SlideShare a Scribd company logo
Device Modeling Report




COMPONENTS : CMOS DIGITAL INTEGRATED CIRCUIT
PART NUMBER : TC74AC640F
MANUFACTURER : TOSHIBA




                   Bee Technologies Inc.

     All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
Truth Table

Circuit simulation result


               U1:GBAR    0
                U1:DIR    0
                 U1:B1    1
                 U1:B2    1
                 U1:B3    1
                 U1:B4    1
                 U1:B5    1
                 U1:B6    1
                 U1:B7    1
                 U1:B8    1
                 U1:A1    0
                 U1:A2    0
                 U1:A3    0
                 U1:A4    0
                 U1:A5    0
                 U1:A6    0
                 U1:A7    0
                 U1:A8    0

                             0s                            0.5us                        1.0us
                                                            Time



Evaluation circuit

                                  U1

                          DIR                      VCC
              LO
                                                   __
                             A1                    G          LO

                             A2                    B1
                                                           IN_B
                             A3                    B2

                             A4                    B3

                             A5                    B4
                                                                                 R1          V1
                             A6                    B5
                                                                                 1MEG
                             A7                    B6
                                                            DSTM1                       5
                             A8                    B7             CLK

                         GND                       B8       ONTIME = .2uS
                                                            OFFTIME = .2uS

                                  74AC640


                                               0


Comparison table         Function : A BUS = OUTPUT,                 B BUS = INPUT

              Input                                      Output
                                                                                            %Error
          G             DIR            Measurement                      Simulation
          L              L                  A= B                          A= B                0

                   All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
Truth Table

Circuit simulation result


               U1:GBAR          0
                U1:DIR          1
                 U1:A1          1
                 U1:A2          1
                 U1:A3          1
                 U1:A4          1
                 U1:A5          1
                 U1:A6          1
                 U1:A7          1
                 U1:A8          1
                 U1:B1          0
                 U1:B2          0
                 U1:B3          0
                 U1:B4          0
                 U1:B5          0
                 U1:B6          0
                 U1:B7          0
                 U1:B8          0

                                   0s                         0.5us                       1.0us
                                                               Time



Evaluation circuit

                                              U1

                          HI
                                        DIR                  VCC
                                                             __
                                         A1                  G
                           IN_A                                         LO

                                         A2                  B1

                                         A3                  B2

                                         A4                  B3

                                         A5                  B4
                                                                               R1              V1
                                         A6                  B5
                                                                                   1MEG
                    CLK                  A7                  B6
                                                                                          5
                   DSTM1                 A8                  B7
              ONTIME = .2uS
              OFFTIME = .2uS            GND                  B8



                                              74AC640


                                                        0


Comparison table               Function : A BUS = INPUT,           B BUS = OUTPUT

              Input                                         Output
                                                                                              %Error
          G                DIR          Measurement                   Simulation
          L                    H               B= A                     B= A                    0
                 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
Truth Table

Circuit simulation result


               U1:GBAR    1
                U1:DIR    0
                 U1:A1    Z
                 U1:A2    Z
                 U1:A3    Z
                 U1:A4    Z
                 U1:A5    Z
                 U1:A6    Z
                 U1:A7    Z
                 U1:A8    Z
                 U1:B1    Z
                 U1:B2    Z
                 U1:B3    Z
                 U1:B4    Z
                 U1:B5    Z
                 U1:B6    Z
                 U1:B7    Z
                 U1:B8    Z

                              0s                                  0.5us                           1.0us
                                                                   Time



Evaluation circuit

                                                  U1
                  DSTM1
                  CLK                       DIR                   VCC
                                        1                         __
              ONTIME = .2uS                  A1                   G               HI
                                   LO
              OFFTIME = .2uS                                            1
                                        2    A2                   B1
                                   LO                                        LO
                                        3    A3                   B2    2
                                   LO                                        LO
                                        4
                                             A4                   B3    3
                                   LO                                        LO
                                        5                               4
                                   LO
                                             A5                   B4         LO
                                                                                           R1          V1
                                        6    A6                   B5    5
                                   LO                                        LO            1MEG
                                        7    A7                   B6    6
                                   LO                                        LO
                                                                                                  5
                                        8    A8                   B7    7
                                   LO                                        LO

                                            GND                   B8    8
                                                                             LO



                                                  74AC640


                                                            0


Comparison table          Function : A BUS and B BUS = HIGH IMPEDANCE

               Input                                            Output
                                                                                                      %Error
          G             DIR                 Measurement                     Simulation
          H               X                            Z                               Z                0
                 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
High Level and Low Level Input Voltage

Circuit simulation result

               6.0V




                                      (571.506u,3.9328)
               4.0V
                                                                                 Output
                                                                                 Input

                        (529.903u,1.6447)
               2.0V




                  0V
                       0s                 0.5ms         1.0ms            1.5ms           2.0ms
                            V(OUT)        V(V1:+)
                                                        Time


Evaluation circuit

                                          U1

                                 DIR                     VCC
                     LO
                                                         __
                                     A1                  G
            OUT                                                    LO

                                     A2                  B1

                                     A3                  B2

                                     A4                  B3                                V2

                                     A5                  B4
                                                                  V1 = 0
                          R2         A6                  B5       V2 = 5.5       V1        5.5
                                                                  TD = 0.5m
                       1G            A7                  B6       TR = 0.1m
                                                                  TF = 0.1m
                                     A8                  B7       PW = 1m
                                                                  PER = 2m
                                 GND                     B8



                                          74AC640


                                                    0


Comparison table

        VCC = 5.5V             Measurement                 Simulation                 %Error
           VIH (V)                        3.85                  3.9328                2.151
           VIL (V)                        1.65                  1.6447                -0.321
               All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
High Level and Low Level Output Voltage

Circuit simulation result

               5.0V



               2.5V

                                                                           Output
                  0V                                                       Input
                           V(OUT)
               5.0V



               2.5V


              SEL>>
                 0V
                    0s                                 5ms                         10ms
                           V(V1:+)
                                                       Time


Evaluation circuit

                                         U1

                                 DIR                    VCC
                     LO
                                                        __
                                    A1                  G
            OUT                                                 LO

                                    A2                  B1

                                    A3                  B2

                                    A4                  B3                             V2

                                    A5                  B4
                                                               V1 = 0
                          R1        A6                  B5     V2 = 4.5    V1          4.5
                                                               TD = 0.5m
                       0.09MEG      A7                  B6     TR = 3n
                                                               TF = 3n
                                    A8                  B7     PW = 1m
                                                               PER = 2m
                                 GND                    B8



