format. These are very usual settings. 11.4.2
    0 码力 | 268 页 | 2.81 MB | 1 年前
    3
  • epub文档 KiCad PCB Editor 5.1

    all the documents necessary for production: Fabrication outputs: Files for Photoplotters in GERBER RS274X format. Files for drilling in EXCELLON format. Plot files in HPGL, SVG and DXF format. Plot output: 11.4.1. GERBER format For each layer, Pcbnew generates a separate file following the GERBER 274X standard, by default in 4.6 format (each coordinate in the file is represented by 10 digits, of which xxxx-B_Mask.gbr for the copper-side solder mask. GERBER file format: The format used by Pcbnew is RS274X format 4.6, Imperial, Leading zero omitted, Abs format. These are very usual settings. 11.4.2
    0 码力 | 279 页 | 3.02 MB | 1 年前
    3
  • pdf文档 KiCad PCB Editor 4.0

    the documents necessary for production: • Fabrication outputs: – Files for Photoplotters in GERBER RS274X format. – Files for drilling in EXCELLON format. • Plot files in HPGL, SVG and DXF format. • output: 11.4.1 GERBER format For each layer, Pcbnew generates a separate file following the GERBER 274X standard, by default in 4.6 format (each coordinate in the file is represented by 10 digits, of which xxxx-B_Mask.gbr for the copper-side solder mask. GERBER file format: The format used by Pcbnew is RS274X format 4.6, Imperial, Leading zero omitted, Abs format. These are very usual settings. 11.4.2
    0 码力 | 153 页 | 3.10 MB | 1 年前
    3
  • pdf文档 KiCad PCB Editor 5.1

    the documents necessary for production: • Fabrication outputs: – Files for Photoplotters in GERBER RS274X format. – Files for drilling in EXCELLON format. • Plot files in HPGL, SVG and DXF format. • output: 11.4.1 GERBER format For each layer, Pcbnew generates a separate file following the GERBER 274X standard, by default in 4.6 format (each coordinate in the file is represented by 10 digits, of which xxxx-B_Mask.gbr for the copper-side solder mask. GERBER file format: The format used by Pcbnew is RS274X format 4.6, Imperial, Leading zero omitted, Abs format. These are very usual settings. 11.4.2
    0 码力 | 166 页 | 3.28 MB | 1 年前
    3
  • pdf文档 The RISC-V Reader: An Open Architecture AtlasFirst Edition, 1.0.0 - 2021

    Left Logical R SLL rd,rs1,rs2 Trap Mach-mode trap return R MRET Shift Left Log. Imm. I SLLI rd,rs1,shamt Supervisor-mode trap return R SRET Shift Right Logical R SRL rd,rs1,rs2 Interrupt Wait for SRLI rd,rs1,shamt MMU Virtual Memory FENCE R SFENCE.VMA rs1,rs2 Shift Right Arithmetic R SRA rd,rs1,rs2 Shift Right Arith. Imm. I SRAI rd,rs1,shamt Branch = 0 (BEQ rs,x0,imm) J BEQZ rs,imm Arithmetic Arithmetic ADD R ADD rd,rs1,rs2 Jump (uses JAL x0,imm) J J imm ADD Immediate I ADDI rd,rs1,imm MoVe (uses ADDI rd,rs,0) R MV rd,rs SUBtract R SUB rd,rs1,rs2 RETurn (uses JALR x0,0,ra) I RET
    0 码力 | 232 页 | 5.16 MB | 1 年前
    3
  • pdf文档 The Rust Programming Language,2nd Edition

    you’re on Linux or a Mac, all you need to do is open a terminal and type this: $ curl https://sh.rustup.rs -sSf | sh This will download a script and start the installation. You may be prompted for your password inspect and run the script however you like. Installing on Windows On Windows, go to https://rustup.rs and follow the instructions to download rustup-init.exe. Run that and follow the rest of the instruc- the shell you are using. Custom installations If you have reasons for preferring not to use rustup.rs, please see the Rust installation page for other options. Updating Once you have Rust installed,
    0 码力 | 617 页 | 1.54 MB | 1 年前
    3
  • pdf文档 Comprehensive Rust(English) 202412

    6 embedded-hal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 274 50.7 probe-rs and cargo-embed . . . . . . . . . . . . . . . . . . . . . . . . . . 274 50.7.1 Debugging . . . . and the dependencies downloaded and ready to go. You can then copy/paste the examples into src/main.rs to experiment with them: cargo init concurrency cd concurrency cargo add tokio --features full cargo and how it fits into this training. Installation Please follow the instructions on https://rustup.rs/. This will give you the Cargo build tool (cargo) and the Rust compiler (rustc). You will also get
    0 码力 | 382 页 | 1.00 MB | 10 月前
    3
  • pdf文档 Comprehensive Rust ?

    6 embedded-hal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 268 51.7 probe-rs and cargo-embed . . . . . . . . . . . . . . . . . . . . . . . . . . 268 7 51.7.1 Debugging . . . and the dependencies downloaded and ready to go. You can then copy/paste the examples into src/main.rs to experiment with them: cargo init concurrency cd concurrency cargo add tokio --features full cargo and how it fits into this training. Installation Please follow the instructions on https://rustup.rs/. This will give you the Cargo build tool (cargo) and the Rust compiler (rustc). You will also get
    0 码力 | 378 页 | 1009.46 KB | 1 年前
    3
  • pdf文档 C++/Rust Interop: Using Bridges in Practice

    toml ├── README.md └── crates ├── bridge │ ├── Cargo.toml │ └── src │ └── lib.rs └── bridge-cpp ├── Cargo.toml ├── CMakeLists.txt ├── cmake │ └── bridgeConfig.cmake cmake.in ├── include │ └── bridge.hpp ├── src │ ├── lib.cpp │ └── lib.rs └── tests ├── CMakeLists.txt └── tests.cpp 23[workspace] members = ["crates/bridge" bridgeConfig.cmake.in ├── include │ └── bridge.hpp ├── src │ ├── lib.cpp │ └── lib.rs └── tests ├── CMakeLists.txt └── tests.cpp 25cmake_minimum_required(VERSION 3
    0 码力 | 45 页 | 724.12 KB | 6 月前
    3
  • pdf文档 Solving Nim by the Use of Machine Learning

    handle inputs and a little other things. 1 import time 2 import sys 3 import ReinforcementSarsa as RS 4 import ReinforcementQlearning as RQ 5 import PerfectPlayer as PP 6 import SpaceSaveSarsa as SS time () 58 rs = RS. ReinforcementSarsa (state) 59 times = rs.setup () 60 end = time.time () 61 timeAvg += end -start 62 setupTime += times [0] 63 trainTime += times [1] 64 listOfStates = rs. getListOfStates board = listOfStates [i][:] 71 winBoard = [0] * len( listOfStates [i]) 72 while(playing): 73 move = rs.makeMove(board) 74 board[move [1]] = board[move [1]] - move [0] 75 if(board == winBoard): 76 wins
    0 码力 | 109 页 | 6.58 MB | 1 年前
    3
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