文件名称:shifter
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移位运算器SHIFTER 使用Verilog HDL 语言编写,其输入输出端分别与键盘/显示器LED 连接。移位运算器是时序电路,在J钟信号到来时状态产生变化, CLK 为其时钟脉冲。由S0、S1 、M 控制移位运算的功能状态,具有数据装入、数据保持、循环右移、带进位循环右移,循环左移、带进位循环左移等功能。
CLK 是时钟脉冲输入,通过键5 产生高低电平M 控制工作模式, M=l 时带进位循环移位,由键8 控制CO 为允许带进位移位输入,由键7 控制:S 控制移位模式0-3 ,由键6 控制,显示在数码管LED8 上 D[7..0]是移位数据输入,由键2 和1 控制,显示在数码管2 和1 上 QB[7..0]是移位数据输出,显示在数码管6 和5 上:cn 是移位数据输出进位,显示在数码管7 上。-SHIFTER shift calculator using Verilog HDL language, the input and output side with the keyboard/display LED connection. Shift operator is a sequential circuit, in J when the bell signals the arrival of a state of change, CLK its clock. By S0, S1, M to control the functions of the state of shift operations, with data loading, data maintenance, cycle shifted to right, into the digital cycle shifted to right, circle left, circle to the left into the digital functions.
CLK is the clock pulse input through the key high 5 low M mode control, M = l-bit cyclic shift into when, controlled by the key 8 into the displacement of CO to allow input from 7 control keys: S Control Shift Mode 0-3, 6 button control from showing in the digital control LED8 on D [7 .. 0] is the shift data input from the keys 2 and 1 control, displayed in the digital tube 2 and 1 QB [7. .0] is the displacement data output, displayed on the LED 6 and 5: cn is a binary data output shift, showing 7 on in the digital co
CLK 是时钟脉冲输入,通过键5 产生高低电平M 控制工作模式, M=l 时带进位循环移位,由键8 控制CO 为允许带进位移位输入,由键7 控制:S 控制移位模式0-3 ,由键6 控制,显示在数码管LED8 上 D[7..0]是移位数据输入,由键2 和1 控制,显示在数码管2 和1 上 QB[7..0]是移位数据输出,显示在数码管6 和5 上:cn 是移位数据输出进位,显示在数码管7 上。-SHIFTER shift calculator using Verilog HDL language, the input and output side with the keyboard/display LED connection. Shift operator is a sequential circuit, in J when the bell signals the arrival of a state of change, CLK its clock. By S0, S1, M to control the functions of the state of shift operations, with data loading, data maintenance, cycle shifted to right, into the digital cycle shifted to right, circle left, circle to the left into the digital functions.
CLK is the clock pulse input through the key high 5 low M mode control, M = l-bit cyclic shift into when, controlled by the key 8 into the displacement of CO to allow input from 7 control keys: S Control Shift Mode 0-3, 6 button control from showing in the digital control LED8 on D [7 .. 0] is the shift data input from the keys 2 and 1 control, displayed in the digital tube 2 and 1 QB [7. .0] is the displacement data output, displayed on the LED 6 and 5: cn is a binary data output shift, showing 7 on in the digital co
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下载文件列表
shifter
.......\cnt2.bsf
.......\db
.......\..\prev_cmp_shifter.asm.qmsg
.......\..\prev_cmp_shifter.fit.qmsg
.......\..\prev_cmp_shifter.map.qmsg
.......\..\prev_cmp_shifter.qmsg
.......\..\prev_cmp_shifter.tan.qmsg
.......\..\shifter.asm.qmsg