                                         74AC640


                                                   0


Comparison table

        VCC = 4.5V             Measurement               Simulation             %Error
          VOH (V)                        4.5                  4.499             -0.022
          VOL (V)                         0                    0                   0
               All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
Propagation Delay Time

Circuit simulation result

                5.0V               5.0V
            1                2

                                                                                         Output
                                                                                         Input


                2.5V               2.5V




                                        >>
                     0V                 0V
                                           0s                         0.5us                      1.0us
                                            1    V(TPLH)         2   V(U1:B1)
                                                                       Time


Evaluation circuit

                                                      U1

                                                DIR                   VCC
                                   LO
                      tplh                                            __
                                                 A1                   G         LO

                                                 A2                   B1

                                                 A3                   B2

                                                 A4                   B3                            V2

                R1                               A5                   B4
                             C1                                              V1 = 0
            500              50p                 A6                   B5     V2 = 5                 5
                                                                             TD = 0.2u      V1
                                                 A7                   B6     TR = 3.8n
                                                                             TF = 3.8n
                                                 A8                   B7     PW = 0.5u
                                                                             PER = 1u
                                                GND                   B8



                                                      74AC640


                                                                0


Comparison table             CL = 50 pF, RL = 500 

    VCC = 5 V, tr = tf = 3 ns                    Measurement                Simulation             %Error
            tPLH (ns)                                      4.8                  4.8079              0.165
            tPHL (ns)                                      4.8                  4.8896              1.867
                All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
Output enable time, high impedance (off) to high output (tPZH)
Output disable time, high to high impedance (off) output (tPHZ)
Circuit simulation result

                5.0V              5.0V
            1                 2

                                                                                           Output
                                                                                           Input


                2.5V              2.5V




                                    >>
                     0V             0V
                                       0s                          0.5us                           1.0us
                                        1     V(TPZH_TPHZ)     2       V(U1:GBAR)
                                                                    Time


Evaluation circuit

                                                     U1

                                               DIR                     VCC
                                         LO
                  tpzh_tphz                                            __
                                                A1                     G

                                                A2                     B1       LO

                                                A3                     B2

                                                A4                     B3                             V2

                                                A5                     B4
                R2        R1          C1                                       V1 = 0        V1
                                                A6                     B5      V2 = 5                 5
            500           500         50p                                      TD = 0.2u
                                                A7                     B6      TR = 3.8n
                                                                               TF = 3.8n
                                                A8                     B7      PW = 0.5u
                                                                               PER = 1u
                                               GND                     B8



                                                     74AC640


                                                                   0


Comparison table              CL = 50 pF, RL = 500 

    VCC = 5 V, tr = tf = 3 ns                 Measurement                    Simulation              %Error
            tPZH (ns)                                7.1                      7.1864                  1.217
            tPHZ (ns)                                5.9                      5.9627                  1.063
                  All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
Output enable time, high impedance (off) to low output (tPZL)
Output disable time, low to high impedance (off) output (tPLZ)
Circuit simulation result

                5.0V            5.0V
            1              2

                                                                                             Output
                                                                                             Input


                2.5V            2.5V




                                    >>
                  0V                0V
                                       0s                              0.5us                         1.0us
                                        1         V(TPZL_TPLZ)     2       V(V1:+)
                                                                        Time


Evaluation circuit

                                                         U1

                                                   DIR                   VCC
                                             LO
                      R2       tpzl_tplz                                 __
                                                   A1                    G
                  500
                                                   A2                    B1      HI

                                                   A3                    B2

                                                   A4                    B3
                 V2
                           R1              C1      A5                    B4                             V3
                                                                                 V1 = 0        V1
                        500                50p     A6                    B5      V2 = 5
                 10                                                              TD = 0.2u
                                                   A7                    B6      TR = 3.8n              5
                                                                                 TF = 3.8n
                                                   A8                    B7      PW = 0.5u
                                                                                 PER = 1u
                                                  GND                    B8



                                                         74AC640


                                                                   0


Comparison table           CL = 50 pF, RL = 500 

    VCC = 5 V, tr = tf = 3 ns                     Measurement                  Simulation              %Error
            tPZL (ns)                                     7.1                   7.1449                  0.632
            tPLZ (ns)                                     5.9                   5.9560                  0.949
                All Rights Reserved Copyright (c) Bee Technologies Inc. 2005

More Related Content

What's hot

SPICE MODEL of TC74LCX245FW in SPICE PARK
SPICE MODEL of TC74LCX245FW in SPICE PARKSPICE MODEL of TC74LCX245FW in SPICE PARK
SPICE MODEL of TC74LCX245FW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74LCX245F in SPICE PARK
SPICE MODEL of TC74LCX245F in SPICE PARKSPICE MODEL of TC74LCX245F in SPICE PARK
SPICE MODEL of TC74LCX245F in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT245FT in SPICE PARK
SPICE MODEL of TC74ACT245FT in SPICE PARKSPICE MODEL of TC74ACT245FT in SPICE PARK
SPICE MODEL of TC74ACT245FT in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT245FW in SPICE PARK
SPICE MODEL of TC74ACT245FW in SPICE PARKSPICE MODEL of TC74ACT245FW in SPICE PARK
SPICE MODEL of TC74ACT245FW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT245P in SPICE PARK
SPICE MODEL of TC74ACT245P in SPICE PARKSPICE MODEL of TC74ACT245P in SPICE PARK
SPICE MODEL of TC74ACT245P in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT245F in SPICE PARK
SPICE MODEL of TC74ACT245F in SPICE PARKSPICE MODEL of TC74ACT245F in SPICE PARK
SPICE MODEL of TC74ACT245F in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74VHCT245AFT in SPICE PARK
SPICE MODEL of TC74VHCT245AFT in SPICE PARKSPICE MODEL of TC74VHCT245AFT in SPICE PARK
SPICE MODEL of TC74VHCT245AFT in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74VHCT245AF in SPICE PARK
SPICE MODEL of TC74VHCT245AF in SPICE PARKSPICE MODEL of TC74VHCT245AF in SPICE PARK
SPICE MODEL of TC74VHCT245AF in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74VHCT245AFW in SPICE PARK
SPICE MODEL of TC74VHCT245AFW in SPICE PARKSPICE MODEL of TC74VHCT245AFW in SPICE PARK
SPICE MODEL of TC74VHCT245AFW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT640FW in SPICE PARK
SPICE MODEL of TC74ACT640FW in SPICE PARKSPICE MODEL of TC74ACT640FW in SPICE PARK
SPICE MODEL of TC74ACT640FW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT640FT in SPICE PARK
SPICE MODEL of TC74ACT640FT in SPICE PARKSPICE MODEL of TC74ACT640FT in SPICE PARK
SPICE MODEL of TC74ACT640FT in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT640F in SPICE PARK
SPICE MODEL of TC74ACT640F in SPICE PARKSPICE MODEL of TC74ACT640F in SPICE PARK
SPICE MODEL of TC74ACT640F in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT640P in SPICE PARK
SPICE MODEL of TC74ACT640P in SPICE PARKSPICE MODEL of TC74ACT640P in SPICE PARK
SPICE MODEL of TC74ACT640P in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74VCX245FT in SPICE PARK
SPICE MODEL of TC74VCX245FT in SPICE PARKSPICE MODEL of TC74VCX245FT in SPICE PARK
SPICE MODEL of TC74VCX245FT in SPICE PARK
Tsuyoshi Horigome
 
Kontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisi
Kontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisiKontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisi
Kontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisierdinc klima
 
Unit7 Shielded Gas Arc Welding
Unit7 Shielded Gas Arc WeldingUnit7 Shielded Gas Arc Welding
Unit7 Shielded Gas Arc Weldingmokhtar
 
デザインキット・擬似共振回路の解説書
デザインキット・擬似共振回路の解説書デザインキット・擬似共振回路の解説書
デザインキット・擬似共振回路の解説書
Tsuyoshi Horigome
 
デザインキット・擬似共振回路の.IC設定ガイド
デザインキット・擬似共振回路の.IC設定ガイドデザインキット・擬似共振回路の.IC設定ガイド
デザインキット・擬似共振回路の.IC設定ガイド
Tsuyoshi Horigome
 

What's hot (18)

SPICE MODEL of TC74LCX245FW in SPICE PARK
SPICE MODEL of TC74LCX245FW in SPICE PARKSPICE MODEL of TC74LCX245FW in SPICE PARK
SPICE MODEL of TC74LCX245FW in SPICE PARK
 
SPICE MODEL of TC74LCX245F in SPICE PARK
SPICE MODEL of TC74LCX245F in SPICE PARKSPICE MODEL of TC74LCX245F in SPICE PARK
SPICE MODEL of TC74LCX245F in SPICE PARK
 
SPICE MODEL of TC74ACT245FT in SPICE PARK
SPICE MODEL of TC74ACT245FT in SPICE PARKSPICE MODEL of TC74ACT245FT in SPICE PARK
SPICE MODEL of TC74ACT245FT in SPICE PARK
 
SPICE MODEL of TC74ACT245FW in SPICE PARK
SPICE MODEL of TC74ACT245FW in SPICE PARKSPICE MODEL of TC74ACT245FW in SPICE PARK
SPICE MODEL of TC74ACT245FW in SPICE PARK
 
SPICE MODEL of TC74ACT245P in SPICE PARK
SPICE MODEL of TC74ACT245P in SPICE PARKSPICE MODEL of TC74ACT245P in SPICE PARK
SPICE MODEL of TC74ACT245P in SPICE PARK
 
SPICE MODEL of TC74ACT245F in SPICE PARK
SPICE MODEL of TC74ACT245F in SPICE PARKSPICE MODEL of TC74ACT245F in SPICE PARK
SPICE MODEL of TC74ACT245F in SPICE PARK
 
SPICE MODEL of TC74VHCT245AFT in SPICE PARK
SPICE MODEL of TC74VHCT245AFT in SPICE PARKSPICE MODEL of TC74VHCT245AFT in SPICE PARK
SPICE MODEL of TC74VHCT245AFT in SPICE PARK
 
SPICE MODEL of TC74VHCT245AF in SPICE PARK
SPICE MODEL of TC74VHCT245AF in SPICE PARKSPICE MODEL of TC74VHCT245AF in SPICE PARK
SPICE MODEL of TC74VHCT245AF in SPICE PARK
 
SPICE MODEL of TC74VHCT245AFW in SPICE PARK
SPICE MODEL of TC74VHCT245AFW in SPICE PARKSPICE MODEL of TC74VHCT245AFW in SPICE PARK
SPICE MODEL of TC74VHCT245AFW in SPICE PARK
 
SPICE MODEL of TC74ACT640FW in SPICE PARK
SPICE MODEL of TC74ACT640FW in SPICE PARKSPICE MODEL of TC74ACT640FW in SPICE PARK
SPICE MODEL of TC74ACT640FW in SPICE PARK
 
SPICE MODEL of TC74ACT640FT in SPICE PARK
SPICE MODEL of TC74ACT640FT in SPICE PARKSPICE MODEL of TC74ACT640FT in SPICE PARK
SPICE MODEL of TC74ACT640FT in SPICE PARK
 
SPICE MODEL of TC74ACT640F in SPICE PARK
SPICE MODEL of TC74ACT640F in SPICE PARKSPICE MODEL of TC74ACT640F in SPICE PARK
SPICE MODEL of TC74ACT640F in SPICE PARK
 
SPICE MODEL of TC74ACT640P in SPICE PARK
SPICE MODEL of TC74ACT640P in SPICE PARKSPICE MODEL of TC74ACT640P in SPICE PARK
SPICE MODEL of TC74ACT640P in SPICE PARK
 
SPICE MODEL of TC74VCX245FT in SPICE PARK
SPICE MODEL of TC74VCX245FT in SPICE PARKSPICE MODEL of TC74VCX245FT in SPICE PARK
SPICE MODEL of TC74VCX245FT in SPICE PARK
 
Kontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisi
Kontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisiKontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisi
Kontrol vanası ve servomotorlar gruner kuresel motorluvanalar224-235serisi
 
Unit7 Shielded Gas Arc Welding
Unit7 Shielded Gas Arc WeldingUnit7 Shielded Gas Arc Welding
Unit7 Shielded Gas Arc Welding
 
デザインキット・擬似共振回路の解説書
デザインキット・擬似共振回路の解説書デザインキット・擬似共振回路の解説書
デザインキット・擬似共振回路の解説書
 
デザインキット・擬似共振回路の.IC設定ガイド
デザインキット・擬似共振回路の.IC設定ガイドデザインキット・擬似共振回路の.IC設定ガイド
デザインキット・擬似共振回路の.IC設定ガイド
 

