SlideShare ist ein Scribd-Unternehmen logo
1 von 11
Downloaden Sie, um offline zu lesen
Device Modeling Report




COMPONENTS: PHOTOCOUPLER
PART NUMBER: TLP180
MANUFACTURER: TOSHIBA




                Bee Technologies Inc.




 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                1
Equivalent Circuit

      U1
      TLP180




               All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                              2
DIODE MODEL
 PSpice model
                                       Model description
  Parameter
      IS          Saturation Current
      N           Emission Coefficient
      RS          Series Resistance
     IKF          High-injection Knee Current
     CJO          Zero-bias Junction Capacitance
      M           Junction Grading Coefficient
      VJ          Junction Potential
     ISR          Recombination Current Saturation Value
      BV          Reverse Breakdown Voltage(a positive value)
     IBV          Reverse Breakdown Current(a positive value)
      TT          Transit Time

BIPOLAR JUNCTION TRANSISTOR MODEL

 PSpice model
                                      Model description
  parameter
     NR          Reverse Emission Coefficient
      RB         Base Resistance
     RC          Series Collector Resistance
     CJE         Zero-bias Emitter-Base Junction Capacitance
     CJC         Zero-bias Collector-Base Junction Capacitance
      TF         Forward Transit Time
      TR         Reverse Transit Time

VOLTAGE CONTROLLED VOLTAGE SOURCE MODEL (VCVS)
E<Name><(+)Node><(-)Node>VALUE={Expression}
E<Name><(+)Node><(-)Node>TABLE={Expression}

VOLTAGE CONTROLLED CURRENT SOURCE MODEL (VCCS)
E<Name><(+)Node><(-)Node>VALUE={Expression}




         All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                        3
LED IV Curve Characteristics
Simulation result

         1.0A




       100mA




         10mA




       1.0mA
           0.6V 0.8V               1.2V       1.6V           2.0V   2.4V   2.8V
               I(IF)
                                                     V(VF)



Evaluation circuit

                                          U1
                                          TLP180
                         VF




                                                                     VCE
                              IF                                     5V




                          0




                All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                                  4
Comparison Graph
Simulation result


                                             1000
                                                            Measurement
                                                            Simulation
        Pulse Forward Current : I FP (mA)




                                              100




                                               10




                                                1
                                                    0.6       1           1.4       1.8        2.2         2.6       3

                                                                    Pulse Forward Voltage : V FP (V)



Comparison table

                                                                                VFP (V)
                                            IFP (mA)                                                             %Error
                                                              Measurement                 Simulation
                                                    1.000                   1.020                      1.014        -0.59
                                                    2.000                   1.055                      1.050        -0.47
                                                    5.000                   1.100                      1.101         0.09
                                                10.000                      1.140                      1.147         0.61
                                                20.000                      1.196                      1.203         0.59
                                                50.000                      1.300                      1.308         0.62
                                               100.000                      1.420                      1.425         0.35
                                               200.000                      1.620                      1.598        -1.36
                                               500.000                      2.000                      2.007         0.35




                                              All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                                                                            5
Collector−Emitter Saturation Voltage Characteristics
Simulation result

        400mV




        300mV




        200mV




        100mV




           0V
                0s                                                             1.0us
                     V(C)
                                                Time



Evaluation circuit

                                       U1
                                       TLP180
                                                       C




                                 IF                              IC
                                 8mA                             2.4mA




                             0


Comparison table

   Condition: IF = 8mA, IC = 2.4mA
      Symbol         Unit      Measurement                 Simulation          %Error
       VCE(sat)             mV         0.400[Max.]                 0.203         -




                All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                                        6
CTR (Current Transfer Ratio) Characteristics
Simulation result

        1.0K




         100




          10
          100uA                 1.0mA                       10mA              100mA
              100*(I(IC)/I(IF))
                                             I_IF



Evaluation circuit

                                    U1
                                                       IC
                                    TLP180




                                                                   VCE
                             IF                                    5V




                         0




               All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                                      7
Comparison Graph
Simulation result


                                  1000
                                               Measurement
                                               Simulation
         Current Transfer Ratio
                IC /IF (%)




                                  100




                                    10
                                         0.1                 1                     10             100

                                                            Forward Current : I F (mA)



