SlideShare a Scribd company logo
1 of 8
Download to read offline
Device Modeling Report




COMPONENTS: OPERATIONAL AMPLIFIER
PART NUMBER: HA17558
MANUFACTURER: RENESAS
REMARK TYPE: (OPAMP)




               Bee Technologies Inc.




All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
Spice Model




       All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
Output Voltage Swing

Simulation result

    20V




     0V




   -20V
     -500mV                     -250mV                                       0V               250mV       500mV
          V(Vout)
                                                                         V_V1

Evaluation circuit


            Rl oa d 10 k         Vo ut                      U1
                                                OU T1                             VCC


                                                   -IN1      -                    OU T2
                                                                 +
                                                   + IN 1                         -IN2
                                                                     +   -

                                                   VEE                            + IN 2


                                                            HA 175 58
                                                                                               V+

                           V1              V-
                 0V dc                                                                         15 Vd c
                                         -15 Vdc




                                                                                               0




Comparison table

   Output Voltage Swing                            Measurement                             Simulation     %Error
        +Vout(V)                                         14.000                                  13.999    -0.007
         -Vout(V)                                       -14.000                                 -13.999    -0.007




           All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
Input Offset Voltage

Simulation result

    20V



    14V




     0V




   -14V



   -20V
     -1.0mV                        0V                                  1.0mV                   2.0mV
          V(Vout)
                                              V_Vin

Evaluation circuit

                                               Rl oa d
                                                              2k

                                                     U1
                                            OU T1                       VCC
                                    Vo ut
                                            -IN1      -                 OU T2
                                                          +
                                            + IN 1                      -IN2
                                                               +
                                                                   -

                            Vi n            VEE                         + IN 2
          Vi
                VO FF = 0       VO FF = 0
                                                     HA 175 58
               VA MPL = 0      VA MPL = 0                                          V+
                FREQ = 0        FREQ = 0     V-
                  AC = 0          AC = 0
                  DC = 0          DC = 0                                         15 Vd c
                                            -15 Vdc



               0



Comparison table

                            Measurement                        Simulation                  %Error
       Vos(mV)
                                      0.500                           0.492                 -1.600




           All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
Slew Rate

Simulation result

    20V




     0V




   -20V
          0s                     50us                   100us                                     150us           200us
               V(Vout)
                                                         Time


Evaluation circuit


                                                            Vo ut            U1
                                                                    OU T1                         VCC

                                                                    -IN1      -                   OU T2
                                                                                  +
                                                                    + IN 1                        -IN2
                                                                                          +
                                                                                              -

                                                                    VEE                           + IN 2     V+
                            Vi   V1 = -1 4    Vi n
                                 V2 = 14
                                                                             HA 175 58
                VO FF = 0        TD = 0 .1m                                                                15 Vd c
               VA MPL = 0         TR = 1 0n
                FREQ = 0           TF = 10n
                   AC = 0          PW = 1 m            V-
                   DC = 0         PE R = 2m
                                                     -15 Vdc




                                                                                      0



Comparison table

        Slew                     Measurement                          Simulation                           %Error
      Rate(v/us)                         1.000                                1.018                             1.800




               All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
Input current Ib, Ibos

Simulation result

   60nA




   55nA




   50nA




   45nA




   40nA
          0s              0.2ms                0.4ms                     0.6ms                      0.8ms         1.0ms
               I(Vi)     I(Vin)
                                                         Time


Evaluation circuit


                                                        Vo ut             U1
                                                                OU T1                      VCC


                                                                -IN1       -               OU T2
                                                                               +
                                                                + IN 1                     -IN2
                                                                                   +   -

                                                                VEE                        + IN 2
                                  Vi n                                                                       V+
                                            VO FF = 0
                                                                          HA 175 58
                             Vi            VA MPL = 0
                VO FF = 0                   FREQ = 0                                                        15 Vd c
                VA MPL = 0                     AC = 0      V-
                FREQ = 0                       DC = 0
                AC = 0                      V1            -15 Vdc
                DC = 0
                                         0.4 92m