Similar to SPICE MODEL of TC74AC640F in SPICE PARK

SPICE MODEL of TC74VHC541FW in SPICE PARK
SPICE MODEL of TC74VHC541FW in SPICE PARKSPICE MODEL of TC74VHC541FW in SPICE PARK
SPICE MODEL of TC74VHC541FW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74VHC541FT in SPICE PARK
SPICE MODEL of TC74VHC541FT in SPICE PARKSPICE MODEL of TC74VHC541FT in SPICE PARK
SPICE MODEL of TC74VHC541FT in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74VHC541F in SPICE PARK
SPICE MODEL of TC74VHC541F in SPICE PARKSPICE MODEL of TC74VHC541F in SPICE PARK
SPICE MODEL of TC74VHC541F in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74AC541F in SPICE PARK
SPICE MODEL of TC74AC541F in SPICE PARKSPICE MODEL of TC74AC541F in SPICE PARK
SPICE MODEL of TC74AC541F in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74AC541FT in SPICE PARK
SPICE MODEL of TC74AC541FT in SPICE PARKSPICE MODEL of TC74AC541FT in SPICE PARK
SPICE MODEL of TC74AC541FT in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74AC541FW in SPICE PARK
SPICE MODEL of TC74AC541FW in SPICE PARKSPICE MODEL of TC74AC541FW in SPICE PARK
SPICE MODEL of TC74AC541FW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74AC541P in SPICE PARK
SPICE MODEL of TC74AC541P in SPICE PARKSPICE MODEL of TC74AC541P in SPICE PARK
SPICE MODEL of TC74AC541P in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT541FT in SPICE PARK
SPICE MODEL of TC74ACT541FT in SPICE PARKSPICE MODEL of TC74ACT541FT in SPICE PARK
SPICE MODEL of TC74ACT541FT in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT541F in SPICE PARK
SPICE MODEL of TC74ACT541F in SPICE PARKSPICE MODEL of TC74ACT541F in SPICE PARK
SPICE MODEL of TC74ACT541F in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT541P in SPICE PARK
SPICE MODEL of TC74ACT541P in SPICE PARKSPICE MODEL of TC74ACT541P in SPICE PARK
SPICE MODEL of TC74ACT541P in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74ACT541FW in SPICE PARK
SPICE MODEL of TC74ACT541FW in SPICE PARKSPICE MODEL of TC74ACT541FW in SPICE PARK
SPICE MODEL of TC74ACT541FW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74LCX541FW in SPICE PARK
SPICE MODEL of TC74LCX541FW in SPICE PARKSPICE MODEL of TC74LCX541FW in SPICE PARK
SPICE MODEL of TC74LCX541FW in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74LCX541F in SPICE PARK
SPICE MODEL of TC74LCX541F in SPICE PARKSPICE MODEL of TC74LCX541F in SPICE PARK
SPICE MODEL of TC74LCX541F in SPICE PARK
Tsuyoshi Horigome
 
SPICE MODEL of TC74LCX541FT in SPICE PARK
SPICE MODEL of TC74LCX541FT in SPICE PARKSPICE MODEL of TC74LCX541FT in SPICE PARK
SPICE MODEL of TC74LCX541FT in SPICE PARK
Tsuyoshi Horigome
 

Similar to SPICE MODEL of TC74AC640F in SPICE PARK (14)

SPICE MODEL of TC74VHC541FW in SPICE PARK
SPICE MODEL of TC74VHC541FW in SPICE PARKSPICE MODEL of TC74VHC541FW in SPICE PARK
SPICE MODEL of TC74VHC541FW in SPICE PARK
 
SPICE MODEL of TC74VHC541FT in SPICE PARK
SPICE MODEL of TC74VHC541FT in SPICE PARKSPICE MODEL of TC74VHC541FT in SPICE PARK
SPICE MODEL of TC74VHC541FT in SPICE PARK
 
SPICE MODEL of TC74VHC541F in SPICE PARK
SPICE MODEL of TC74VHC541F in SPICE PARKSPICE MODEL of TC74VHC541F in SPICE PARK
SPICE MODEL of TC74VHC541F in SPICE PARK
 
SPICE MODEL of TC74AC541F in SPICE PARK
SPICE MODEL of TC74AC541F in SPICE PARKSPICE MODEL of TC74AC541F in SPICE PARK
SPICE MODEL of TC74AC541F in SPICE PARK
 
SPICE MODEL of TC74AC541FT in SPICE PARK
SPICE MODEL of TC74AC541FT in SPICE PARKSPICE MODEL of TC74AC541FT in SPICE PARK
SPICE MODEL of TC74AC541FT in SPICE PARK
 
SPICE MODEL of TC74AC541FW in SPICE PARK
SPICE MODEL of TC74AC541FW in SPICE PARKSPICE MODEL of TC74AC541FW in SPICE PARK
SPICE MODEL of TC74AC541FW in SPICE PARK
 
SPICE MODEL of TC74AC541P in SPICE PARK
SPICE MODEL of TC74AC541P in SPICE PARKSPICE MODEL of TC74AC541P in SPICE PARK
SPICE MODEL of TC74AC541P in SPICE PARK
 
SPICE MODEL of TC74ACT541FT in SPICE PARK
SPICE MODEL of TC74ACT541FT in SPICE PARKSPICE MODEL of TC74ACT541FT in SPICE PARK
SPICE MODEL of TC74ACT541FT in SPICE PARK
 
SPICE MODEL of TC74ACT541F in SPICE PARK
SPICE MODEL of TC74ACT541F in SPICE PARKSPICE MODEL of TC74ACT541F in SPICE PARK
SPICE MODEL of TC74ACT541F in SPICE PARK
 
SPICE MODEL of TC74ACT541P in SPICE PARK
SPICE MODEL of TC74ACT541P in SPICE PARKSPICE MODEL of TC74ACT541P in SPICE PARK
SPICE MODEL of TC74ACT541P in SPICE PARK
 
SPICE MODEL of TC74ACT541FW in SPICE PARK
SPICE MODEL of TC74ACT541FW in SPICE PARKSPICE MODEL of TC74ACT541FW in SPICE PARK
SPICE MODEL of TC74ACT541FW in SPICE PARK
 
SPICE MODEL of TC74LCX541FW in SPICE PARK
SPICE MODEL of TC74LCX541FW in SPICE PARKSPICE MODEL of TC74LCX541FW in SPICE PARK
SPICE MODEL of TC74LCX541FW in SPICE PARK
 