Comparison table

                                                                 IC/IF (%)
                      IF (mA)                                                                 %Error
                                                Measurement                  Simulation
                                     0.100                   22.000                  22.102       0.46
                                     0.200                   41.000                  42.255       3.06
                                     0.500                   90.000                  92.722       3.02
                                     1.000                  140.000                136.297       -2.65
                                     2.000                  180.000                178.932       -0.59
                                     5.000                  210.000                204.643       -2.55
                                    10.000                  227.000                227.123        0.05
                                    14.000                  225.000                217.699       -3.24
                                    20.000                  180.000                173.328       -3.71
                                    30.000                  132.000                130.780       -0.92
                                    40.000                  105.000                105.635        0.60
                                    50.000                   90.000                  88.799      -1.33

                                  All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                                                         8
Switching Time Characteristics
Simulation result

            24mA            9.0V
       1                2

            16mA            8.0V                       IF= 16mA

             8mA            7.0V

                 0A         6.0V

            -8mA            5.0V

           -16mA            4.0V                     VCE

           -24mA            3.0V

           -32mA            2.0V

           -40mA            1.0V

           -48mA              0V
                               >>
           -56mA            -1.0V
                               100us           150us         200us          250us          300us    350us
                                  1        I(IF) 2        V(VC)
                                                                     Time



Evaluation circuit

                                                       U1
                                                       TLP180
                                                                              VC


                                                                                    RL
                                                                                    1.9k
                              I1 = 0
                              I2 = 16mA         IF
                              TD = 50us
                              TF = 10ns                                             VCC
                              TR = 10ns                                             5V
                              PW = 100us
                              PER = 10ms




                                            0



Comparison table

   Condition: VCC = 5V, RL = 1.9kΩ, IF = 16mA
      Symbol         Unit     Measurement                               Simulation                 %Error
            tS                 us                         25.000                    24.966            -0.14
           tOFF                us                         40.000                    40.265             0.66




                      All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                                                              9
Output Characteristics
Simulation result

        30mA




                                                                      50mA
                                                                                      40mA
                                                                                      30mA
        20mA

                                                                             20mA


                                                                             10mA

        10mA


                                                                             5mA

                                                                         IF= 2mA

          0A
               0V          0.2V        0.4V            0.6V       0.8V         1.0V
                    I(C)
                                               V_VCE



Evaluation circuit

                                      U1
                                                        C
                                      TLP180




                                                                VCE
                                IF




                            0




                All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                                             10
Output Characteristics                                     Reference




          All Rights Reserved Copyright (c) Bee Technologies Inc. 2012
                                                                         11

Weitere ähnliche Inhalte

Was ist angesagt?

SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)
SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)
SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)
Tsuyoshi Horigome
 

Was ist angesagt? (19)

SPICE MODEL of TPCA8022-H (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TPCA8022-H (Standard+BDS Model) in SPICE PARKSPICE MODEL of TPCA8022-H (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TPCA8022-H (Standard+BDS Model) in SPICE PARK
 
LTspice Model of E-501(SEMITEC)
LTspice Model of E-501(SEMITEC)LTspice Model of E-501(SEMITEC)
LTspice Model of E-501(SEMITEC)
 
MTM23223 LTspice Model (Free SPICE Model)
MTM23223 LTspice Model (Free SPICE Model)MTM23223 LTspice Model (Free SPICE Model)
MTM23223 LTspice Model (Free SPICE Model)
 
SPICE MODEL of TPCA8022-H (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPCA8022-H (Professional+BDP Model) in SPICE PARKSPICE MODEL of TPCA8022-H (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPCA8022-H (Professional+BDP Model) in SPICE PARK
 
SPICE Model of TA7291P
SPICE Model of TA7291PSPICE Model of TA7291P
SPICE Model of TA7291P
 
SPICE MODEL of TK15A50D (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TK15A50D (Professional+BDP Model) in SPICE PARKSPICE MODEL of TK15A50D (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TK15A50D (Professional+BDP Model) in SPICE PARK
 
Buck Converter using PSpice
Buck Converter using PSpiceBuck Converter using PSpice
Buck Converter using PSpice
 
SPICE MODEL of 2SA1955FV-B in SPICE PARK
SPICE MODEL of 2SA1955FV-B in SPICE PARKSPICE MODEL of 2SA1955FV-B in SPICE PARK
SPICE MODEL of 2SA1955FV-B in SPICE PARK
 
SPICE MODEL of TPC8119 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPC8119 (Professional+BDP Model) in SPICE PARKSPICE MODEL of TPC8119 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPC8119 (Professional+BDP Model) in SPICE PARK
 
