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| Catalog Datasheet Results | Type | Document Tags |
| Abstract: INNER CORD COLOR(M00089) DATE UNIT SCALE 18 JUN,1998 MM Y.C.C/89.9.6 PARTS NO MN3073N MN3073N ... | Original |
1 pages, |
HD15F HD15 HD15M UL2919 datasheet abstract |
| Abstract: A B C D E F DATE BY 89/9.6 REVISION 1 3000� HD15 MALE HD15 MALE 4 4 3 1 2 3 4 1 CONFIGURATION: HD15M HD15M RED(COAX.) 1 RED(GROUND) 6 GREEN(COAX.) 2 GREEN(GROUND) 7 BLUE(COAX.) 3 BLUE(GROUND) 8 BROWN 4 BLACK 5 GREEN 13 RED 14 ORANGE 10 WHITE 11 YELLOW 12 (BRAID) SHIELD 4 3 2 1 1 *MODIFY:DESIGNATE INNER CORD COLOR(M00089) Y.C.C/89.9.6 DATE UNIT SCALE 25AUG 25AUG,99 MM PARTS NO MN3271N MN3271N DRAWN NO 000661 ... | Original |
1 pages, |
HD15M HD15 32MM UL-2919 UL2919 datasheet abstract |
| Abstract: INNER CORD COLOR(M00089) Y.C.C/89.9.6 DATE 9 JUL,1998 PARTS NO MN3073N MN3073N UNIT MM ... | Original |
1 pages, |
HD15 m00089 HD15M HD15f UL2919 datasheet abstract |
| Abstract: PRELIMINARY CYM1846V33 CYM1846V33 512K x 32 3.3V Static RAM Module Features module is constructed from four 512K x 8 SRAMs in SOJ packages mounted on an epoxy laminate substrate. Four chip selects are used to independently enable the four bytes. Reading or writing can be executed on individual bytes or any combination of multiple bytes through proper use of selects. · High-density 3.3V 16-megabit SRAM module · 32-bit Standard Footprint supports densities from 16K x 32 through 2M x 32 T ... | Original |
7 pages, |
CYM1851 CYM1846V33 CYM1841 CYM1836 CYM1831 CYM1821 CYM1846V33 abstract |
| Abstract: fax id: 2051 3 PRELIMINARY CYM1846V33 CYM1846V33 512K x 32 3.3V Static RAM Module Features · High-density 3.3V 16-megabit SRAM module · 32-bit Standard Footprint supports densities from 16K x 32 through 2M x 32 module is constructed from four 512K x 8 SRAMs in SOJ packages mounted on an epoxy laminate substrate. Four chip selects are used to independently enable the four bytes. Reading or writing can be executed on individual bytes or any combination of multiple bytes through proper u ... | Original |
7 pages, |
CYM1851 CYM1846V33 CYM1841 CYM1836 CYM1831 CYM1821 CYM1846V33 abstract |
| Abstract: 46V33 46V33 PRELIMINARY CYM1846V33 CYM1846V33 512K x 32 3.3V Static RAM Module Features module is constructed from four 512K x 8 SRAMs in SOJ packages mounted on an epoxy laminate substrate. Four chip selects are used to independently enable the four bytes. Reading or writing can be executed on individual bytes or any combination of multiple bytes through proper use of selects. · High-density 3.3V 16-megabit SRAM module · 32-bit Standard Footprint supports densities from 16K x 32 through 2M x ... | Original |
8 pages, |
2m x 32 SRAM SIMM 46V33 CYM1846V33 46V33 abstract |
| Abstract: CYM1846V33 CYM1846V33 512K x 32 3.3V Static RAM Module Features • High-density 3.3V 16-megabit SRAM module • 32-bit Standard Footprint supports densities from 16Kx 32 through 2Mx 32 • High-speed SRAMs - Access time of 12 ns • Low active power - 1.650W (max.) at 12 ns • 72 pins • Available in ZIP, SIMM format Functional Description The CYM1846V33 CYM1846V33 is a high-performance 3.3V 16-megabit static RAM module organized as 512K words by 32 bits. This module is constructed from four 512K x 8 SRAMs in SOJ ... | OCR Scan |
7 pages, |
micro SD socket CYM1851 CYM1846V33 CYM1841 CYM1836 CYM1831 CYM1821 simm 72 pinout CYM1846V33 abstract |
| Abstract: AN542 AN542 Implementation of Fast Fourier Transforms Amar Palacherla Microchip Technology Inc. INTRODUCTION Fourier transforms are one of the fundamental operations in signal processing. In digital computations, Discrete Fourier Transforms (DFT) are used to describe, represent, and analyze discrete-time signals. However, direct implementation of DFT is computationally very inefficient. Of the various available high speed algorithms to compute DFT, the Cooley-Tukey algorithm is the simpl ... | Original |
23 pages, |
PIC17C42 6a45 6E2d 7931 AN540 AN542 IDT71256 la 7830 4c3f 73B5 6A33 17C42 AN542 abstract |
| Abstract: AN542 AN542 Implementation of Fast Fourier Transforms Amar Palacherla Microchip Technology Inc. INTRODUCTION Fourier transforms are one of the fundamental operations in signal processing. In digital computations, Discrete Fourier Transforms (DFT) are used to describe, represent, and analyze discrete-time signals. However, direct implementation of DFT is computationally very inefficient. Of the various available high speed algorithms to compute DFT, the Cooley-Tukey algorithm is the simpl ... | Original |
24 pages, |
sin wave to square PIC17C42 IDT71256 AN542 AN540 transistor C946 AF3C A039 6E2D 17C42 AN542 abstract |
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| input samples into the state buffer */ 00088 i = S-> M ; 00089 00090 do 00091 www.datasheetarchive.com/download/22176963-595976ZC/lpc177x.lpc178x.cmsis.driver.library.zip (arm__fir__decimate__q31_8c_source.html) |
NXP | 30/06/2011 | 30079.24 Kb | ZIP | lpc177x.lpc178x.cmsis.driver.library.zip |
| input samples into the state buffer */ 00088 i = S-> M ; 00089 00090 do 00091 www.datasheetarchive.com/download/37322277-595978ZC/lpc18xx.cmsis.driver.library.zip (arm__fir__decimate__q31_8c_source.html) |
NXP | 30/06/2011 | 21707.83 Kb | ZIP | lpc18xx.cmsis.driver.library.zip |
| input samples into the state buffer */ 00088 i = S-> M ; 00089 00090 do 00091 www.datasheetarchive.com/download/98097348-595977ZC/lpc17xx.cmsis.driver.library.zip (arm__fir__decimate__q31_8c_source.html) |
NXP | 07/10/2011 | 30456.41 Kb | ZIP | lpc17xx.cmsis.driver.library.zip |