                                                          0



Comparison table

                              Measurement                       Simulation                              %Error
       Ib(nA)                        50.000                            50.020                               0.040
      Ibos(nA)                        5.000                             5.016                               0.318




               All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
Open Loop Voltage Gain vs. Frequency , Av-dc, f-0dB

Simulation result

   120




    80




    40




     0
    1.0Hz           100Hz                            10KHz                            1.0MHz     100MHz
        DB(V(Vout)/V(Vin:+))
                                                   Frequency


Evaluation circuit


                              RL    2k     Vo ut                  U1
                                                         OU T1                     VCC


                                                         -IN1      -               OU T2
                                                                       +
                                                         + IN 1                    -IN2
                                                                           +   -

                                                         VEE                       + IN 2
                                                                                                V+
                                  Vi n
                                                                  HA 175 58
            Vi
                      VO FF = 0       VO FF = 0     V-                                         15 Vd c
                     VA MPL = 0      VA MPL = 0
                      FREQ = 0        FREQ = 0
                        AC = 0        AC = 1 m     -15 Vdc
                        DC = 0     DC = 0 .492 m




                 0




Comparison table

                                    Measurement                            Simulation                %Error
         f-0dB(MHz)                          1.000                                 1.000                 0.000
          Av-dc(dB)                        104.000                              104.069                  0.066




            All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
Common-Mode Rejection Voltage gain

Simulation result

    20V




    10V




     0V




   -10V




   -20V
          0s                  1.0s                       2.0s                         3.0s             4.0s
               V(Vout)
                                                         Time


Evaluation circuit

                                     Vo ut               U1
                                               OU T1                      VCC

                                                -IN1      -               OU T2
                                                              +
                                                + IN 1                    -IN2
                                                                  +   -
                V1
                         -0.49 2m               VEE                       + IN 2
                                                                                              V+
                                                         HA 175 58
                                               V-
                                                                                             15 Vd c
                  V
                        VO FF = 0             -15 Vdc
                      VA MPL = 5
                        FREQ = 1
                           AC = 0
                           DC = 0


                                      0
   Common Mode Reject Ratio=20*LOG(159753.3596/(15.835/10))
                           = 100.0766 dB

               CMRR                 Measurement                       Simulation                   %Error
                (dB)                         100.000                               100.077             0.077