SPICE MODEL of TK70X04K3 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK70X04K3 (Standard+BDS Model) in SPICE PARKSPICE MODEL of TK70X04K3 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK70X04K3 (Standard+BDS Model) in SPICE PARK
 
SPICE MODEL of TK10A50D (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK10A50D (Standard+BDS Model) in SPICE PARKSPICE MODEL of TK10A50D (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK10A50D (Standard+BDS Model) in SPICE PARK
 
SPICE MODEL of TK15A50D (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK15A50D (Standard+BDS Model) in SPICE PARKSPICE MODEL of TK15A50D (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK15A50D (Standard+BDS Model) in SPICE PARK
 
Buck Converter using LTspice
Buck Converter using LTspiceBuck Converter using LTspice
Buck Converter using LTspice
 
SPICE MODEL of TK70X04K3 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TK70X04K3 (Professional+BDP Model) in SPICE PARKSPICE MODEL of TK70X04K3 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TK70X04K3 (Professional+BDP Model) in SPICE PARK
 
SPICE MODEL of TPC8109 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TPC8109 (Standard+BDS Model) in SPICE PARKSPICE MODEL of TPC8109 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TPC8109 (Standard+BDS Model) in SPICE PARK
 
Blow time current function(Device Modeling of Fuse)
Blow time   current function(Device Modeling of Fuse)Blow time   current function(Device Modeling of Fuse)
Blow time current function(Device Modeling of Fuse)
 
SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)
SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)
SSM3K15AMFV (Standard Model) PSpice Model (Free SPICE Model)
 
SPICE MODEL of TK12A60U (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK12A60U (Standard+BDS Model) in SPICE PARKSPICE MODEL of TK12A60U (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK12A60U (Standard+BDS Model) in SPICE PARK
 
SPICE MODEL of TK8A50D (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK8A50D (Standard+BDS Model) in SPICE PARKSPICE MODEL of TK8A50D (Standard+BDS Model) in SPICE PARK
SPICE MODEL of TK8A50D (Standard+BDS Model) in SPICE PARK
 

Andere mochten auch

Free Spice Model List by Spice Park (23APR2015)
Free Spice Model List by Spice Park (23APR2015)Free Spice Model List by Spice Park (23APR2015)
Free Spice Model List by Spice Park (23APR2015)
Tsuyoshi Horigome
 
TLP3120 PSpice Model (Free SPICE Model)
TLP3120 PSpice Model  (Free SPICE Model)TLP3120 PSpice Model  (Free SPICE Model)
TLP3120 PSpice Model (Free SPICE Model)
Tsuyoshi Horigome
 
TLP172A PSpice Model (Free SPICE Model)
TLP172A PSpice Model  (Free SPICE Model)TLP172A PSpice Model  (Free SPICE Model)
TLP172A PSpice Model (Free SPICE Model)
Tsuyoshi Horigome
 
Spice Park 257 Free Spice Model 15 JUN2015
Spice Park 257 Free Spice Model 15 JUN2015Spice Park 257 Free Spice Model 15 JUN2015
Spice Park 257 Free Spice Model 15 JUN2015
Tsuyoshi Horigome
 

Andere mochten auch (20)

SPICE Model of Photocoupler in SPICE PARK
SPICE Model of Photocoupler in SPICE PARKSPICE Model of Photocoupler in SPICE PARK
SPICE Model of Photocoupler in SPICE PARK
 
Free Spice Model List by Spice Park (23APR2015)
Free Spice Model List by Spice Park (23APR2015)Free Spice Model List by Spice Park (23APR2015)
Free Spice Model List by Spice Park (23APR2015)
 
TLP3120 PSpice Model (Free SPICE Model)
TLP3120 PSpice Model  (Free SPICE Model)TLP3120 PSpice Model  (Free SPICE Model)
TLP3120 PSpice Model (Free SPICE Model)
 
TLP180のスパイスモデルの開発方針
TLP180のスパイスモデルの開発方針TLP180のスパイスモデルの開発方針
TLP180のスパイスモデルの開発方針
 
Type of SPICE MODEL of Photocoupler
Type of SPICE MODEL of PhotocouplerType of SPICE MODEL of Photocoupler
Type of SPICE MODEL of Photocoupler
 
TLP172A PSpice Model (Free SPICE Model)
TLP172A PSpice Model  (Free SPICE Model)TLP172A PSpice Model  (Free SPICE Model)
TLP172A PSpice Model (Free SPICE Model)
 
All List of SPICE PARK AUG2015 4,412 models
All List of SPICE PARK AUG2015  4,412 modelsAll List of SPICE PARK AUG2015  4,412 models
All List of SPICE PARK AUG2015 4,412 models
 
Spice Park 257 Free Spice Model 15 JUN2015
Spice Park 257 Free Spice Model 15 JUN2015Spice Park 257 Free Spice Model 15 JUN2015
Spice Park 257 Free Spice Model 15 JUN2015
 
LTspiceのコイルモデル
LTspiceのコイルモデルLTspiceのコイルモデル
LTspiceのコイルモデル
 
IGBTモデリングサービスに必要な電気的特性
IGBTモデリングサービスに必要な電気的特性IGBTモデリングサービスに必要な電気的特性
IGBTモデリングサービスに必要な電気的特性
 
IGBTモデリングサービスの概要
IGBTモデリングサービスの概要IGBTモデリングサービスの概要
IGBTモデリングサービスの概要
 
コンデンサの回路図シンボルの作成方法(LTspice)
コンデンサの回路図シンボルの作成方法(LTspice)コンデンサの回路図シンボルの作成方法(LTspice)
コンデンサの回路図シンボルの作成方法(LTspice)
 
Desnutricion proteico calorica
Desnutricion proteico caloricaDesnutricion proteico calorica
Desnutricion proteico calorica
 
電気通信大学 VBセミナー 回路シミュレータの活用方法
電気通信大学 VBセミナー 回路シミュレータの活用方法電気通信大学 VBセミナー 回路シミュレータの活用方法
電気通信大学 VBセミナー 回路シミュレータの活用方法
 
ビー・テクノロジーの事業内容(26FEB2013)
ビー・テクノロジーの事業内容(26FEB2013)ビー・テクノロジーの事業内容(26FEB2013)
ビー・テクノロジーの事業内容(26FEB2013)
 
二次電池モデルのご提供方法
二次電池モデルのご提供方法二次電池モデルのご提供方法
二次電池モデルのご提供方法
 
キャパシタモデルのご提供方法
キャパシタモデルのご提供方法キャパシタモデルのご提供方法
キャパシタモデルのご提供方法
 
ビー・テクノロジーの製品のラインナップ(21版)
ビー・テクノロジーの製品のラインナップ(21版)ビー・テクノロジーの製品のラインナップ(21版)
ビー・テクノロジーの製品のラインナップ(21版)
 
シンプルモデルとは
シンプルモデルとはシンプルモデルとは
シンプルモデルとは
 
2015年5月号トランジスタ技術 GaN FETのモデリングとシミュレーション
2015年5月号トランジスタ技術 GaN FETのモデリングとシミュレーション2015年5月号トランジスタ技術 GaN FETのモデリングとシミュレーション
2015年5月号トランジスタ技術 GaN FETのモデリングとシミュレーション
 

Ähnlich wie TLP180のスパイスモデル

Ähnlich wie TLP180のスパイスモデル (20)

SPICE MODEL of TLP732 in SPICE PARK
SPICE MODEL of TLP732 in SPICE PARKSPICE MODEL of TLP732 in SPICE PARK
SPICE MODEL of TLP732 in SPICE PARK
 
SPICE MODEL of TLP281 in SPICE PARK
SPICE MODEL of TLP281 in SPICE PARKSPICE MODEL of TLP281 in SPICE PARK
SPICE MODEL of TLP281 in SPICE PARK
 
SPICE MODEL of TLP632 in SPICE PARK
SPICE MODEL of TLP632 in SPICE PARKSPICE MODEL of TLP632 in SPICE PARK
SPICE MODEL of TLP632 in SPICE PARK
 
SPICE MODEL of XBS104V14R (Standard Model) in SPICE PARK
SPICE MODEL of XBS104V14R (Standard Model) in SPICE PARKSPICE MODEL of XBS104V14R (Standard Model) in SPICE PARK
SPICE MODEL of XBS104V14R (Standard Model) in SPICE PARK
 
SPICE MODEL of XBS203V17R (Professional Model) in SPICE PARK
SPICE MODEL of XBS203V17R (Professional Model) in SPICE PARKSPICE MODEL of XBS203V17R (Professional Model) in SPICE PARK
SPICE MODEL of XBS203V17R (Professional Model) in SPICE PARK
 