.......\..\shifter.cbx.xml
.......\..\shifter.cmp.ecobp
.......\..\shifter.cmp.rdb
.......\..\shifter.cmp0.ddb
.......\..\shifter.cmp_bb.cdb
.......\..\shifter.cmp_bb.hdb
.......\..\shifter.cmp_bb.logdb
.......\..\shifter.cmp_bb.rcf
.......\..\shifter.dbp
.......\..\shifter.db_info
.......\..\shifter.eco.cdb
.......\..\shifter.fit.qmsg
.......\..\shifter.hier_info
.......\..\shifter.hif
.......\..\shifter.map.ecobp
.......\..\shifter.map.qmsg
.......\..\shifter.map_bb.logdb
.......\..\shifter.pre_map.cdb
.......\..\shifter.pre_map.hdb
.......\..\shifter.psp
.......\..\shifter.pss
.......\..\shifter.rtlv.hdb
.......\..\shifter.rtlv_sg.cdb
.......\..\shifter.rtlv_sg_swap.cdb
.......\..\shifter.sgdiff.cdb
.......\..\shifter.sgdiff.hdb
.......\..\shifter.sld_design_entry.sci
.......\..\shifter.sld_design_entry_dsc.sci
.......\..\shifter.syn_hier_info
.......\..\shifter.tan.qmsg
.......\..\shifter.tis_db_list.ddb
.......\..\wed.wsf
.......\shifter.asm.rpt
.......\shifter.bsf
.......\shifter.done
.......\shifter.fit.rpt
.......\shifter.fit.smsg
.......\shifter.fit.summary
.......\shifter.flow.rpt
.......\shifter.map.rpt
.......\shifter.map.summary
.......\shifter.pin
.......\shifter.pof
.......\shifter.qpf
.......\shifter.qsf
.......\shifter.qws
.......\shifter.sof
.......\shifter.tan.rpt
.......\shifter.tan.summary
.......\shifter.v
.......\cnt2.bsf
.......\db
.......\..\prev_cmp_shifter.asm.qmsg
.......\..\prev_cmp_shifter.fit.qmsg
.......\..\prev_cmp_shifter.map.qmsg
.......\..\prev_cmp_shifter.qmsg
.......\..\prev_cmp_shifter.tan.qmsg
.......\..\shifter.asm.qmsg
.......\..\shifter.cbx.xml
.......\..\shifter.cmp.ecobp
.......\..\shifter.cmp.rdb
.......\..\shifter.cmp0.ddb
.......\..\shifter.cmp_bb.cdb
.......\..\shifter.cmp_bb.hdb
.......\..\shifter.cmp_bb.logdb
.......\..\shifter.cmp_bb.rcf
.......\..\shifter.dbp
.......\..\shifter.db_info
.......\..\shifter.eco.cdb
.......\..\shifter.fit.qmsg
.......\..\shifter.hier_info
.......\..\shifter.hif
.......\..\shifter.map.ecobp
.......\..\shifter.map.qmsg
.......\..\shifter.map_bb.logdb
.......\..\shifter.pre_map.cdb
.......\..\shifter.pre_map.hdb
.......\..\shifter.psp
.......\..\shifter.pss
.......\..\shifter.rtlv.hdb
.......\..\shifter.rtlv_sg.cdb
.......\..\shifter.rtlv_sg_swap.cdb
.......\..\shifter.sgdiff.cdb
.......\..\shifter.sgdiff.hdb
.......\..\shifter.sld_design_entry.sci
.......\..\shifter.sld_design_entry_dsc.sci
.......\..\shifter.syn_hier_info
.......\..\shifter.tan.qmsg
.......\..\shifter.tis_db_list.ddb
.......\..\wed.wsf
.......\shifter.asm.rpt
.......\shifter.bsf
.......\shifter.done
.......\shifter.fit.rpt
.......\shifter.fit.smsg
.......\shifter.fit.summary
.......\shifter.flow.rpt
.......\shifter.map.rpt
.......\shifter.map.summary
.......\shifter.pin
.......\shifter.pof
.......\shifter.qpf
.......\shifter.qsf
.......\shifter.qws
.......\shifter.sof
.......\shifter.tan.rpt
.......\shifter.tan.summary
.......\shifter.v