               All Rights Reserved Copyright (c) Bee Technologies Inc. 2008

More Related Content

What's hot

SPICE MODEL of uPC4091G2 in SPICE PARK
SPICE MODEL of uPC4091G2 in SPICE PARKSPICE MODEL of uPC4091G2 in SPICE PARK
SPICE MODEL of uPC4091G2 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2407 in SPICE PARK
SPICE MODEL of NJM2407 in SPICE PARKSPICE MODEL of NJM2407 in SPICE PARK
SPICE MODEL of NJM2407 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4091C in SPICE PARK
SPICE MODEL of uPC4091C in SPICE PARKSPICE MODEL of uPC4091C in SPICE PARK
SPICE MODEL of uPC4091C in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2120 in SPICE PARK
SPICE MODEL of NJM2120 in SPICE PARKSPICE MODEL of NJM2120 in SPICE PARK
SPICE MODEL of NJM2120 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4074C in SPICE PARK
SPICE MODEL of uPC4074C in SPICE PARKSPICE MODEL of uPC4074C in SPICE PARK
SPICE MODEL of uPC4074C in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of BA4560R in SPICE PARK
SPICE MODEL of BA4560R in SPICE PARKSPICE MODEL of BA4560R in SPICE PARK
SPICE MODEL of BA4560R in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of LA6324N in SPICE PARK
SPICE MODEL of LA6324N in SPICE PARKSPICE MODEL of LA6324N in SPICE PARK
SPICE MODEL of LA6324N in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC1458C in SPICE PARK
SPICE MODEL of uPC1458C in SPICE PARKSPICE MODEL of uPC1458C in SPICE PARK
SPICE MODEL of uPC1458C in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC1458G2 in SPICE PARK
SPICE MODEL of uPC1458G2 in SPICE PARKSPICE MODEL of uPC1458G2 in SPICE PARK
SPICE MODEL of uPC1458G2 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM4580E in SPICE PARK
SPICE MODEL of NJM4580E in SPICE PARKSPICE MODEL of NJM4580E in SPICE PARK
SPICE MODEL of NJM4580E in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4061C in SPICE PARK
SPICE MODEL of uPC4061C in SPICE PARKSPICE MODEL of uPC4061C in SPICE PARK
SPICE MODEL of uPC4061C in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of TC7W04FU in SPICE PARK
SPICE MODEL of TC7W04FU in SPICE PARKSPICE MODEL of TC7W04FU in SPICE PARK
SPICE MODEL of TC7W04FU in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of TC7W04F in SPICE PARK
SPICE MODEL of TC7W04F in SPICE PARKSPICE MODEL of TC7W04F in SPICE PARK
SPICE MODEL of TC7W04F in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of TC7W04FK in SPICE PARK
SPICE MODEL of TC7W04FK in SPICE PARKSPICE MODEL of TC7W04FK in SPICE PARK
SPICE MODEL of TC7W04FK in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4061G2 in SPICE PARK
SPICE MODEL of uPC4061G2 in SPICE PARKSPICE MODEL of uPC4061G2 in SPICE PARK
SPICE MODEL of uPC4061G2 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4560G2 in SPICE PARK
SPICE MODEL of uPC4560G2 in SPICE PARKSPICE MODEL of uPC4560G2 in SPICE PARK
SPICE MODEL of uPC4560G2 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2403 in SPICE PARK
SPICE MODEL of NJM2403 in SPICE PARKSPICE MODEL of NJM2403 in SPICE PARK
SPICE MODEL of NJM2403 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJU7109 in SPICE PARK
SPICE MODEL of NJU7109 in SPICE PARKSPICE MODEL of NJU7109 in SPICE PARK
SPICE MODEL of NJU7109 in SPICE PARKTsuyoshi Horigome
 

What's hot (19)

SPICE MODEL of uPC4091G2 in SPICE PARK
SPICE MODEL of uPC4091G2 in SPICE PARKSPICE MODEL of uPC4091G2 in SPICE PARK
SPICE MODEL of uPC4091G2 in SPICE PARK
 
SPICE MODEL of NJM2407 in SPICE PARK
SPICE MODEL of NJM2407 in SPICE PARKSPICE MODEL of NJM2407 in SPICE PARK
SPICE MODEL of NJM2407 in SPICE PARK
 
SPICE MODEL of uPC4091C in SPICE PARK
SPICE MODEL of uPC4091C in SPICE PARKSPICE MODEL of uPC4091C in SPICE PARK
SPICE MODEL of uPC4091C in SPICE PARK
 
SPICE MODEL of NJM2120 in SPICE PARK
SPICE MODEL of NJM2120 in SPICE PARKSPICE MODEL of NJM2120 in SPICE PARK
SPICE MODEL of NJM2120 in SPICE PARK
 
SPICE MODEL of uPC4074C in SPICE PARK
SPICE MODEL of uPC4074C in SPICE PARKSPICE MODEL of uPC4074C in SPICE PARK
SPICE MODEL of uPC4074C in SPICE PARK
 
SPICE MODEL of BA4560R in SPICE PARK
SPICE MODEL of BA4560R in SPICE PARKSPICE MODEL of BA4560R in SPICE PARK
SPICE MODEL of BA4560R in SPICE PARK
 
SPICE MODEL of LA6324N in SPICE PARK
SPICE MODEL of LA6324N in SPICE PARKSPICE MODEL of LA6324N in SPICE PARK
SPICE MODEL of LA6324N in SPICE PARK
 
