SlideShare a Scribd company logo
1 of 5
Download to read offline
Device Modeling Report



COMPONENTS: Lithium Batteries Pack
PART NUMBER: PBT-BAT-0001
MUNUFACTURER: BAYSUN




               Bee Technologies Inc.




 All Rights Reserved Copyright (c) Bee Technologies Inc. 2010
                                                                1
Circuit Configuration



   +   -   U1
           PBT-BAT-0001

           SOC1 = 100
           TSCALE = 3600




                All Rights Reserved Copyright (c) Bee Technologies Inc. 2010
                                                                               2
Discharge Characteristics

Circuit Simulation Result

     18V




     16V


                                                                       0.2C ( 880 mA )
     14V                                0.5C ( 2200 mA )

                       1C ( 4400 mA )

     12V




     10V




      8V
           0s        1.0s                  2.0s            3.0s             4.0s                 5.0s   6.0s
                V(Hi)
                                                           Time



Simulation Circuit


                                                                                 D1

                                                                                 DMOD

                                 PARAMETERS:                                              Voch
                                 rate = 1                                                 16.8Vdc
                                 CAh = 4400m                                              0
                                                                       Hi


                                                                  C1                             0
                    IN+    OUT+                                   1n    +    -    U1
                                                                                  PBT-BAT-0001
                    IN-    OUT-
                 G1                                           0                   SOC1 = 100
                 GVALUE                                                           TSCALE = 3600
                 limit(V(%IN+, %IN-)/0.01, 0, rate*CAh )



                                   0




 To discharge from 100% of battery capacity, SOC1=100


                     All Rights Reserved Copyright (c) Bee Technologies Inc. 2010
                                                                                                               3
Charge Characteristics

 Circuit Simulation Result
       SOC [%]
                 100V

                  80V

                  60V

                  40V

                  20V
                 SEL>>
                    0V
Vbatt [V] ICharge [A]        V(X_U1.SOC)
       18V       5.0A
   1         2

       16V       4.0A

       14V       3.0A

       12V       2.0A

       10V       1.0A
                   >>
        8V         0A
                      0s          1.0s           2.0s     3.0s            4.0s       5.0s         6.0s            7.0s   8.0s
                       1        V(Hi) 2            I(U1:PLUS)
                                                                          Time

 Simulation Circuit


                                                                                      D1
                         PARAMETERS:
                         rate = 0.2                                                   DMOD
                         CAh = 4400m

                                 G1                                                                Voch
                                 GVALUE                                                            16.8Vdc
                                 Limit(V(%IN+, %IN-)/0.1, 0, rate*CAh )                            0
                                                                                     Hi
                                   OUT+
                                   OUT-




                                                                                C1                            0
                                                                                1n     +   -   U1
                                                                                               PBT-BAT-0001
                                   IN+
                                   IN-




                                                                            0                  SOC1 = 0
                                                                                               TSCALE = 3600
                         Vin
                         20.5Vdc



                         0



  To charge from 0% of battery capacity, SOC1=0


                             All Rights Reserved Copyright (c) Bee Technologies Inc. 2010
                                                                                                                                4
Data Information



    No. PBT-BAT-0001

    Capacity                                   65[W], 4400[mAh] (Approximately)

    Rated Current                              3 [A]

    Input Voltage                              20.5 [Vdc]

                                               12.8~16.4 [Vdc]
    Output Voltage
                                               ( 4 cells )

    Charging time                              5 [hours] (Approximately)




                All Rights Reserved Copyright (c) Bee Technologies Inc. 2010
                                                                                  5

More Related Content

More from Tsuyoshi Horigome

More from Tsuyoshi Horigome (20)

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)
 
社会現象及び社会記号と関連付けたマーケティング
社会現象及び社会記号と関連付けたマーケティング社会現象及び社会記号と関連付けたマーケティング
社会現象及び社会記号と関連付けたマーケティング
 
Update 42 models(Diode/General ) in SPICE PARK(DEC2023)
Update 42 models(Diode/General ) in SPICE PARK(DEC2023)Update 42 models(Diode/General ) in SPICE PARK(DEC2023)
Update 42 models(Diode/General ) in SPICE PARK(DEC2023)
 
SPICE PARK DEC2023 (6,625 SPICE Models)
SPICE PARK DEC2023 (6,625 SPICE Models) SPICE PARK DEC2023 (6,625 SPICE Models)
SPICE PARK DEC2023 (6,625 SPICE Models)
 
電子部品調達者の動向
電子部品調達者の動向電子部品調達者の動向
電子部品調達者の動向
 

Recently uploaded

Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo DiehlFuture Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Peter Udo Diehl
 

Recently uploaded (20)

10 Differences between Sales Cloud and CPQ, Blanka Doktorová
10 Differences between Sales Cloud and CPQ, Blanka Doktorová10 Differences between Sales Cloud and CPQ, Blanka Doktorová
10 Differences between Sales Cloud and CPQ, Blanka Doktorová
 
FDO for Camera, Sensor and Networking Device – Commercial Solutions from VinC...
FDO for Camera, Sensor and Networking Device – Commercial Solutions from VinC...FDO for Camera, