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CS47L90-CWZR Cirrus Logic PCM Codec
CS42888-DQZ Cirrus Logic PCM Codec, 1-Func, CMOS, PQFP64, LEAD FREE, MS-026, LQFP-64
CS42888-DQZR Cirrus Logic PCM Codec, 1-Func, CMOS, PQFP64, LEAD FREE, MS-026, LQFP-64
CS42888-CQZ Cirrus Logic PCM Codec, 1-Func, CMOS, PQFP64, LEAD FREE, MS-026, LQFP-64
CS42888-CQZR Cirrus Logic PCM Codec, 1-Func, CMOS, PQFP64, LEAD FREE, MS-026, LQFP-64

"code cam"

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: CAM word are also cleared to zero when data is written into the CAM using command code E. This allows , Code 6 Move Comparand Register to CAM Array 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 0 1 | I 1 I Not , command. Op Code 7 Move CAM Array to Comparand Register 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 0 | 1 , increment the modulo-three Segment Counter. Op Code D Move CAM to CAM Register, Enable Output from CAM , Segment Counter. Op Code E Move Comparand Register to CAM (Set Empty-bit and Skip-bit LOW) 15 14 13 -
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AM99C10 BA9876543210 BA9S cd 4028 99C10 06837C 06971C WCP-10M-
Abstract: CAM word are also cleared to zero when data is written into the CAM using command code E. This allows , not changed. A Match cycle will begin automatically following this command. Op Code 7 Move CAM Array , CHARACTERISTICS â  256 word x 48-blt Content Addressable Memory (CAM) - Optimized for Address Decoding in Local Area Networks (LAN) and bridging applications â  Each CAM word has a 48-blt register and 48 , words in the CAM in a single (100ns) cycle â  Single and multiple match detection with fast on-chip -
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08125-012A ML0-ML255 limit switch cam type CMOS 16-Bit Priority Encoder Priority Encoder CAM
Abstract: Empty bits of a CAM word are also cleared to zero when data is written into the CAM using com mand code , Counter is not changed. Op Code 6 Move Comparand Register to CAM Array 15 0 | 14 1 | 13 , Read cycle will automatically increment the modulo-three Segment Counter. Op Code D Move CAM to CAM , matically increments the modulo-three Segment Counter. Op Code E Move Comparand Register to CAM (Set , code of E, which will transfer the data to a specified CAM word and clear the Skip and Empty bits of -
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Am99ClO equivalent for transistor tt 2222 KS000010 D32-47
Abstract: . Writing into the Skip or Empty bit in a CAM word is done directly by writing the appropriate command code , to zero when data is written into the CAM using command code E. This allows writing a new word of , appropriate command (command code = 5) into the Command register. That command contains the address of the CAM , Counter is not changed. A Match cycle will begin automatically following this command. Op Code 7 Move CAM , Copyrighted By Its Respective Manufacturer AMD lût Op Code E Move Comparand Register to CAM (Set Empty-bit -
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FIFO CAM AM99C10A block diagram of 7 segment CD4028 99C10A 08125-009B D16-3V 08125-010B
Abstract: . Because of the hierarchical VHDL code structure, it is easy to use this module for various CAM sizes , - Module: CAM_16WORDS.vhd - Module: CAM_16WORDS - Design: CAM_Top - VHDL code , Content Addressable Memories (CAM) allow a fast search for specific data in a memory. Each application has different CAM requirements. A CAM design implemented in VirtexTM Family slices offers a flexible approach to CAM depth and width based upon LUTs configured as Shift Registers. This application note Xilinx
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XAPP203 XAPP201 vhdl code for memory in cam SRL16E vhdl code for 4-bit counter xapp203.zip vhdl code of 4 bit comparator
Abstract: code E. This allows writing a new word of data into an empty CAM word without requiring an extra cycle , is not changed. Op Code 6 Move Comparand Register to CAM Array 15 14 0 1 13 12 , Code 7 Move CAM Array to Comparand Register 15 0 | 14 1 | 13 1 12 1 11 10 9 , Segment Counter. Op Code D Move CAM to CAM Register, Enable Output from CAM Register to Data Bus 14 , an op code of E, which will transfer the data to a specified CAM word and clear the Skip and Empty -