SPICE MODEL of uPC1458C in SPICE PARK
SPICE MODEL of uPC1458C in SPICE PARKSPICE MODEL of uPC1458C in SPICE PARK
SPICE MODEL of uPC1458C in SPICE PARK
 
SPICE MODEL of uPC1458G2 in SPICE PARK
SPICE MODEL of uPC1458G2 in SPICE PARKSPICE MODEL of uPC1458G2 in SPICE PARK
SPICE MODEL of uPC1458G2 in SPICE PARK
 
SPICE MODEL of NJM4580E in SPICE PARK
SPICE MODEL of NJM4580E in SPICE PARKSPICE MODEL of NJM4580E in SPICE PARK
SPICE MODEL of NJM4580E in SPICE PARK
 
SPICE MODEL of uPC4061C in SPICE PARK
SPICE MODEL of uPC4061C in SPICE PARKSPICE MODEL of uPC4061C in SPICE PARK
SPICE MODEL of uPC4061C in SPICE PARK
 
SPICE MODEL of TC7W04FU in SPICE PARK
SPICE MODEL of TC7W04FU in SPICE PARKSPICE MODEL of TC7W04FU in SPICE PARK
SPICE MODEL of TC7W04FU in SPICE PARK
 
SPICE MODEL of TC7W04F in SPICE PARK
SPICE MODEL of TC7W04F in SPICE PARKSPICE MODEL of TC7W04F in SPICE PARK
SPICE MODEL of TC7W04F in SPICE PARK
 
SPICE MODEL of TC7W04FK in SPICE PARK
SPICE MODEL of TC7W04FK in SPICE PARKSPICE MODEL of TC7W04FK in SPICE PARK
SPICE MODEL of TC7W04FK in SPICE PARK
 
SPICE MODEL of uPC4061G2 in SPICE PARK
SPICE MODEL of uPC4061G2 in SPICE PARKSPICE MODEL of uPC4061G2 in SPICE PARK
SPICE MODEL of uPC4061G2 in SPICE PARK
 
MUSES01(PSpice Model)
MUSES01(PSpice Model)MUSES01(PSpice Model)
MUSES01(PSpice Model)
 
SPICE MODEL of uPC4560G2 in SPICE PARK
SPICE MODEL of uPC4560G2 in SPICE PARKSPICE MODEL of uPC4560G2 in SPICE PARK
SPICE MODEL of uPC4560G2 in SPICE PARK
 
SPICE MODEL of NJM2403 in SPICE PARK
SPICE MODEL of NJM2403 in SPICE PARKSPICE MODEL of NJM2403 in SPICE PARK
SPICE MODEL of NJM2403 in SPICE PARK
 
SPICE MODEL of NJU7109 in SPICE PARK
SPICE MODEL of NJU7109 in SPICE PARKSPICE MODEL of NJU7109 in SPICE PARK
SPICE MODEL of NJU7109 in SPICE PARK
 