SPICE MODEL of TC74LCX541F in SPICE PARK
SPICE MODEL of TC74LCX541F in SPICE PARKSPICE MODEL of TC74LCX541F in SPICE PARK
SPICE MODEL of TC74LCX541F in SPICE PARK
 
SPICE MODEL of TC74LCX541FT in SPICE PARK
SPICE MODEL of TC74LCX541FT in SPICE PARKSPICE MODEL of TC74LCX541FT in SPICE PARK
SPICE MODEL of TC74LCX541FT in SPICE PARK
 

More from Tsuyoshi Horigome

FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)
FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)
FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)
Tsuyoshi Horigome
 
Update 46 models(Solar Cell) in SPICE PARK(MAY2024)
Update 46 models(Solar Cell) in SPICE PARK(MAY2024)Update 46 models(Solar Cell) in SPICE PARK(MAY2024)
Update 46 models(Solar Cell) in SPICE PARK(MAY2024)
Tsuyoshi Horigome
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )
Tsuyoshi Horigome
 
Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)
Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)
Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)
Tsuyoshi Horigome
 
SPICE PARK APR2024 ( 6,747 SPICE Models )
SPICE PARK APR2024 ( 6,747 SPICE Models )SPICE PARK APR2024 ( 6,747 SPICE Models )
SPICE PARK APR2024 ( 6,747 SPICE Models )
Tsuyoshi Horigome
 
Update 31 models(Diode/General ) in SPICE PARK(MAR2024)
Update 31 models(Diode/General ) in SPICE PARK(MAR2024)Update 31 models(Diode/General ) in SPICE PARK(MAR2024)
Update 31 models(Diode/General ) in SPICE PARK(MAR2024)
Tsuyoshi Horigome
 
SPICE PARK MAR2024 ( 6,725 SPICE Models )
SPICE PARK MAR2024 ( 6,725 SPICE Models )SPICE PARK MAR2024 ( 6,725 SPICE Models )
SPICE PARK MAR2024 ( 6,725 SPICE Models )
Tsuyoshi Horigome
 
Update 29 models(Solar cell) in SPICE PARK(FEB2024)
Update 29 models(Solar cell) in SPICE PARK(FEB2024)Update 29 models(Solar cell) in SPICE PARK(FEB2024)
Update 29 models(Solar cell) in SPICE PARK(FEB2024)
Tsuyoshi Horigome
 
SPICE PARK FEB2024 ( 6,694 SPICE Models )
SPICE PARK FEB2024 ( 6,694 SPICE Models )SPICE PARK FEB2024 ( 6,694 SPICE Models )
SPICE PARK FEB2024 ( 6,694 SPICE Models )
Tsuyoshi Horigome
 
Circuit simulation using LTspice(Case study)
Circuit simulation using LTspice(Case study)Circuit simulation using LTspice(Case study)
Circuit simulation using LTspice(Case study)
Tsuyoshi Horigome
 
Mindmap of Semiconductor sales business(15FEB2024)
Mindmap of Semiconductor sales business(15FEB2024)Mindmap of Semiconductor sales business(15FEB2024)
Mindmap of Semiconductor sales business(15FEB2024)
Tsuyoshi Horigome
 
2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice
2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice
2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice
Tsuyoshi Horigome
 
PSpice simulation of power supply for TI is Error
PSpice simulation of power supply  for TI is ErrorPSpice simulation of power supply  for TI is Error
PSpice simulation of power supply for TI is Error
Tsuyoshi Horigome
 
IGBT Simulation of Results from Rgext or Rgint
IGBT Simulation of Results from Rgext or RgintIGBT Simulation of Results from Rgext or Rgint
IGBT Simulation of Results from Rgext or Rgint
Tsuyoshi Horigome
 
Electronic component sales method centered on alternative proposals
Electronic component sales method centered on alternative proposalsElectronic component sales method centered on alternative proposals
Electronic component sales method centered on alternative proposals
Tsuyoshi Horigome
 
Electronic component sales method focused on new hires
Electronic component sales method focused on new hiresElectronic component sales method focused on new hires
Electronic component sales method focused on new hires
Tsuyoshi Horigome
 
Mindmap(electronics parts sales visions)
Mindmap(electronics parts sales visions)Mindmap(electronics parts sales visions)
Mindmap(electronics parts sales visions)
Tsuyoshi Horigome
 
Chat GPTによる伝達関数の導出
Chat GPTによる伝達関数の導出Chat GPTによる伝達関数の導出
Chat GPTによる伝達関数の導出
Tsuyoshi Horigome
 
伝達関数の理解(Chatgpt)
伝達関数の理解(Chatgpt)伝達関数の理解(Chatgpt)
伝達関数の理解(Chatgpt)
Tsuyoshi Horigome
 
DXセミナー(2024年1月17日開催)のメモ
DXセミナー(2024年1月17日開催)のメモDXセミナー(2024年1月17日開催)のメモ
DXセミナー(2024年1月17日開催)のメモ
Tsuyoshi Horigome
 

More from Tsuyoshi Horigome (20)

FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)
FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)
FedExで書類を送付する場合の設定について(オンライン受付にて登録する場合について)
 
Update 46 models(Solar Cell) in SPICE PARK(MAY2024)
Update 46 models(Solar Cell) in SPICE PARK(MAY2024)Update 46 models(Solar Cell) in SPICE PARK(MAY2024)
Update 46 models(Solar Cell) in SPICE PARK(MAY2024)
 
SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )SPICE PARK APR2024 ( 6,793 SPICE Models )
SPICE PARK APR2024 ( 6,793 SPICE Models )
 
Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)
Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)
Update 22 models(Schottky Rectifier ) in SPICE PARK(APR2024)
 
SPICE PARK APR2024 ( 6,747 SPICE Models )
SPICE PARK APR2024 ( 6,747 SPICE Models )SPICE PARK APR2024 ( 6,747 SPICE Models )
SPICE PARK APR2024 ( 6,747 SPICE Models )
 
Update 31 models(Diode/General ) in SPICE PARK(MAR2024)
Update 31 models(Diode/General ) in SPICE PARK(MAR2024)Update 31 models(Diode/General ) in SPICE PARK(MAR2024)
Update 31 models(Diode/General ) in SPICE PARK(MAR2024)
 