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Abstract: command code of "B", "C", "D", or " F" to the CAM Array-Reading and Writing To write a word into the , using com mand code E. This allows writing a new word of data into an empty CAM word without requiring , not changed. Op Code 6 Move Com parand R egister to CAM A rray 15 0 14 1 1 13 0 12 11 10 9 8 , changed. A Match cycle will begin auto matically following this command. Op Code 7 Move CAM A rray to , modulothree Segment Counter. Op Code D Move CAM to CAM Register, Enable Output from CAM Register to Data -
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Abstract: data is written into the CAM using com­ mand code E. This allows writing a new word of data into an , bits of all CAM words can be preset to the empty state by writing an Initialize command (command code , bits D14 and D15 of the Data Bus, all other bits Op Code 6 Move Comparand Register to CAM Array 15 , Skip-bit in the State Memory are not Op Code 7 Move CAM Array to Comparand Register 15 14 13 , increment the modulothree Segment Counter. Op Code D Move CAM to CAM Register, Enable Output from CAM -
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Abstract: presented. If the specific code is not found in CAM, another word is shifted in. When the code is found , -bit Walsh Code CAM RAM Mobile Station Data Address Data User 5 0 0 1111 . . . , Optimizing W-CDMA Systems with CAM Wideband code division multiple access (W-CDMA) uses an air interface , . Figure 20. CAM & RAM Combination of OVSF Code in W-CDMA System OVSF Code Index OVSF Code (4 to 256 , ® Implementing High-Speed Search Applications with Altera CAM July 2001, ver. 2.1 Altera
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verilog code for cdma transmitter vhdl code for OVSF verilog code for GSM transmitter EP20K1000E EP20K400E VHDL code for generate sound 800-EPLD
Abstract: various positions of the switch. The "X-O" for the HAND circuit looks like this: Cam Code #3 Top Bottom A B X O O 4 Cam Code #2 XOO OOX Cam 2 (A)NO ­ (B)NC (B)NO Cam 3 (A)NO (B , Location NO 1 Operator with Cam Code #3 Mounting Location Top Plunger A 2 X Operator with Cam Code #2 Contact Blocks Required to Accomplish Circuit Function Top Plunger A 1 , Operator Action Black Knob Selector Switch - Vertical Mounting Cam Code Catalog Price Number U.S EATON
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10250T21KB 10250T22KB 10250T630 H621 10250T1622 10250ED1117-2KR 10250T1571 10250T 10250T20LB 10250ED1117-KR 10250T20KB
Abstract: application of CAM in popular mobile communication standards, including code division multiple access (CDMA , Codes used for different users in the system. Figure 3. CAM and RAM Combination to Implement Walsh Code in a CDMA System Base Transceiver Station Walsh Code Index 64-bit Walsh Code RAM CAM , Station . Optimizing W-CDMA Systems with CAM Wideband code division multiple access (W-CDMA) uses , code is assigned to each channel element in the base transceiver station, a combination of CAM and RAM Altera
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mobile switching centre GSM Network Station SubSystem visitor location register base station controller IS-95
Abstract: command. Op code "0". The Segment Counter is incremented after each data read or write cycle if the CAM is , (command code = 6 or E) into the Command register. The transfer command contains the address of the CAM , the Comparand or CAM registers by writing the appropriate command (com mand code = 7 or D , Empty bit in a CAM word is done directly by writing the appropriate command code (com mand code = 9 or A , written into the CAM using com mand code E. This allows writing a new word of data into an empty CAM word -
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Abstract: (command code = 6 or E) into the Command register. The transfer command containsthe address of the CAM , either the Comparand or CAM registers by writing the appropriate command (com­ mand code = 7 or D , using com­ mand code E. This allows writing a new word of data into an empty CAM word without , not changed, Op Code 6 Move Comparand Register to CAM Array 15 14 0 1 13 1 12 , Code 7 Move CAM Array to Comparand Register 15 14 0 1 13 I 12 1 1 11 10 -
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DS5752