Similar to Device Modeling Report: Operational Amplifier HA17558

SPICE MODEL of NJM2711 in SPICE PARK
SPICE MODEL of NJM2711 in SPICE PARKSPICE MODEL of NJM2711 in SPICE PARK
SPICE MODEL of NJM2711 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4558C in SPICE PARK
SPICE MODEL of uPC4558C in SPICE PARKSPICE MODEL of uPC4558C in SPICE PARK
SPICE MODEL of uPC4558C in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4560C in SPICE PARK
SPICE MODEL of uPC4560C in SPICE PARKSPICE MODEL of uPC4560C in SPICE PARK
SPICE MODEL of uPC4560C in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2115 in SPICE PARK
SPICE MODEL of NJM2115 in SPICE PARKSPICE MODEL of NJM2115 in SPICE PARK
SPICE MODEL of NJM2115 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2138 in SPICE PARK
SPICE MODEL of NJM2138 in SPICE PARKSPICE MODEL of NJM2138 in SPICE PARK
SPICE MODEL of NJM2138 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM072 in SPICE PARK
SPICE MODEL of NJM072 in SPICE PARKSPICE MODEL of NJM072 in SPICE PARK
SPICE MODEL of NJM072 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2712 in SPICE PARK
SPICE MODEL of NJM2712 in SPICE PARKSPICE MODEL of NJM2712 in SPICE PARK
SPICE MODEL of NJM2712 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM022B in SPICE PARK
SPICE MODEL of NJM022B in SPICE PARKSPICE MODEL of NJM022B in SPICE PARK
SPICE MODEL of NJM022B in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM4565V in SPICE PARK
SPICE MODEL of NJM4565V in SPICE PARKSPICE MODEL of NJM4565V in SPICE PARK
SPICE MODEL of NJM4565V in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM4565 in SPICE PARK
SPICE MODEL of NJM4565 in SPICE PARKSPICE MODEL of NJM4565 in SPICE PARK
SPICE MODEL of NJM4565 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4558G2 in SPICE PARK
SPICE MODEL of uPC4558G2 in SPICE PARKSPICE MODEL of uPC4558G2 in SPICE PARK
SPICE MODEL of uPC4558G2 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM4565M in SPICE PARK
SPICE MODEL of NJM4565M in SPICE PARKSPICE MODEL of NJM4565M in SPICE PARK
SPICE MODEL of NJM4565M in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2742RB1 in SPICE PARK
SPICE MODEL of NJM2742RB1 in SPICE PARKSPICE MODEL of NJM2742RB1 in SPICE PARK
SPICE MODEL of NJM2742RB1 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2742V in SPICE PARK
SPICE MODEL of NJM2742V in SPICE PARKSPICE MODEL of NJM2742V in SPICE PARK
SPICE MODEL of NJM2742V in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2742M in SPICE PARK
SPICE MODEL of NJM2742M in SPICE PARKSPICE MODEL of NJM2742M in SPICE PARK
SPICE MODEL of NJM2742M in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2140 in SPICE PARK
SPICE MODEL of NJM2140 in SPICE PARKSPICE MODEL of NJM2140 in SPICE PARK
SPICE MODEL of NJM2140 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM2119 in SPICE PARK
SPICE MODEL of NJM2119 in SPICE PARKSPICE MODEL of NJM2119 in SPICE PARK
SPICE MODEL of NJM2119 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of NJM022 in SPICE PARK
SPICE MODEL of NJM022 in SPICE PARKSPICE MODEL of NJM022 in SPICE PARK
SPICE MODEL of NJM022 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4071G2 in SPICE PARK
SPICE MODEL of uPC4071G2 in SPICE PARKSPICE MODEL of uPC4071G2 in SPICE PARK
SPICE MODEL of uPC4071G2 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC4092C in SPICE PARK
SPICE MODEL of uPC4092C in SPICE PARKSPICE MODEL of uPC4092C in SPICE PARK
SPICE MODEL of uPC4092C in SPICE PARKTsuyoshi Horigome
 

Similar to Device Modeling Report: Operational Amplifier HA17558 (20)

SPICE MODEL of NJM2711 in SPICE PARK
SPICE MODEL of NJM2711 in SPICE PARKSPICE MODEL of NJM2711 in SPICE PARK
SPICE MODEL of NJM2711 in SPICE PARK
 
SPICE MODEL of uPC4558C in SPICE PARK
SPICE MODEL of uPC4558C in SPICE PARKSPICE MODEL of uPC4558C in SPICE PARK
SPICE MODEL of uPC4558C in SPICE PARK
 
SPICE MODEL of uPC4560C in SPICE PARK
SPICE MODEL of uPC4560C in SPICE PARKSPICE MODEL of uPC4560C in SPICE PARK
SPICE MODEL of uPC4560C in SPICE PARK
 
SPICE MODEL of NJM2115 in SPICE PARK
SPICE MODEL of NJM2115 in SPICE PARKSPICE MODEL of NJM2115 in SPICE PARK
SPICE MODEL of NJM2115 in SPICE PARK
 