SPICE MODEL of RN1902AFS in SPICE PARK
SPICE MODEL of RN1902AFS in SPICE PARKSPICE MODEL of RN1902AFS in SPICE PARK
SPICE MODEL of RN1902AFS in SPICE PARK
 
SPICE MODEL of XBS203V17R (Standard Model) in SPICE PARK
SPICE MODEL of XBS203V17R (Standard Model) in SPICE PARKSPICE MODEL of XBS203V17R (Standard Model) in SPICE PARK
SPICE MODEL of XBS203V17R (Standard Model) in SPICE PARK
 
SPICE MODEL of SDT10S60 (Professional Model) in SPICE PARK
SPICE MODEL of SDT10S60 (Professional Model) in SPICE PARKSPICE MODEL of SDT10S60 (Professional Model) in SPICE PARK
SPICE MODEL of SDT10S60 (Professional Model) in SPICE PARK
 
SPICE MODEL of XBS303V17R (Standard Model) in SPICE PARK
SPICE MODEL of XBS303V17R (Standard Model) in SPICE PARKSPICE MODEL of XBS303V17R (Standard Model) in SPICE PARK
SPICE MODEL of XBS303V17R (Standard Model) in SPICE PARK
 
SPICE MODEL of KBU810 (Professional Model) in SPICE PARK
SPICE MODEL of KBU810 (Professional Model) in SPICE PARKSPICE MODEL of KBU810 (Professional Model) in SPICE PARK
SPICE MODEL of KBU810 (Professional Model) in SPICE PARK
 
SPICE MODEL of IDV05S60C (Professional Model) in SPICE PARK
SPICE MODEL of IDV05S60C (Professional Model) in SPICE PARKSPICE MODEL of IDV05S60C (Professional Model) in SPICE PARK
SPICE MODEL of IDV05S60C (Professional Model) in SPICE PARK
 
SPICE MODEL of IDD09SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD09SG60C (Professional Model) in SPICE PARKSPICE MODEL of IDD09SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD09SG60C (Professional Model) in SPICE PARK
 
SPICE MODEL of TLP320 in SPICE PARK
SPICE MODEL of TLP320 in SPICE PARKSPICE MODEL of TLP320 in SPICE PARK
SPICE MODEL of TLP320 in SPICE PARK
 
SPICE MODEL of IDD12SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD12SG60C (Professional Model) in SPICE PARKSPICE MODEL of IDD12SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD12SG60C (Professional Model) in SPICE PARK
 
SPICE MODEL of IDV06S60C (Professional Model) in SPICE PARK
SPICE MODEL of IDV06S60C (Professional Model) in SPICE PARKSPICE MODEL of IDV06S60C (Professional Model) in SPICE PARK
SPICE MODEL of IDV06S60C (Professional Model) in SPICE PARK
 
SPICE MODEL of IDV04S60C (Professional Model) in SPICE PARK
SPICE MODEL of IDV04S60C (Professional Model) in SPICE PARKSPICE MODEL of IDV04S60C (Professional Model) in SPICE PARK
SPICE MODEL of IDV04S60C (Professional Model) in SPICE PARK
 
SPICE MODEL of IDH10S120 (Professional Model) in SPICE PARK
SPICE MODEL of IDH10S120 (Professional Model) in SPICE PARKSPICE MODEL of IDH10S120 (Professional Model) in SPICE PARK
SPICE MODEL of IDH10S120 (Professional Model) in SPICE PARK
 
SPICE MODEL of TLP620 in SPICE PARK
SPICE MODEL of TLP620 in SPICE PARKSPICE MODEL of TLP620 in SPICE PARK
SPICE MODEL of TLP620 in SPICE PARK
 
SPICE MODEL of IDD10SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD10SG60C (Professional Model) in SPICE PARKSPICE MODEL of IDD10SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD10SG60C (Professional Model) in SPICE PARK
 
SPICE MODEL of C2D10120D (Professional Model) in SPICE PARK
SPICE MODEL of C2D10120D (Professional Model) in SPICE PARKSPICE MODEL of C2D10120D (Professional Model) in SPICE PARK
SPICE MODEL of C2D10120D (Professional Model) in SPICE PARK
 