Abstract: code to cascade several block RAMs configured as 16 x 8 CAM. CAM speed is equivalent to the access , depth, CAM in Virtex devices. The complete HDL and Verilog code is available as a reference design , Author: Jean-Louis Brelet XAPP204 (v1.2) May 2, 2000 Summary CAM (Content Addressable Memory) offers increased data search speed. In various applications based on CAM, there are differing , . Application note XAPP201, "An Overview of Multiple CAM Designs in Virtex Devices", discusses the diverse Xilinx
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vhdl code for 8 bit ram 16 bit register VERILOG XCV1000 16 word 8 bit ram using vhdl 8 bit data bus using vhdl XCV50E
Abstract: code structure, it is easy to use this module for various CAM sizes according to the designers need , can implement a fast read and write CAM module. The VHDL code offers many possibilities to adapt this , depth, CAM in Virtex devices. The complete HDL code is available as a reference design (File , 1, 1999 Application Note: Jean-Louis Brelet Summary CAM (Content Addressable Memory) offers increased data search speed. In various applications based on CAM, there are differing requirements for Xilinx
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RAM16x1S xapp204.zip XCV100 XCV150 XCV200 XCV300
Abstract: without effecting the CPU code. etpu_set2\cpu\etpu_cam_auto.h CAM function interface information , engine management application. AN3768SW contains the binary image of the eTPU code, source code, and , , CAM, KNOCK_WINDOW, FUEL, SPARK, and TOOTHGEN functions. These are discussed in this application note , . 1 2 Function Set Overview. 1 2.1 CAM and CRANK , . 2 4 Files Included. 3 4.1 eTPU Code Freescale Semiconductor
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an3801 crank sensor pulse generator crank AN3769SW AN3769 AN2864SW AN3768
Abstract: , Op code "0." The Segment Counter is increm ented after each data read or write cycle if the CAM is in , a CAM word are also cleared to zero w hen data is w ritten into the CAM using com mand code E. This , driven LOW. The Segm ent Counter is not changed. Op Code 6 Move Comparand Register to CAM Array 15 0 , cycle will begin auto m atically following this command. Op Code 7 Move CAM Array to Comparand , the modulothree Segm ent Counter. 4 3 2 1 0 Op Code D Move CAM to CAM Register, Enable Output from -
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AMDIS013
Abstract: ) provides parameterizable Verilog and VHDL code to cascade several block RAMs configured as 32 x 9 CAM. CAM , code structure, it is easy to use this module for various CAM sizes according to the designers need , Summary Content Addressable Memory (CAM) offers increased data search speed. In various applications based on CAM, there are differing requirements for data organizations and read/write performance. The , SelectRAM+ memory built into the Virtex-II devices can be used as a 32-word deep by 9-bit wide (32 x 9) CAM Xilinx
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XAPP260 RAM32x1S CAM32x9 verilog code for word recognition XC2V40 XC2V250 CAM32 XAPP202
Abstract: Rotary Cam Switches Series L2 Switch Handle Codes Switch Standard Handle Legend Code Markings O , Series L2 Rotary Cam Switches Sprecher + Schuh's comprehensive line of L2 rotary cam , . Rotary Cam Switches L2 Two frame sizes provide control and load switching up to 25 amps, with as , system for total flexibility. Three levels of service. In reality, almost any cam switch , this section entitled "Custom L2 and R-Line Rotary Cam Switches." Before ordering a custom switch Sprecher + Schuh
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Sprecher Schuh LE 2-20 Sprecher Schuh LE 2-12 sprecher schuh le2-16 cam switch Sprecher Schuh L2-16 Sprecher Schuh LE 2-25 Sprecher Schuh LE2-20 LA2-G2830 LA2-G3194 LA2-G3195 LA2-G2853 LA2-12/16 LA2-20/25
Abstract: White Paper ® Introduction Using APEX 20KE CAM with the Quartus Software Design Tool Content-addressable memory (CAM) is a form of memory that can be used to accelerate search applications. If the input pattern that is given to CAM matches one of the stored patterns, the address of the matching stored pattern is presented at its outputs. Altera® APEXTM 20KE family of devices supports ternary CAM, meaning that the stored patterns can also contain "don't care" bits along with binary 1 and 0 bits. CAM is Altera
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EP20K200E testbench verilog ram 16 x 8 10MHzClock EP20K200E-1 Ternary CAM M-WP-CAM-01
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