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Low-noise

  • he algorithm is equivalent to Infomax by Bell and Sejnowski 1995 [1] using a maximum likelihood form

    he algorithm is equivalent to Infomax by Bell and Sejnowski 1995 [1] using a maximum likelihood formulation. No noise is assumed and the number of observations must equal the number of sources. The BFGS method [2] is used for optimization. The number of independent components are calculated using Bayes Information Criterion [3] (BIC), with PCA for dimension reduction.

    標簽: equivalent likelihood algorithm Sejnowski

    上傳時間: 2016-09-17

    上傳用戶:Altman

  • Top module name : SHIFTER (File name : SHIFTER.v) 2. Input pins: SHIFT [3:0], IN [15:0], SIGN, RIGH

    Top module name : SHIFTER (File name : SHIFTER.v) 2. Input pins: SHIFT [3:0], IN [15:0], SIGN, RIGHT. 3. Output pins: OUT [15:0]. 4. Input signals generated from test pattern are latched in one cycle and are synchronized at clock rising edge. 5. The SHIFT signal describes the shift number. The shift range is 0 to 15. 6. When the signal RIGHT is high, it shifts input data to right. On the other hand, it shifts input data to left. 7. When the signal SIGN is high, the input data is a signed number and it shifts with sign extension. However, the input data is an unsigned number if the signal SIGN is low. 8. You can only use following gates in Table I and need to include the delay information (Tplh, Tphl) in your design.

    標簽: SHIFTER name module Input

    上傳時間: 2013-12-13

    上傳用戶:himbly

  • Top module name : SHIFTER (File name : SHIFTER.v) 2. Input pins: SHIFT [3:0], IN [15:0], SIGN, RIGH

    Top module name : SHIFTER (File name : SHIFTER.v) 2. Input pins: SHIFT [3:0], IN [15:0], SIGN, RIGHT. 3. Output pins: OUT [15:0]. 4. Input signals generated from test pattern are latched in one cycle and are synchronized at clock rising edge. 5. The SHIFT signal describes the shift number. The shift range is 0 to 15. 6. When the signal RIGHT is high, it shifts input data to right. On the other hand, it shifts input data to left. 7. When the signal SIGN is high, the input data is a signed number and it shifts with sign extension. However, the input data is an unsigned number if the signal SIGN is low. 8. You can only use following gates in Table I and need to include the delay information (Tplh, Tphl) in your design.

    標簽: SHIFTER name module Input

    上傳時間: 2014-01-20

    上傳用戶:三人用菜

  • The MIPS32® 4KEm™ core from MIPS® Technologies is a member of the MIPS32 4KE™ proc

    The MIPS32® 4KEm™ core from MIPS® Technologies is a member of the MIPS32 4KE™ processor core family. It is a high-performance, low-power, 32-bit MIPS RISC core designed for custom system-on-silicon applications. The core is designed for semiconductor manufacturing companies, ASIC developers, and system OEMs who want to rapidly integrate their own custom logic and peripherals with a high-performance RISC processor. It is highly portable across processes, and can be easily integrated into full system-on-silicon designs, allowing developers to focus their attention on end-user products. The 4KEm core is ideally positioned to support new products for emerging segments of the digital consumer, network, systems, and information management markets, enabling new tailored solutions for embedded applications.

    標簽: MIPS 8482 Technologies 174

    上傳時間: 2014-12-22

    上傳用戶:semi1981

  • MTOOLS version 2.0 Mtools is a public domain collection of programs to allow Unix systems t

    MTOOLS version 2.0 Mtools is a public domain collection of programs to allow Unix systems to read, write, and manipulate files on an MSDOS filesystem (typically a diskette). The following MSDOS commands are emulated: Mtool MSDOS name equivalent Description ----- ---- ----------- mattrib ATTRIB change MSDOS file attribute flags mcd CD change MSDOS directory mcopy COPY copy MSDOS files to/from Unix mdel DEL/ERASE delete an MSDOS file mdir DIR display an MSDOS directory mformat FORMAT add MSDOS filesystem to a low-level format mlabel LABEL make an MSDOS volume label. mmd MD/MKDIR make an MSDOS subdirectory mrd RD/RMDIR remove an MSDOS subdirectory mread COPY low level read (copy) an MSDOS file to Unix mren REN/RENAME rename an existing MSDOS file mtype TYPE display contents of an MSDOS file mwrite COPY low level write (copy) a Unix file to MSDOS

    標簽: collection programs version systems

    上傳時間: 2016-11-18

    上傳用戶:wlcaption

  • The FM24C256/C256L/C256LZ devices are 256 Kbits CMOS nonvolatile electrically erasable memory. Thes

    The FM24C256/C256L/C256LZ devices are 256 Kbits CMOS nonvolatile electrically erasable memory. These devices offer the designer different low voltage and low power options. They conform to all requirements in the Extended IIC 2-wire protocol. Furthermore, they are designed to minimize device pin count and simplify PC board layout requirements.

    標簽: 256 electrically nonvolatile erasable

    上傳時間: 2016-12-11

    上傳用戶:lps11188

  • The TMS320LF240xA and TMS320LC240xA devices, new members of the TMS320C24x generation of dig

    The TMS320LF240xA and TMS320LC240xA devices, new members of the TMS320C24x generation of digital signal processor (DSP) controllers, are part of the TMS320C2000 platform of fixed-point DSPs. The 240xA devices offer the enhanced TMS320 DSP architectural design of the C2xx core CPU for low-cost, low-power, and high-performance processing capabilities. Several advanced peripherals, optimized for digital motor and motion control applications, have been integrated to provide a true single-chip DSP controller. While code-compatible with the existing C24x DSP controller devices, the 240xA offers increased processing performance (40 MIPS) and a higher level of peripheral integration. See the TMS320x240xA Device Summary section for device-specific features.

    標簽: TMS 320 generation 240

    上傳時間: 2013-12-16

    上傳用戶:GavinNeko

  • This function calculates Akaike s final prediction error % estimate of the average generalization e

    This function calculates Akaike s final prediction error % estimate of the average generalization error. % % [FPE,deff,varest,H] = fpe(NetDef,W1,W2,PHI,Y,trparms) produces the % final prediction error estimate (fpe), the effective number of % weights in the network if the network has been trained with % weight decay, an estimate of the noise variance, and the Gauss-Newton % Hessian. %

    標簽: generalization calculates prediction function

    上傳時間: 2014-12-03

    上傳用戶:maizezhen

  • This function calculates Akaike s final prediction error % estimate of the average generalization e

    This function calculates Akaike s final prediction error % estimate of the average generalization error for network % models generated by NNARX, NNOE, NNARMAX1+2, or their recursive % counterparts. % % [FPE,deff,varest,H] = nnfpe(method,NetDef,W1,W2,U,Y,NN,trparms,skip,Chat) % produces the final prediction error estimate (fpe), the effective number % of weights in the network if it has been trained with weight decay, % an estimate of the noise variance, and the Gauss-Newton Hessian. %

    標簽: generalization calculates prediction function

    上傳時間: 2016-12-27

    上傳用戶:腳趾頭

  • The SL74HC573 is identical in pinout to the LS/ALS573. The device inputs are compatible with standa

    The SL74HC573 is identical in pinout to the LS/ALS573. The device inputs are compatible with standard CMOS outputs with pullup resistors, they are compatible with LS/ALSTTL outputs. These latches appear transparent to data (i.e., the outputs change asynchronously) when Latch Enable is high. When Latch Enable goes low, data meeting the setup and hold time becomes latched.

    標簽: compatible The 573 identical

    上傳時間: 2016-12-29

    上傳用戶:變形金剛

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