SPICE PARK MAR2024 ( 6,725 SPICE Models )
SPICE PARK MAR2024 ( 6,725 SPICE Models )SPICE PARK MAR2024 ( 6,725 SPICE Models )
SPICE PARK MAR2024 ( 6,725 SPICE Models )
 
Update 29 models(Solar cell) in SPICE PARK(FEB2024)
Update 29 models(Solar cell) in SPICE PARK(FEB2024)Update 29 models(Solar cell) in SPICE PARK(FEB2024)
Update 29 models(Solar cell) in SPICE PARK(FEB2024)
 
SPICE PARK FEB2024 ( 6,694 SPICE Models )
SPICE PARK FEB2024 ( 6,694 SPICE Models )SPICE PARK FEB2024 ( 6,694 SPICE Models )
SPICE PARK FEB2024 ( 6,694 SPICE Models )
 
Circuit simulation using LTspice(Case study)
Circuit simulation using LTspice(Case study)Circuit simulation using LTspice(Case study)
Circuit simulation using LTspice(Case study)
 
Mindmap of Semiconductor sales business(15FEB2024)
Mindmap of Semiconductor sales business(15FEB2024)Mindmap of Semiconductor sales business(15FEB2024)
Mindmap of Semiconductor sales business(15FEB2024)
 
2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice
2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice
2-STAGE COCKCROFT-WALTON [SCHEMATIC] using LTspice
 
PSpice simulation of power supply for TI is Error
PSpice simulation of power supply  for TI is ErrorPSpice simulation of power supply  for TI is Error
PSpice simulation of power supply for TI is Error
 
IGBT Simulation of Results from Rgext or Rgint
IGBT Simulation of Results from Rgext or RgintIGBT Simulation of Results from Rgext or Rgint
IGBT Simulation of Results from Rgext or Rgint
 
Electronic component sales method centered on alternative proposals
Electronic component sales method centered on alternative proposalsElectronic component sales method centered on alternative proposals
Electronic component sales method centered on alternative proposals
 
Electronic component sales method focused on new hires
Electronic component sales method focused on new hiresElectronic component sales method focused on new hires
Electronic component sales method focused on new hires
 
Mindmap(electronics parts sales visions)
Mindmap(electronics parts sales visions)Mindmap(electronics parts sales visions)
Mindmap(electronics parts sales visions)
 
Chat GPTによる伝達関数の導出
Chat GPTによる伝達関数の導出Chat GPTによる伝達関数の導出
Chat GPTによる伝達関数の導出
 
伝達関数の理解(Chatgpt)
伝達関数の理解(Chatgpt)伝達関数の理解(Chatgpt)
伝達関数の理解(Chatgpt)
 
DXセミナー(2024年1月17日開催)のメモ
DXセミナー(2024年1月17日開催)のメモDXセミナー(2024年1月17日開催)のメモ
DXセミナー(2024年1月17日開催)のメモ
 

Recently uploaded

Assuring Contact Center Experiences for Your Customers With ThousandEyes
Assuring Contact Center Experiences for Your Customers With ThousandEyesAssuring Contact Center Experiences for Your Customers With ThousandEyes
Assuring Contact Center Experiences for Your Customers With ThousandEyes
ThousandEyes
 
AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...
AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...
AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...
Product School
 
Search and Society: Reimagining Information Access for Radical Futures
Search and Society: Reimagining Information Access for Radical FuturesSearch and Society: Reimagining Information Access for Radical Futures
Search and Society: Reimagining Information Access for Radical Futures
Bhaskar Mitra
 
JMeter webinar - integration with InfluxDB and Grafana
JMeter webinar - integration with InfluxDB and GrafanaJMeter webinar - integration with InfluxDB and Grafana
JMeter webinar - integration with InfluxDB and Grafana
RTTS
 
Leading Change strategies and insights for effective change management pdf 1.pdf
Leading Change strategies and insights for effective change management pdf 1.pdfLeading Change strategies and insights for effective change management pdf 1.pdf
Leading Change strategies and insights for effective change management pdf 1.pdf
OnBoard
 
The Art of the Pitch: WordPress Relationships and Sales
The Art of the Pitch: WordPress Relationships and SalesThe Art of the Pitch: WordPress Relationships and Sales
The Art of the Pitch: WordPress Relationships and Sales
Laura Byrne
 
Knowledge engineering: from people to machines and back
Knowledge engineering: from people to machines and backKnowledge engineering: from people to machines and back
Knowledge engineering: from people to machines and back
Elena Simperl
 
De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...
De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...
De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...
Product School
 
Bits & Pixels using AI for Good.........
Bits & Pixels using AI for Good.........Bits & Pixels using AI for Good.........
Bits & Pixels using AI for Good.........
Alison B. Lowndes
 
Software Delivery At the Speed of AI: Inflectra Invests In AI-Powered Quality
Software Delivery At the Speed of AI: Inflectra Invests In AI-Powered QualitySoftware Delivery At the Speed of AI: Inflectra Invests In AI-Powered Quality
Software Delivery At the Speed of AI: Inflectra Invests In AI-Powered Quality
Inflectra
 
Designing Great Products: The Power of Design and Leadership by Chief Designe...
Designing Great Products: The Power of Design and Leadership by Chief Designe...Designing Great Products: The Power of Design and Leadership by Chief Designe...
Designing Great Products: The Power of Design and Leadership by Chief Designe...
Product School
 
Essentials of Automations: Optimizing FME Workflows with Parameters
Essentials of Automations: Optimizing FME Workflows with ParametersEssentials of Automations: Optimizing FME Workflows with Parameters
Essentials of Automations: Optimizing FME Workflows with Parameters
Safe Software
 
LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...
LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...
LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...
DanBrown980551
 
Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...
Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...
Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...
Product School
 
When stars align: studies in data quality, knowledge graphs, and machine lear...
When stars align: studies in data quality, knowledge graphs, and machine lear...When stars align: studies in data quality, knowledge graphs, and machine lear...
When stars align: studies in data quality, knowledge graphs, and machine lear...
Elena Simperl
 
IOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptx
IOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptxIOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptx
IOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptx
Abida Shariff
 
UiPath Test Automation using UiPath Test Suite series, part 3
UiPath Test Automation using UiPath Test Suite series, part 3UiPath Test Automation using UiPath Test Suite series, part 3
UiPath Test Automation using UiPath Test Suite series, part 3
DianaGray10
 