SPICE MODEL of NJM2138 in SPICE PARK
SPICE MODEL of NJM2138 in SPICE PARKSPICE MODEL of NJM2138 in SPICE PARK
SPICE MODEL of NJM2138 in SPICE PARK
 
SPICE MODEL of NJM072 in SPICE PARK
SPICE MODEL of NJM072 in SPICE PARKSPICE MODEL of NJM072 in SPICE PARK
SPICE MODEL of NJM072 in SPICE PARK
 
SPICE MODEL of NJM2712 in SPICE PARK
SPICE MODEL of NJM2712 in SPICE PARKSPICE MODEL of NJM2712 in SPICE PARK
SPICE MODEL of NJM2712 in SPICE PARK
 
SPICE MODEL of NJM022B in SPICE PARK
SPICE MODEL of NJM022B in SPICE PARKSPICE MODEL of NJM022B in SPICE PARK
SPICE MODEL of NJM022B in SPICE PARK
 
SPICE MODEL of NJM4565V in SPICE PARK
SPICE MODEL of NJM4565V in SPICE PARKSPICE MODEL of NJM4565V in SPICE PARK
SPICE MODEL of NJM4565V in SPICE PARK
 
SPICE MODEL of NJM4565 in SPICE PARK
SPICE MODEL of NJM4565 in SPICE PARKSPICE MODEL of NJM4565 in SPICE PARK
SPICE MODEL of NJM4565 in SPICE PARK
 
SPICE MODEL of uPC4558G2 in SPICE PARK
SPICE MODEL of uPC4558G2 in SPICE PARKSPICE MODEL of uPC4558G2 in SPICE PARK
SPICE MODEL of uPC4558G2 in SPICE PARK
 
SPICE MODEL of NJM4565M in SPICE PARK
SPICE MODEL of NJM4565M in SPICE PARKSPICE MODEL of NJM4565M in SPICE PARK
SPICE MODEL of NJM4565M in SPICE PARK
 
SPICE MODEL of NJM2742RB1 in SPICE PARK
SPICE MODEL of NJM2742RB1 in SPICE PARKSPICE MODEL of NJM2742RB1 in SPICE PARK
SPICE MODEL of NJM2742RB1 in SPICE PARK
 
SPICE MODEL of NJM2742V in SPICE PARK
SPICE MODEL of NJM2742V in SPICE PARKSPICE MODEL of NJM2742V in SPICE PARK
SPICE MODEL of NJM2742V in SPICE PARK
 
SPICE MODEL of NJM2742M in SPICE PARK
SPICE MODEL of NJM2742M in SPICE PARKSPICE MODEL of NJM2742M in SPICE PARK
SPICE MODEL of NJM2742M in SPICE PARK
 
SPICE MODEL of NJM2140 in SPICE PARK
SPICE MODEL of NJM2140 in SPICE PARKSPICE MODEL of NJM2140 in SPICE PARK
SPICE MODEL of NJM2140 in SPICE PARK
 
SPICE MODEL of NJM2119 in SPICE PARK
SPICE MODEL of NJM2119 in SPICE PARKSPICE MODEL of NJM2119 in SPICE PARK
SPICE MODEL of NJM2119 in SPICE PARK
 
SPICE MODEL of NJM022 in SPICE PARK
SPICE MODEL of NJM022 in SPICE PARKSPICE MODEL of NJM022 in SPICE PARK
SPICE MODEL of NJM022 in SPICE PARK
 
SPICE MODEL of uPC4071G2 in SPICE PARK
SPICE MODEL of uPC4071G2 in SPICE PARKSPICE MODEL of uPC4071G2 in SPICE PARK
SPICE MODEL of uPC4071G2 in SPICE PARK
 
SPICE MODEL of uPC4092C in SPICE PARK
SPICE MODEL of uPC4092C in SPICE PARKSPICE MODEL of uPC4092C in SPICE PARK
SPICE MODEL of uPC4092C in SPICE PARK
 

