SlideShare une entreprise Scribd logo
1  sur  18
Lithium Ion Battery Simplified SPICE Behavioral Model All Rights Reserved Copyright (C) Bee Technologies Corporation 2011
Contents ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011
1. Benefit of the Model ,[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011
[object Object],[object Object],[object Object],2. Model Feature All Rights Reserved Copyright (C) Bee Technologies Corporation 2011
3. Concept of the Model ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 + - Output  Characteristics
4. Parameter Settings ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 Model Parameters: (Default values)
5. Li-Ion Battery Specification (Example) ,[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 Battery capacity is input as a model parameter Nominal Voltage 3.7V Nominal Capacity Typical 1400mAh (0.2C discharge) Charging Voltage 4.20V ± 0.05V Charging Std. Current 700mA Max Current  Charge 1400mA Discharge 2800mA Discharge cut-off voltage 2.75V
5.1 Charge Time Characteristic ,[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 Current=700mA Voltage=4.20V Capacity=100% (minute) Measurement Simulation SOC=0 means battery start from 0% of capacity (empty)
5.1  Charge Time Characteristic     Simulation Circuit and Setting ,[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 1 minute in seconds Over-Voltage Protector:  (Charging Voltage*1) - V F of D1 Input Voltage
5.2 Discharge Time Characteristic ,[object Object],[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 0.2C 0.5C 1C (minute) TSCALE turns 1 minute in seconds, battery starts from 100% of capacity (fully charged) ,[object Object]
5.3 V bat  vs. SOC Characteristic ,[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 0.5C 0.2C 1C Measurement Simulation Simulation
5.3 V bat  vs. SOC Characteristic     Simulation Circuit and Setting ,[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 1 minute in seconds
6.  Extend the number of Cell (Example) ,[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 The number of cells in series is input as a model parameter Basic Specification Li-ion needs 4 cells to reach this voltage level ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
6.1 Charge Time Characteristic, NS=4 ,[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 Current=880mA Voltage=16.8V Capacity=100% (hour) The battery needs 5 hours to be fully charged
6.1  Charge Time Characteristic, NS=4       Simulation Circuit and Setting ,[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 1 Hour in seconds Input Voltage Over-Voltage Protector:  (Charging Voltage*4) - V F of D1
6.2 Discharge Time Characteristic, NS=4 ,[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 (hour) 0.5C 1C 16.4V 12.8V Output voltage range
6.2  Discharge Time Characteristic, NS=4       Simulation Circuit and Setting ,[object Object],[object Object],[object Object],[object Object],All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 1 Hour in seconds Parametric sweep “rate”
Simulation Index All Rights Reserved Copyright (C) Bee Technologies Corporation 2011 Simulations Folder name ,[object Object],[object Object],[object Object],[object Object],[object Object],Charge_Time Discharge_Time Discharge_SOC Charge_Time(NS) Discharge_Time(NS)

Contenu connexe

Tendances

Device Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink ModelDevice Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink ModelTsuyoshi Horigome
 
Device Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink ModelDevice Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink ModelTsuyoshi Horigome
 
Lithium Ion Capacitor Simplified Simulink Model using MATLAB
Lithium Ion Capacitor Simplified Simulink Model using MATLABLithium Ion Capacitor Simplified Simulink Model using MATLAB
Lithium Ion Capacitor Simplified Simulink Model using MATLABTsuyoshi Horigome
 
Concept of modeling of Lithium ion batteries (v1)
Concept of modeling of Lithium ion batteries (v1)Concept of modeling of Lithium ion batteries (v1)
Concept of modeling of Lithium ion batteries (v1)Tsuyoshi Horigome
 
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
LiFePO4 BatterySimplified SPICE Behavioral Model(PSpice Version)LiFePO4 BatterySimplified SPICE Behavioral Model(PSpice Version)
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)Tsuyoshi Horigome
 
PSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーションPSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーションTsuyoshi Horigome
 
Lead-Acid Battery Simplified Simulink Model using MATLAB
Lead-Acid Battery Simplified Simulink Model using MATLAB Lead-Acid Battery Simplified Simulink Model using MATLAB
Lead-Acid Battery Simplified Simulink Model using MATLAB Tsuyoshi Horigome
 
Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...
Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...
Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...Tsuyoshi Horigome
 
Simple model of Lithium Ion Battery (PSpice)
Simple model of Lithium Ion Battery (PSpice)Simple model of Lithium Ion Battery (PSpice)
Simple model of Lithium Ion Battery (PSpice)Tsuyoshi Horigome
 
How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...
How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...
How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...Tsuyoshi Horigome
 
Lithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLABLithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLABTsuyoshi Horigome
 
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)Tsuyoshi Horigome
 
Lithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLABLithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLABTsuyoshi Horigome
 
リチウムイオンキャパシタのシンプルモデル(PSpice)
リチウムイオンキャパシタのシンプルモデル(PSpice)リチウムイオンキャパシタのシンプルモデル(PSpice)
リチウムイオンキャパシタのシンプルモデル(PSpice)Tsuyoshi Horigome
 
鉛蓄電池のシンプルモデル(LTspice)
鉛蓄電池のシンプルモデル(LTspice)鉛蓄電池のシンプルモデル(LTspice)
鉛蓄電池のシンプルモデル(LTspice)spicepark
 
リチウムイオンキャパシタのシンプルモデル(LTspice)
リチウムイオンキャパシタのシンプルモデル(LTspice)リチウムイオンキャパシタのシンプルモデル(LTspice)
リチウムイオンキャパシタのシンプルモデル(LTspice)Tsuyoshi Horigome
 
How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...
How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...
How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...Tsuyoshi Horigome
 
DC/AC 3-Phase Inverter (PSpice Model)
DC/AC 3-Phase Inverter (PSpice Model) DC/AC 3-Phase Inverter (PSpice Model)
DC/AC 3-Phase Inverter (PSpice Model) Tsuyoshi Horigome
 

Tendances (19)

Device Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink ModelDevice Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink Model
 
Device Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink ModelDevice Modeling of Li-Ion battery MATLAB/Simulink Model
Device Modeling of Li-Ion battery MATLAB/Simulink Model
 
Lithium Ion Capacitor Simplified Simulink Model using MATLAB
Lithium Ion Capacitor Simplified Simulink Model using MATLABLithium Ion Capacitor Simplified Simulink Model using MATLAB
Lithium Ion Capacitor Simplified Simulink Model using MATLAB
 
Concept of modeling of Lithium ion batteries (v1)
Concept of modeling of Lithium ion batteries (v1)Concept of modeling of Lithium ion batteries (v1)
Concept of modeling of Lithium ion batteries (v1)
 
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
LiFePO4 BatterySimplified SPICE Behavioral Model(PSpice Version)LiFePO4 BatterySimplified SPICE Behavioral Model(PSpice Version)
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
 
PSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーションPSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーション
 
Lead-Acid Battery Simplified Simulink Model using MATLAB
Lead-Acid Battery Simplified Simulink Model using MATLAB Lead-Acid Battery Simplified Simulink Model using MATLAB
Lead-Acid Battery Simplified Simulink Model using MATLAB
 
Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...
Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...
Lithium Ion Phosphate(Li-FePO4) Battery Simplified SPICE Behavioral Model(LTs...
 
Simple model of Lithium Ion Battery (PSpice)
Simple model of Lithium Ion Battery (PSpice)Simple model of Lithium Ion Battery (PSpice)
Simple model of Lithium Ion Battery (PSpice)
 
How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...
How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...
How to Design of Power Management of Hybrid Circuit(Battery and EDLC) using L...
 
Lithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLABLithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLAB
 
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
LiFePO4 Battery Simplified SPICE Behavioral Model(PSpice Version)
 
Lithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLABLithium Ion Battery Simplified Simulink Model using MATLAB
Lithium Ion Battery Simplified Simulink Model using MATLAB
 
リチウムイオンキャパシタのシンプルモデル(PSpice)
リチウムイオンキャパシタのシンプルモデル(PSpice)リチウムイオンキャパシタのシンプルモデル(PSpice)
リチウムイオンキャパシタのシンプルモデル(PSpice)
 
鉛蓄電池のシンプルモデル(LTspice)
鉛蓄電池のシンプルモデル(LTspice)鉛蓄電池のシンプルモデル(LTspice)
鉛蓄電池のシンプルモデル(LTspice)
 
Simple Model for MATLAB
Simple Model for MATLABSimple Model for MATLAB
Simple Model for MATLAB
 
リチウムイオンキャパシタのシンプルモデル(LTspice)
リチウムイオンキャパシタのシンプルモデル(LTspice)リチウムイオンキャパシタのシンプルモデル(LTspice)
リチウムイオンキャパシタのシンプルモデル(LTspice)
 
How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...
How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...
How to Design of Power Management of Hybrid Circuit(Li-Ion Battery and Li-Ion...
 
