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📄 lcd.rpt

📁 使用C语言与VHDL实现 液晶显示控制器示例使用说明 使用模块有:单片机模块、液晶显示模块。 使用步骤: 1. 打开电源+5V。 2. 信号连接
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lcd

** OUTPUTS **

       Fed By Fed By                                Fan-In    Fan-Out
 Pin     LC     EC   Row  Col  Primitive    Code      INP  FBK  OUT  FBK  Name
  70      -     -    -    05     OUTPUT                 0    1    0    0  CS1
  72      -     -    -    03     OUTPUT                 0    1    0    0  CS2
  73      -     -    -    01     OUTPUT                 0    1    0    0  LCDE
  79      -     -    F    --     OUTPUT                 0    1    0    0  RS
  78      -     -    F    --     OUTPUT                 0    1    0    0  RW


Code:

s = Synthesized pin or logic cell
+ = Synchronous flipflop
/ = Slow slew-rate output
! = NOT gate push-back
r = Fitter-inserted logic cell
^ = Increased input delay
* = PCI I/O is enabled
@ = Uses single-pin Clock Enable
& = Uses single-pin Output Enable


Device-Specific Information:               e:\sz-eda\edap\sz-1k30p\lcd\lcd.rpt
lcd

** BURIED LOGIC **

                                                    Fan-In    Fan-Out
 IOC     LC     EC   Row  Col  Primitive    Code      INP  FBK  OUT  FBK  Name
   -      4     -    F    01        OR2                2    0    1    0  :311
   -      6     -    F    01       AND2                1    0    1    0  :340
   -      8     -    F    01       AND2                1    0    1    0  :365
   -      1     -    F    05       AND2                1    0    1    0  :392
   -      2     -    F    03       AND2                1    0    1    0  :421


Code:

s = Synthesized pin or logic cell
+ = Synchronous flipflop
/ = Slow slew-rate output
! = NOT gate push-back
r = Fitter-inserted logic cell
^ = Increased input delay
* = PCI I/O is enabled
p = Packed register


Device-Specific Information:               e:\sz-eda\edap\sz-1k30p\lcd\lcd.rpt
lcd

** FASTTRACK INTERCONNECT UTILIZATION **

Row FastTrack Interconnect:

          Global         Left Half-      Right Half-
         FastTrack       FastTrack       FastTrack 
Row     Interconnect    Interconnect    Interconnect    Input Pins     Output Pins     Bidir Pins
A:       0/144(  0%)     0/ 72(  0%)     0/ 72(  0%)    0/16(  0%)      0/16(  0%)     0/16(  0%)
B:       0/144(  0%)     0/ 72(  0%)     0/ 72(  0%)    0/16(  0%)      0/16(  0%)     0/16(  0%)
C:       0/144(  0%)     0/ 72(  0%)     0/ 72(  0%)    0/16(  0%)      0/16(  0%)     0/16(  0%)
D:       0/144(  0%)     0/ 72(  0%)     0/ 72(  0%)    0/16(  0%)      0/16(  0%)     0/16(  0%)
E:       0/144(  0%)     0/ 72(  0%)     0/ 72(  0%)    0/16(  0%)      0/16(  0%)     0/16(  0%)
F:       4/144(  2%)     1/ 72(  1%)     0/ 72(  0%)    0/16(  0%)      2/16( 12%)     0/16(  0%)


Column FastTrack Interconnect:

         FastTrack                                 
Column  Interconnect    Input Pins     Output Pins     Bidir Pins
01:      1/24(  4%)     0/4(  0%)      1/4( 25%)       0/4(  0%)
02:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
03:      1/24(  4%)     0/4(  0%)      1/4( 25%)       0/4(  0%)
04:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
05:      1/24(  4%)     0/4(  0%)      1/4( 25%)       0/4(  0%)
06:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
07:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
08:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
09:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
10:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
11:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
12:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
13:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
14:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
15:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
16:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
17:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
18:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
19:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
20:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
21:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
22:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
23:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
24:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
25:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
26:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
27:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
28:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
29:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
30:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
31:      1/24(  4%)     1/4( 25%)      0/4(  0%)       0/4(  0%)
32:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
33:      1/24(  4%)     1/4( 25%)      0/4(  0%)       0/4(  0%)
34:      1/24(  4%)     1/4( 25%)      0/4(  0%)       0/4(  0%)
35:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
36:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)
EA:      0/24(  0%)     0/4(  0%)      0/4(  0%)       0/4(  0%)