To Graph or Not to Graph Knowledge Graph Architectures and LLMs
To Graph or Not to Graph Knowledge Graph Architectures and LLMsTo Graph or Not to Graph Knowledge Graph Architectures and LLMs
To Graph or Not to Graph Knowledge Graph Architectures and LLMs
Paul Groth
 
Connector Corner: Automate dynamic content and events by pushing a button
Connector Corner: Automate dynamic content and events by pushing a buttonConnector Corner: Automate dynamic content and events by pushing a button
Connector Corner: Automate dynamic content and events by pushing a button
DianaGray10
 
State of ICS and IoT Cyber Threat Landscape Report 2024 preview
State of ICS and IoT Cyber Threat Landscape Report 2024 previewState of ICS and IoT Cyber Threat Landscape Report 2024 preview
State of ICS and IoT Cyber Threat Landscape Report 2024 preview
Prayukth K V
 

Recently uploaded (20)

Assuring Contact Center Experiences for Your Customers With ThousandEyes
Assuring Contact Center Experiences for Your Customers With ThousandEyesAssuring Contact Center Experiences for Your Customers With ThousandEyes
Assuring Contact Center Experiences for Your Customers With ThousandEyes
 
AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...
AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...
AI for Every Business: Unlocking Your Product's Universal Potential by VP of ...
 
Search and Society: Reimagining Information Access for Radical Futures
Search and Society: Reimagining Information Access for Radical FuturesSearch and Society: Reimagining Information Access for Radical Futures
Search and Society: Reimagining Information Access for Radical Futures
 
JMeter webinar - integration with InfluxDB and Grafana
JMeter webinar - integration with InfluxDB and GrafanaJMeter webinar - integration with InfluxDB and Grafana
JMeter webinar - integration with InfluxDB and Grafana
 
Leading Change strategies and insights for effective change management pdf 1.pdf
Leading Change strategies and insights for effective change management pdf 1.pdfLeading Change strategies and insights for effective change management pdf 1.pdf
Leading Change strategies and insights for effective change management pdf 1.pdf
 
The Art of the Pitch: WordPress Relationships and Sales
The Art of the Pitch: WordPress Relationships and SalesThe Art of the Pitch: WordPress Relationships and Sales
The Art of the Pitch: WordPress Relationships and Sales
 
Knowledge engineering: from people to machines and back
Knowledge engineering: from people to machines and backKnowledge engineering: from people to machines and back
Knowledge engineering: from people to machines and back
 
De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...
De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...
De-mystifying Zero to One: Design Informed Techniques for Greenfield Innovati...
 
Bits & Pixels using AI for Good.........
Bits & Pixels using AI for Good.........Bits & Pixels using AI for Good.........
Bits & Pixels using AI for Good.........
 
Software Delivery At the Speed of AI: Inflectra Invests In AI-Powered Quality
Software Delivery At the Speed of AI: Inflectra Invests In AI-Powered QualitySoftware Delivery At the Speed of AI: Inflectra Invests In AI-Powered Quality
Software Delivery At the Speed of AI: Inflectra Invests In AI-Powered Quality
 
Designing Great Products: The Power of Design and Leadership by Chief Designe...
Designing Great Products: The Power of Design and Leadership by Chief Designe...Designing Great Products: The Power of Design and Leadership by Chief Designe...
Designing Great Products: The Power of Design and Leadership by Chief Designe...
 
Essentials of Automations: Optimizing FME Workflows with Parameters
Essentials of Automations: Optimizing FME Workflows with ParametersEssentials of Automations: Optimizing FME Workflows with Parameters
Essentials of Automations: Optimizing FME Workflows with Parameters
 
LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...
LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...
LF Energy Webinar: Electrical Grid Modelling and Simulation Through PowSyBl -...
 
Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...
Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...
Unsubscribed: Combat Subscription Fatigue With a Membership Mentality by Head...
 
When stars align: studies in data quality, knowledge graphs, and machine lear...
When stars align: studies in data quality, knowledge graphs, and machine lear...When stars align: studies in data quality, knowledge graphs, and machine lear...
When stars align: studies in data quality, knowledge graphs, and machine lear...
 
IOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptx
IOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptxIOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptx
IOS-PENTESTING-BEGINNERS-PRACTICAL-GUIDE-.pptx
 
UiPath Test Automation using UiPath Test Suite series, part 3
UiPath Test Automation using UiPath Test Suite series, part 3UiPath Test Automation using UiPath Test Suite series, part 3
UiPath Test Automation using UiPath Test Suite series, part 3
 
To Graph or Not to Graph Knowledge Graph Architectures and LLMs
To Graph or Not to Graph Knowledge Graph Architectures and LLMsTo Graph or Not to Graph Knowledge Graph Architectures and LLMs
To Graph or Not to Graph Knowledge Graph Architectures and LLMs
 
Connector Corner: Automate dynamic content and events by pushing a button
Connector Corner: Automate dynamic content and events by pushing a buttonConnector Corner: Automate dynamic content and events by pushing a button
Connector Corner: Automate dynamic content and events by pushing a button
 
State of ICS and IoT Cyber Threat Landscape Report 2024 preview
State of ICS and IoT Cyber Threat Landscape Report 2024 previewState of ICS and IoT Cyber Threat Landscape Report 2024 preview
State of ICS and IoT Cyber Threat Landscape Report 2024 preview
 

SPICE MODEL of TC74AC640F in SPICE PARK

  • 1. Device Modeling Report COMPONENTS : CMOS DIGITAL INTEGRATED CIRCUIT PART NUMBER : TC74AC640F MANUFACTURER : TOSHIBA Bee Technologies Inc. All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 2. Truth Table Circuit simulation result U1:GBAR 0 U1:DIR 0 U1:B1 1 U1:B2 1 U1:B3 1 U1:B4 1 U1:B5 1 U1:B6 1 U1:B7 1 U1:B8 1 U1:A1 0 U1:A2 0 U1:A3 0 U1:A4 0 U1:A5 0 U1:A6 0 U1:A7 0 U1:A8 0 0s 0.5us 1.0us Time Evaluation circuit U1 DIR VCC LO __ A1 G LO A2 B1 IN_B A3 B2 A4 B3 A5 B4 R1 V1 A6 B5 1MEG A7 B6 DSTM1 5 A8 B7 CLK GND B8 ONTIME = .2uS OFFTIME = .2uS 74AC640 0 Comparison table Function : A BUS = OUTPUT, B BUS = INPUT Input Output %Error G DIR Measurement Simulation L L A= B A= B 0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 3. Truth Table Circuit simulation result U1:GBAR 0 U1:DIR 1 U1:A1 1 U1:A2 1 U1:A3 1 U1:A4 1 U1:A5 1 U1:A6 1 U1:A7 1 U1:A8 1 U1:B1 0 U1:B2 0 U1:B3 0 U1:B4 0 U1:B5 0 U1:B6 0 U1:B7 0 U1:B8 0 0s 0.5us 1.0us Time Evaluation circuit U1 HI DIR VCC __ A1 G IN_A LO A2 B1 A3 B2 A4 B3 A5 B4 R1 V1 A6 B5 1MEG CLK A7 B6 5 DSTM1 A8 B7 ONTIME = .2uS OFFTIME = .2uS GND B8 74AC640 0 Comparison table Function : A BUS = INPUT, B BUS = OUTPUT Input Output %Error G DIR Measurement Simulation L H B= A B= A 0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 4. Truth Table Circuit simulation result U1:GBAR 1 U1:DIR 0 U1:A1 Z U1:A2 Z U1:A3 Z U1:A4 Z U1:A5 Z U1:A6 Z U1:A7 Z U1:A8 Z U1:B1 Z U1:B2 Z U1:B3 Z U1:B4 Z U1:B5 Z U1:B6 Z U1:B7 Z U1:B8 Z 0s 0.5us 1.0us Time Evaluation circuit U1 DSTM1 CLK DIR VCC 1 __ ONTIME = .2uS A1 G HI LO OFFTIME = .2uS 1 2 A2 B1 LO LO 3 A3 B2 2 LO LO 4 A4 B3 3 LO LO 5 4 LO A5 B4 LO R1 V1 6 A6 B5 5 LO LO 1MEG 7 A7 B6 6 LO LO 5 8 A8 B7 7 LO LO GND B8 8 LO 74AC640 0 Comparison table Function : A BUS and B BUS = HIGH IMPEDANCE Input Output %Error G DIR Measurement Simulation H X Z Z 0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 5. High Level and Low Level Input Voltage Circuit simulation result 6.0V (571.506u,3.9328) 4.0V Output Input (529.903u,1.6447) 2.0V 0V 0s 0.5ms 1.0ms 1.5ms 2.0ms V(OUT) V(V1:+) Time Evaluation circuit U1 DIR VCC LO __ A1 G OUT LO A2 B1 A3 B2 A4 B3 V2 A5 B4 V1 = 0 R2 A6 B5 V2 = 5.5 V1 5.5 TD = 0.5m 1G A7 B6 TR = 0.1m TF = 0.1m A8 B7 PW = 1m PER = 2m GND B8 74AC640 0 Comparison table VCC = 5.5V Measurement Simulation %Error VIH (V) 3.85 3.9328 2.151 VIL (V) 1.65 1.6447 -0.321 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 6. High Level and Low Level Output Voltage Circuit simulation result 5.0V 2.5V Output 0V Input V(OUT) 5.0V 2.5V SEL>> 0V 0s 5ms 10ms V(V1:+) Time Evaluation circuit U1 DIR VCC LO __ A1 G OUT LO A2 B1 A3 B2 A4 B3 V2 A5 B4 V1 = 0 R1 A6 B5 V2 = 4.5 V1 4.5 TD = 0.5m 0.09MEG A7 B6 TR = 3n TF = 3n A8 B7 PW = 1m PER = 2m GND B8 74AC640 0 Comparison table VCC = 4.5V Measurement Simulation %Error VOH (V) 4.5 4.499 -0.022 VOL (V) 0 0 0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 7. Propagation Delay Time Circuit simulation result 5.0V 5.0V 1 2 Output Input 2.5V 2.5V >> 0V 0V 0s 0.5us 1.0us 1 V(TPLH) 2 V(U1:B1) Time Evaluation circuit U1 DIR VCC LO tplh __ A1 G LO A2 B1 A3 B2 A4 B3 V2 R1 A5 B4 C1 V1 = 0 500 50p A6 B5 V2 = 5 5 TD = 0.2u V1 A7 B6 TR = 3.8n TF = 3.8n A8 B7 PW = 0.5u PER = 1u GND B8 74AC640 0 Comparison table CL = 50 pF, RL = 500  VCC = 5 V, tr = tf = 3 ns Measurement Simulation %Error tPLH (ns) 4.8 4.8079 0.165 tPHL (ns) 4.8 4.8896 1.867 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 8. Output enable time, high impedance (off) to high output (tPZH) Output disable time, high to high impedance (off) output (tPHZ) Circuit simulation result 5.0V 5.0V 1 2 Output Input 2.5V 2.5V >> 0V 0V 0s 0.5us 1.0us 1 V(TPZH_TPHZ) 2 V(U1:GBAR) Time Evaluation circuit U1 DIR VCC LO tpzh_tphz __ A1 G A2 B1 LO A3 B2 A4 B3 V2 A5 B4 R2 R1 C1 V1 = 0 V1 A6 B5 V2 = 5 5 500 500 50p TD = 0.2u A7 B6 TR = 3.8n TF = 3.8n A8 B7 PW = 0.5u PER = 1u GND B8 74AC640 0 Comparison table CL = 50 pF, RL = 500  VCC = 5 V, tr = tf = 3 ns Measurement Simulation %Error tPZH (ns) 7.1 7.1864 1.217 tPHZ (ns) 5.9 5.9627 1.063 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005
  • 9. Output enable time, high impedance (off) to low output (tPZL) Output disable time, low to high impedance (off) output (tPLZ) Circuit simulation result 5.0V 5.0V 1 2 Output Input 2.5V 2.5V >> 0V 0V 0s 0.5us 1.0us 1 V(TPZL_TPLZ) 2 V(V1:+) Time Evaluation circuit U1 DIR VCC LO R2 tpzl_tplz __ A1 G 500 A2 B1 HI A3 B2 A4 B3 V2 R1 C1 A5 B4 V3 V1 = 0 V1 500 50p A6 B5 V2 = 5 10 TD = 0.2u A7 B6 TR = 3.8n 5 TF = 3.8n A8 B7 PW = 0.5u PER = 1u GND B8 74AC640 0 Comparison table CL = 50 pF, RL = 500  VCC = 5 V, tr = tf = 3 ns Measurement Simulation %Error tPZL (ns) 7.1 7.1449 0.632 tPLZ (ns) 5.9 5.9560 0.949 All Rights Reserved Copyright (c) Bee Technologies Inc. 2005