DC/AC 3-Phase Inverter (PSpice Model)
DC/AC 3-Phase Inverter (PSpice Model) DC/AC 3-Phase Inverter (PSpice Model)
DC/AC 3-Phase Inverter (PSpice Model)
 

Similaire à 3.リチウムイオン電池のスパイスモデル

4.ニッケル水素電池のスパイスモデル
4.ニッケル水素電池のスパイスモデル4.ニッケル水素電池のスパイスモデル
4.ニッケル水素電池のスパイスモデルTsuyoshi Horigome
 
Li-ion Capacitor Model (Simplified Model) PSpice Version
Li-ion Capacitor Model (Simplified Model) PSpice VersionLi-ion Capacitor Model (Simplified Model) PSpice Version
Li-ion Capacitor Model (Simplified Model) PSpice VersionTsuyoshi Horigome
 
Li-ion Capacitor Model (Simplified Model) LTspice Version
Li-ion Capacitor Model (Simplified Model) LTspice VersionLi-ion Capacitor Model (Simplified Model) LTspice Version
Li-ion Capacitor Model (Simplified Model) LTspice VersionTsuyoshi Horigome
 
SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料
SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料
SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料spicepark
 
PSpiceを活用した太陽光システムシミュレーション
PSpiceを活用した太陽光システムシミュレーションPSpiceを活用した太陽光システムシミュレーション
PSpiceを活用した太陽光システムシミュレーションTsuyoshi Horigome
 
Simple Model of Lead-Acid Battery Model using LTspice
Simple Model of Lead-Acid Battery Model using LTspiceSimple Model of Lead-Acid Battery Model using LTspice
Simple Model of Lead-Acid Battery Model using LTspicespicepark
 
PSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーションPSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーションTsuyoshi Horigome
 
Electric Double-Layer Capacitor(EDLC) Simulink Model using MATLAB
Electric Double-Layer Capacitor(EDLC) Simulink Model using MATLABElectric Double-Layer Capacitor(EDLC) Simulink Model using MATLAB
Electric Double-Layer Capacitor(EDLC) Simulink Model using MATLABTsuyoshi Horigome
 
DC/AC 3-Phase Inverter (LTspice Model)
DC/AC 3-Phase Inverter (LTspice Model) DC/AC 3-Phase Inverter (LTspice Model)
DC/AC 3-Phase Inverter (LTspice Model) Tsuyoshi Horigome
 
ニッケル水素電池のスパイスモデル
ニッケル水素電池のスパイスモデルニッケル水素電池のスパイスモデル
ニッケル水素電池のスパイスモデルTsuyoshi Horigome
 
Electric Double-Layer Capacitor(EDLC) of Simple Model using PSpice
Electric Double-Layer Capacitor(EDLC) of Simple Model using PSpiceElectric Double-Layer Capacitor(EDLC) of Simple Model using PSpice
Electric Double-Layer Capacitor(EDLC) of Simple Model using PSpiceTsuyoshi Horigome
 
Simple model of DC Power Supply(LTspice)
Simple model of DC Power Supply(LTspice)Simple model of DC Power Supply(LTspice)
Simple model of DC Power Supply(LTspice)Tsuyoshi Horigome
 
Electric Double-Layer Capacitor(EDLC) of Simple Model using LTspice
Electric Double-Layer Capacitor(EDLC) of Simple Model using LTspiceElectric Double-Layer Capacitor(EDLC) of Simple Model using LTspice
Electric Double-Layer Capacitor(EDLC) of Simple Model using LTspiceTsuyoshi Horigome
 
1.DC電源モデルのシンプルモデル
1.DC電源モデルのシンプルモデル1.DC電源モデルのシンプルモデル
1.DC電源モデルのシンプルモデルTsuyoshi Horigome
 
Simple model of DC Power Supply(PSpice)
Simple model of DC Power Supply(PSpice)Simple model of DC Power Supply(PSpice)
Simple model of DC Power Supply(PSpice)Tsuyoshi Horigome
 
Simple Model of Ni-MH Battery Model using LTspice
Simple Model of Ni-MH Battery Model using LTspiceSimple Model of Ni-MH Battery Model using LTspice
Simple Model of Ni-MH Battery Model using LTspicespicepark
 
LTspiceのDCモーターシミュレーション事例
LTspiceのDCモーターシミュレーション事例LTspiceのDCモーターシミュレーション事例
LTspiceのDCモーターシミュレーション事例Tsuyoshi Horigome
 
SPICE MODEL of 2SC5703 in SPICE PARK
SPICE MODEL of 2SC5703 in SPICE PARKSPICE MODEL of 2SC5703 in SPICE PARK
SPICE MODEL of 2SC5703 in SPICE PARKTsuyoshi Horigome
 
Device Modeling of Lithium ion batteries 2009
Device Modeling of Lithium ion batteries 2009Device Modeling of Lithium ion batteries 2009
Device Modeling of Lithium ion batteries 2009Tsuyoshi Horigome
 

Similaire à 3.リチウムイオン電池のスパイスモデル (19)

4.ニッケル水素電池のスパイスモデル
4.ニッケル水素電池のスパイスモデル4.ニッケル水素電池のスパイスモデル
4.ニッケル水素電池のスパイスモデル
 
Li-ion Capacitor Model (Simplified Model) PSpice Version
Li-ion Capacitor Model (Simplified Model) PSpice VersionLi-ion Capacitor Model (Simplified Model) PSpice Version
Li-ion Capacitor Model (Simplified Model) PSpice Version
 
Li-ion Capacitor Model (Simplified Model) LTspice Version
Li-ion Capacitor Model (Simplified Model) LTspice VersionLi-ion Capacitor Model (Simplified Model) LTspice Version
Li-ion Capacitor Model (Simplified Model) LTspice Version
 
SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料
SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料
SPICEを活用した二次電池アプリケーション回路シミュレーションセミナー資料
 
PSpiceを活用した太陽光システムシミュレーション
PSpiceを活用した太陽光システムシミュレーションPSpiceを活用した太陽光システムシミュレーション
PSpiceを活用した太陽光システムシミュレーション
 
Simple Model of Lead-Acid Battery Model using LTspice
Simple Model of Lead-Acid Battery Model using LTspiceSimple Model of Lead-Acid Battery Model using LTspice
Simple Model of Lead-Acid Battery Model using LTspice
 
PSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーションPSpiceによるバッテリー回路アプリケーション
PSpiceによるバッテリー回路アプリケーション
 
Electric Double-Layer Capacitor(EDLC) Simulink Model using MATLAB
Electric Double-Layer Capacitor(EDLC) Simulink Model using MATLABElectric Double-Layer Capacitor(EDLC) Simulink Model using MATLAB
Electric Double-Layer Capacitor(EDLC) Simulink Model using MATLAB
 
DC/AC 3-Phase Inverter (LTspice Model)
DC/AC 3-Phase Inverter (LTspice Model) DC/AC 3-Phase Inverter (LTspice Model)
DC/AC 3-Phase Inverter (LTspice Model)
 
ニッケル水素電池のスパイスモデル
ニッケル水素電池のスパイスモデルニッケル水素電池のスパイスモデル
ニッケル水素電池のスパイスモデル
 
Electric Double-Layer Capacitor(EDLC) of Simple Model using PSpice
Electric Double-Layer Capacitor(EDLC) of Simple Model using PSpiceElectric Double-Layer Capacitor(EDLC) of Simple Model using PSpice
Electric Double-Layer Capacitor(EDLC) of Simple Model using PSpice
 
Simple model of DC Power Supply(LTspice)
Simple model of DC Power Supply(LTspice)Simple model of DC Power Supply(LTspice)
Simple model of DC Power Supply(LTspice)
 
Electric Double-Layer Capacitor(EDLC) of Simple Model using LTspice
Electric Double-Layer Capacitor(EDLC) of Simple Model using LTspiceElectric Double-Layer Capacitor(EDLC) of Simple Model using LTspice
Electric Double-Layer Capacitor(EDLC) of Simple Model using LTspice
 
1.DC電源モデルのシンプルモデル
1.DC電源モデルのシンプルモデル1.DC電源モデルのシンプルモデル
1.DC電源モデルのシンプルモデル
 
Simple model of DC Power Supply(PSpice)
Simple model of DC Power Supply(PSpice)Simple model of DC Power Supply(PSpice)
Simple model of DC Power Supply(PSpice)
 
Simple Model of Ni-MH Battery Model using LTspice
Simple Model of Ni-MH Battery Model using LTspiceSimple Model of Ni-MH Battery Model using LTspice
Simple Model of Ni-MH Battery Model using LTspice
 
LTspiceのDCモーターシミュレーション事例
LTspiceのDCモーターシミュレーション事例LTspiceのDCモーターシミュレーション事例
LTspiceのDCモーターシミュレーション事例
 
SPICE MODEL of 2SC5703 in SPICE PARK
SPICE MODEL of 2SC5703 in SPICE PARKSPICE MODEL of 2SC5703 in SPICE PARK
SPICE MODEL of 2SC5703 in SPICE PARK
 
Device Modeling of Lithium ion batteries 2009
Device Modeling of Lithium ion batteries 2009Device Modeling of Lithium ion batteries 2009
Device Modeling of Lithium ion batteries 2009
 

Plus de 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
 
Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)
Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)
Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)Tsuyoshi Horigome
 
SPICE PARK JAN2024 (6,665 SPICE Models)
SPICE PARK JAN2024 (6,665 SPICE Models)SPICE PARK JAN2024 (6,665 SPICE Models)
SPICE PARK JAN2024 (6,665 SPICE Models)Tsuyoshi Horigome
 

Plus de Tsuyoshi Horigome (20)

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?
 
Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)
Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)
Update 40 models(Schottky Rectifier ) in SPICE PARK(JAN2024)
 
SPICE PARK JAN2024 (6,665 SPICE Models)
SPICE PARK JAN2024 (6,665 SPICE Models)SPICE PARK JAN2024 (6,665 SPICE Models)
SPICE PARK JAN2024 (6,665 SPICE Models)
 

Dernier

Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebUiPathCommunity
 
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
 
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
 
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024BookNet Canada
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Mattias Andersson
 
Advanced Computer Architecture – An Introduction
Advanced Computer Architecture – An IntroductionAdvanced Computer Architecture – An Introduction
Advanced Computer Architecture – An IntroductionDilum Bandara
 
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024BookNet Canada
 
Moving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdfMoving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdfLoriGlavin3
 
What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024Stephanie Beckett
 
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptxThe Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptxLoriGlavin3
 
Digital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptxDigital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptxLoriGlavin3
 
Take control of your SAP testing with UiPath Test Suite
Take control of your SAP testing with UiPath Test SuiteTake control of your SAP testing with UiPath Test Suite
Take control of your SAP testing with UiPath Test SuiteDianaGray10
 
SAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxSAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxNavinnSomaal
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenHervé Boutemy
 
TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024Lonnie McRorey
 
Passkey Providers and Enabling Portability: FIDO Paris Seminar.pptx
Passkey Providers and Enabling Portability: FIDO Paris Seminar.pptxPasskey Providers and Enabling Portability: FIDO Paris Seminar.pptx
Passkey Providers and Enabling Portability: FIDO Paris Seminar.pptxLoriGlavin3
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek SchlawackFwdays
 
unit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxunit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxBkGupta21
 
What is DBT - The Ultimate Data Build Tool.pdf
What is DBT - The Ultimate Data Build Tool.pdfWhat is DBT - The Ultimate Data Build Tool.pdf
What is DBT - The Ultimate Data Build Tool.pdfMounikaPolabathina
 
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfHyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfPrecisely
 

Dernier (20)

Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio Web
 
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
 
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
 
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?
 
Advanced Computer Architecture – An Introduction
Advanced Computer Architecture – An IntroductionAdvanced Computer Architecture – An Introduction
Advanced Computer Architecture – An Introduction
 
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
 
Moving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdfMoving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdf
 
What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024
 
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptxThe Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
 
Digital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptxDigital Identity is Under Attack: FIDO Paris Seminar.pptx
Digital Identity is Under Attack: FIDO Paris Seminar.pptx
 
Take control of your SAP testing with UiPath Test Suite
Take control of your SAP testing with UiPath Test SuiteTake control of your SAP testing with UiPath Test Suite
Take control of your SAP testing with UiPath Test Suite
 
SAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptxSAP Build Work Zone - Overview L2-L3.pptx
SAP Build Work Zone - Overview L2-L3.pptx
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache Maven
 
TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024TeamStation AI System Report LATAM IT Salaries 2024
TeamStation AI System Report LATAM IT Salaries 2024
 
Passkey Providers and Enabling Portability: FIDO Paris Seminar.pptx
Passkey Providers and Enabling Portability: FIDO Paris Seminar.pptxPasskey Providers and Enabling Portability: FIDO Paris Seminar.pptx
Passkey Providers and Enabling Portability: FIDO Paris Seminar.pptx
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
 
unit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxunit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptx
 
What is DBT - The Ultimate Data Build Tool.pdf
What is DBT - The Ultimate Data Build Tool.pdfWhat is DBT - The Ultimate Data Build Tool.pdf
What is DBT - The Ultimate Data Build Tool.pdf
 
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfHyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
 

3.リチウムイオン電池のスパイスモデル

  • 1. Lithium Ion Battery Simplified SPICE Behavioral Model All Rights Reserved Copyright (C) Bee Technologies Corporation 2011
  • 2.
  • 3.
  • 4.
  • 5.
  • 6.
  • 7.
  • 8.
  • 9.
  • 10.
  • 11.
  • 12.
  • 13.
  • 14.
  • 15.
  • 16.
  • 17.
  • 18.