Device-Specific Information:               e:\sz-eda\edap\sz-1k30p\lcd\lcd.rpt
lcd

** EQUATIONS **

DP1      : INPUT;
DP2      : INPUT;
DP3      : INPUT;

-- Node name is 'CS1' 
-- Equation name is 'CS1', type is output 
CS1      =  _LC1_F5;

-- Node name is 'CS2' 
-- Equation name is 'CS2', type is output 
CS2      =  _LC2_F3;

-- Node name is 'LCDE' 
-- Equation name is 'LCDE', type is output 
LCDE     =  _LC4_F1;

-- Node name is 'RS' 
-- Equation name is 'RS', type is output 
RS       =  _LC6_F1;

-- Node name is 'RW' 
-- Equation name is 'RW', type is output 
RW       =  _LC8_F1;

-- Node name is ':311' 
-- Equation name is '_LC4_F1', type is buried 
_LC4_F1  = LCELL( _EQ001);
  _EQ001 = !DP2
         #  DP3;

-- Node name is ':340' 
-- Equation name is '_LC6_F1', type is buried 
_LC6_F1  = LCELL( DP2);

-- Node name is ':365' 
-- Equation name is '_LC8_F1', type is buried 
_LC8_F1  = LCELL(!DP3);

-- Node name is ':392' 
-- Equation name is '_LC1_F5', type is buried 
_LC1_F5  = LCELL(!DP1);

-- Node name is ':421' 
-- Equation name is '_LC2_F3', type is buried 
_LC2_F3  = LCELL( DP1);



Project Information                        e:\sz-eda\edap\sz-1k30p\lcd\lcd.rpt

** COMPILATION SETTINGS & TIMES **

Processing Menu Commands
------------------------

Design Doctor                             = off

Logic Synthesis:

   Synthesis Type Used                    = Multi-Level

   Default Synthesis Style                = NORMAL

      Logic option settings in 'NORMAL' style for 'ACEX1K' family

      CARRY_CHAIN                         = ignore
      CARRY_CHAIN_LENGTH                  = 32
      CASCADE_CHAIN                       = ignore
      CASCADE_CHAIN_LENGTH                = 2
      DECOMPOSE_GATES                     = on
      DUPLICATE_LOGIC_EXTRACTION          = on
      MINIMIZATION                        = full
      MULTI_LEVEL_FACTORING               = on
      NOT_GATE_PUSH_BACK                  = on
      REDUCE_LOGIC                        = on
      REFACTORIZATION                     = on
      REGISTER_OPTIMIZATION               = on
      RESYNTHESIZE_NETWORK                = on
      SLOW_SLEW_RATE                      = off
      SUBFACTOR_EXTRACTION                = on
      IGNORE_SOFT_BUFFERS                 = on
      USE_LPM_FOR_AHDL_OPERATORS          = off

   Other logic synthesis settings:

      Automatic Global Clock              = on
      Automatic Global Clear              = on
      Automatic Global Preset             = on
      Automatic Global Output Enable      = on
      Automatic Fast I/O                  = off
      Automatic Register Packing          = off
      Automatic Open-Drain Pins           = on
      Automatic Implement in EAB          = off
      Optimize                            = 5

Default Timing Specifications: None

Cut All Bidir Feedback Timing Paths       = on
Cut All Clear & Preset Timing Paths       = on

Ignore Timing Assignments                 = off

Functional SNF Extractor                  = off

Linked SNF Extractor                      = off
Timing SNF Extractor                      = on
Optimize Timing SNF                       = off
Generate AHDL TDO File                    = off
Fitter Settings                           = NORMAL
Use Quartus Fitter                        = on
Smart Recompile                           = off
Total Recompile                           = off

Interfaces Menu Commands
------------------------

EDIF Netlist Writer                       = off
Verilog Netlist Writer                    = off
VHDL Netlist Writer                       = off

Compilation Times
-----------------

   Compiler Netlist Extractor             00:00:00
   Database Builder                       00:00:00
   Logic Synthesizer                      00:00:00
   Partitioner                            00:00:01
   Fitter                                 00:00:03
   Timing SNF Extractor                   00:00:00
   Assembler                              00:00:01
   --------------------------             --------
   Total Time                             00:00:05


Memory Allocated
-----------------

Peak memory allocated during compilation  = 24,566K

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