Mehr von Tsuyoshi Horigome

Mehr von 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
 

Kürzlich hochgeladen

Architecting Cloud Native Applications
Architecting Cloud Native ApplicationsArchitecting Cloud Native Applications
Architecting Cloud Native Applications
WSO2
 
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
?#DUbAI#??##{{(☎️+971_581248768%)**%*]'#abortion pills for sale in dubai@
 

Kürzlich hochgeladen (20)

Manulife - Insurer Transformation Award 2024
Manulife - Insurer Transformation Award 2024Manulife - Insurer Transformation Award 2024
Manulife - Insurer Transformation Award 2024
 
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
 
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data DiscoveryTrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024
 
Automating Google Workspace (GWS) & more with Apps Script
Automating Google Workspace (GWS) & more with Apps ScriptAutomating Google Workspace (GWS) & more with Apps Script
Automating Google Workspace (GWS) & more with Apps Script
 
Strategies for Landing an Oracle DBA Job as a Fresher
Strategies for Landing an Oracle DBA Job as a FresherStrategies for Landing an Oracle DBA Job as a Fresher
Strategies for Landing an Oracle DBA Job as a Fresher
 
Corporate and higher education May webinar.pptx
Corporate and higher education May webinar.pptxCorporate and higher education May webinar.pptx
Corporate and higher education May webinar.pptx
 
Real Time Object Detection Using Open CV
Real Time Object Detection Using Open CVReal Time Object Detection Using Open CV
Real Time Object Detection Using Open CV
 
A Beginners Guide to Building a RAG App Using Open Source Milvus
A Beginners Guide to Building a RAG App Using Open Source MilvusA Beginners Guide to Building a RAG App Using Open Source Milvus
A Beginners Guide to Building a RAG App Using Open Source Milvus
 
Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...
Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...
Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
 
Ransomware_Q4_2023. The report. [EN].pdf
Ransomware_Q4_2023. The report. [EN].pdfRansomware_Q4_2023. The report. [EN].pdf
Ransomware_Q4_2023. The report. [EN].pdf
 
Navi Mumbai Call Girls 🥰 8617370543 Service Offer VIP Hot Model
Navi Mumbai Call Girls 🥰 8617370543 Service Offer VIP Hot ModelNavi Mumbai Call Girls 🥰 8617370543 Service Offer VIP Hot Model
Navi Mumbai Call Girls 🥰 8617370543 Service Offer VIP Hot Model
 
EMPOWERMENT TECHNOLOGY GRADE 11 QUARTER 2 REVIEWER
EMPOWERMENT TECHNOLOGY GRADE 11 QUARTER 2 REVIEWEREMPOWERMENT TECHNOLOGY GRADE 11 QUARTER 2 REVIEWER
EMPOWERMENT TECHNOLOGY GRADE 11 QUARTER 2 REVIEWER
 
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemkeProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
 
Architecting Cloud Native Applications
Architecting Cloud Native ApplicationsArchitecting Cloud Native Applications
Architecting Cloud Native Applications
 
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
+971581248768>> SAFE AND ORIGINAL ABORTION PILLS FOR SALE IN DUBAI AND ABUDHA...
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processors
 
ICT role in 21st century education and its challenges
ICT role in 21st century education and its challengesICT role in 21st century education and its challenges
ICT role in 21st century education and its challenges
 
"I see eyes in my soup": How Delivery Hero implemented the safety system for ...
"I see eyes in my soup": How Delivery Hero implemented the safety system for ..."I see eyes in my soup": How Delivery Hero implemented the safety system for ...
"I see eyes in my soup": How Delivery Hero implemented the safety system for ...
 

TLP180のスパイスモデル

  • 1. Device Modeling Report COMPONENTS: PHOTOCOUPLER PART NUMBER: TLP180 MANUFACTURER: TOSHIBA Bee Technologies Inc. All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 1
  • 2. Equivalent Circuit U1 TLP180 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 2
  • 3. DIODE MODEL PSpice model Model description Parameter IS Saturation Current N Emission Coefficient RS Series Resistance IKF High-injection Knee Current CJO Zero-bias Junction Capacitance M Junction Grading Coefficient VJ Junction Potential ISR Recombination Current Saturation Value BV Reverse Breakdown Voltage(a positive value) IBV Reverse Breakdown Current(a positive value) TT Transit Time BIPOLAR JUNCTION TRANSISTOR MODEL PSpice model Model description parameter NR Reverse Emission Coefficient RB Base Resistance RC Series Collector Resistance CJE Zero-bias Emitter-Base Junction Capacitance CJC Zero-bias Collector-Base Junction Capacitance TF Forward Transit Time TR Reverse Transit Time VOLTAGE CONTROLLED VOLTAGE SOURCE MODEL (VCVS) E<Name><(+)Node><(-)Node>VALUE={Expression} E<Name><(+)Node><(-)Node>TABLE={Expression} VOLTAGE CONTROLLED CURRENT SOURCE MODEL (VCCS) E<Name><(+)Node><(-)Node>VALUE={Expression} All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 3
  • 4. LED IV Curve Characteristics Simulation result 1.0A 100mA 10mA 1.0mA 0.6V 0.8V 1.2V 1.6V 2.0V 2.4V 2.8V I(IF) V(VF) Evaluation circuit U1 TLP180 VF VCE IF 5V 0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 4
  • 5. Comparison Graph Simulation result 1000 Measurement Simulation Pulse Forward Current : I FP (mA) 100 10 1 0.6 1 1.4 1.8 2.2 2.6 3 Pulse Forward Voltage : V FP (V) Comparison table VFP (V) IFP (mA) %Error Measurement Simulation 1.000 1.020 1.014 -0.59 2.000 1.055 1.050 -0.47 5.000 1.100 1.101 0.09 10.000 1.140 1.147 0.61 20.000 1.196 1.203 0.59 50.000 1.300 1.308 0.62 100.000 1.420 1.425 0.35 200.000 1.620 1.598 -1.36 500.000 2.000 2.007 0.35 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 5
  • 6. Collector−Emitter Saturation Voltage Characteristics Simulation result 400mV 300mV 200mV 100mV 0V 0s 1.0us V(C) Time Evaluation circuit U1 TLP180 C IF IC 8mA 2.4mA 0 Comparison table Condition: IF = 8mA, IC = 2.4mA Symbol Unit Measurement Simulation %Error VCE(sat) mV 0.400[Max.] 0.203 - All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 6
  • 7. CTR (Current Transfer Ratio) Characteristics Simulation result 1.0K 100 10 100uA 1.0mA 10mA 100mA 100*(I(IC)/I(IF)) I_IF Evaluation circuit U1 IC TLP180 VCE IF 5V 0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 7
  • 8. Comparison Graph Simulation result 1000 Measurement Simulation Current Transfer Ratio IC /IF (%) 100 10 0.1 1 10 100 Forward Current : I F (mA) Comparison table IC/IF (%) IF (mA) %Error Measurement Simulation 0.100 22.000 22.102 0.46 0.200 41.000 42.255 3.06 0.500 90.000 92.722 3.02 1.000 140.000 136.297 -2.65 2.000 180.000 178.932 -0.59 5.000 210.000 204.643 -2.55 10.000 227.000 227.123 0.05 14.000 225.000 217.699 -3.24 20.000 180.000 173.328 -3.71 30.000 132.000 130.780 -0.92 40.000 105.000 105.635 0.60 50.000 90.000 88.799 -1.33 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 8
  • 9. Switching Time Characteristics Simulation result 24mA 9.0V 1 2 16mA 8.0V IF= 16mA 8mA 7.0V 0A 6.0V -8mA 5.0V -16mA 4.0V VCE -24mA 3.0V -32mA 2.0V -40mA 1.0V -48mA 0V >> -56mA -1.0V 100us 150us 200us 250us 300us 350us 1 I(IF) 2 V(VC) Time Evaluation circuit U1 TLP180 VC RL 1.9k I1 = 0 I2 = 16mA IF TD = 50us TF = 10ns VCC TR = 10ns 5V PW = 100us PER = 10ms 0 Comparison table Condition: VCC = 5V, RL = 1.9kΩ, IF = 16mA Symbol Unit Measurement Simulation %Error tS us 25.000 24.966 -0.14 tOFF us 40.000 40.265 0.66 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 9
  • 10. Output Characteristics Simulation result 30mA 50mA 40mA 30mA 20mA 20mA 10mA 10mA 5mA IF= 2mA 0A 0V 0.2V 0.4V 0.6V 0.8V 1.0V I(C) V_VCE Evaluation circuit U1 C TLP180 VCE IF 0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 10
  • 11. Output Characteristics Reference All Rights Reserved Copyright (c) Bee Technologies Inc. 2012 11