More from 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 LTspiceTsuyoshi 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 ErrorTsuyoshi 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 RgintTsuyoshi 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 proposalsTsuyoshi 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 hiresTsuyoshi 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
 
0Ω抵抗を評価ボードで採用する理由は何ですか?
0Ω抵抗を評価ボードで採用する理由は何ですか?0Ω抵抗を評価ボードで採用する理由は何ですか?
0Ω抵抗を評価ボードで採用する理由は何ですか?Tsuyoshi Horigome
 

More from Tsuyoshi Horigome (20)

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
 
0Ω抵抗を評価ボードで採用する理由は何ですか?
0Ω抵抗を評価ボードで採用する理由は何ですか?0Ω抵抗を評価ボードで採用する理由は何ですか?
0Ω抵抗を評価ボードで採用する理由は何ですか?
 

Recently uploaded

Scanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsScanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsRizwan Syed
 
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr LapshynFwdays
 
Maximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxMaximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxOnBoard
 
Unleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubUnleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubKalema Edgar
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupFlorian Wilhelm
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticscarlostorres15106
 
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking MenDelhi Call girls
 
SIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge GraphSIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge GraphNeo4j
 
New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024
New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024
New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024BookNet Canada
 
Unblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen FramesUnblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen FramesSinan KOZAK
 
CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):comworks
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxMalak Abu Hammad
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Patryk Bandurski
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsMark Billinghurst
 
APIForce Zurich 5 April Automation LPDG
APIForce Zurich 5 April  Automation LPDGAPIForce Zurich 5 April  Automation LPDG
APIForce Zurich 5 April Automation LPDGMarianaLemus7
 
Enhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for PartnersEnhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for PartnersThousandEyes
 
Designing IA for AI - Information Architecture Conference 2024
Designing IA for AI - Information Architecture Conference 2024Designing IA for AI - Information Architecture Conference 2024
Designing IA for AI - Information Architecture Conference 2024Enterprise Knowledge
 
#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024BookNet Canada
 

Recently uploaded (20)

Scanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsScanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL Certs
 
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
 
Maximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxMaximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptx
 
The transition to renewables in India.pdf
The transition to renewables in India.pdfThe transition to renewables in India.pdf
The transition to renewables in India.pdf
 
Unleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubUnleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding Club
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project Setup
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
 
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
 
SIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge GraphSIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge Graph
 
New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024
New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024
New from BookNet Canada for 2024: BNC BiblioShare - Tech Forum 2024
 
Unblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen FramesUnblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen Frames
 
CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptx
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
 
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptxE-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR Systems
 
APIForce Zurich 5 April Automation LPDG
APIForce Zurich 5 April  Automation LPDGAPIForce Zurich 5 April  Automation LPDG
APIForce Zurich 5 April Automation LPDG
 
Enhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for PartnersEnhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for Partners
 
Designing IA for AI - Information Architecture Conference 2024
Designing IA for AI - Information Architecture Conference 2024Designing IA for AI - Information Architecture Conference 2024
Designing IA for AI - Information Architecture Conference 2024
 
#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
#StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
 

Device Modeling Report: Operational Amplifier HA17558

  • 1. Device Modeling Report COMPONENTS: OPERATIONAL AMPLIFIER PART NUMBER: HA17558 MANUFACTURER: RENESAS REMARK TYPE: (OPAMP) Bee Technologies Inc. All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
  • 2. Spice Model All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
  • 3. Output Voltage Swing Simulation result 20V 0V -20V -500mV -250mV 0V 250mV 500mV V(Vout) V_V1 Evaluation circuit Rl oa d 10 k Vo ut U1 OU T1 VCC -IN1 - OU T2 + + IN 1 -IN2 + - VEE + IN 2 HA 175 58 V+ V1 V- 0V dc 15 Vd c -15 Vdc 0 Comparison table Output Voltage Swing Measurement Simulation %Error +Vout(V) 14.000 13.999 -0.007 -Vout(V) -14.000 -13.999 -0.007 All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
  • 4. Input Offset Voltage Simulation result 20V 14V 0V -14V -20V -1.0mV 0V 1.0mV 2.0mV V(Vout) V_Vin Evaluation circuit Rl oa d 2k U1 OU T1 VCC Vo ut -IN1 - OU T2 + + IN 1 -IN2 + - Vi n VEE + IN 2 Vi VO FF = 0 VO FF = 0 HA 175 58 VA MPL = 0 VA MPL = 0 V+ FREQ = 0 FREQ = 0 V- AC = 0 AC = 0 DC = 0 DC = 0 15 Vd c -15 Vdc 0 Comparison table Measurement Simulation %Error Vos(mV) 0.500 0.492 -1.600 All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
  • 5. Slew Rate Simulation result 20V 0V -20V 0s 50us 100us 150us 200us V(Vout) Time Evaluation circuit Vo ut U1 OU T1 VCC -IN1 - OU T2 + + IN 1 -IN2 + - VEE + IN 2 V+ Vi V1 = -1 4 Vi n V2 = 14 HA 175 58 VO FF = 0 TD = 0 .1m 15 Vd c VA MPL = 0 TR = 1 0n FREQ = 0 TF = 10n AC = 0 PW = 1 m V- DC = 0 PE R = 2m -15 Vdc 0 Comparison table Slew Measurement Simulation %Error Rate(v/us) 1.000 1.018 1.800 All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
  • 6. Input current Ib, Ibos Simulation result 60nA 55nA 50nA 45nA 40nA 0s 0.2ms 0.4ms 0.6ms 0.8ms 1.0ms I(Vi) I(Vin) Time Evaluation circuit Vo ut U1 OU T1 VCC -IN1 - OU T2 + + IN 1 -IN2 + - VEE + IN 2 Vi n V+ VO FF = 0 HA 175 58 Vi VA MPL = 0 VO FF = 0 FREQ = 0 15 Vd c VA MPL = 0 AC = 0 V- FREQ = 0 DC = 0 AC = 0 V1 -15 Vdc DC = 0 0.4 92m 0 Comparison table Measurement Simulation %Error Ib(nA) 50.000 50.020 0.040 Ibos(nA) 5.000 5.016 0.318 All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
  • 7. Open Loop Voltage Gain vs. Frequency , Av-dc, f-0dB Simulation result 120 80 40 0 1.0Hz 100Hz 10KHz 1.0MHz 100MHz DB(V(Vout)/V(Vin:+)) Frequency Evaluation circuit RL 2k Vo ut U1 OU T1 VCC -IN1 - OU T2 + + IN 1 -IN2 + - VEE + IN 2 V+ Vi n HA 175 58 Vi VO FF = 0 VO FF = 0 V- 15 Vd c VA MPL = 0 VA MPL = 0 FREQ = 0 FREQ = 0 AC = 0 AC = 1 m -15 Vdc DC = 0 DC = 0 .492 m 0 Comparison table Measurement Simulation %Error f-0dB(MHz) 1.000 1.000 0.000 Av-dc(dB) 104.000 104.069 0.066 All Rights Reserved Copyright (c) Bee Technologies Inc. 2008
  • 8. Common-Mode Rejection Voltage gain Simulation result 20V 10V 0V -10V -20V 0s 1.0s 2.0s 3.0s 4.0s V(Vout) Time Evaluation circuit Vo ut U1 OU T1 VCC -IN1 - OU T2 + + IN 1 -IN2 + - V1 -0.49 2m VEE + IN 2 V+ HA 175 58 V- 15 Vd c V VO FF = 0 -15 Vdc VA MPL = 5 FREQ = 1 AC = 0 DC = 0 0 Common Mode Reject Ratio=20*LOG(159753.3596/(15.835/10)) = 100.0766 dB CMRR Measurement Simulation %Error (dB) 100.000 100.077 0.077 All Rights Reserved Copyright (c) Bee Technologies Inc. 2008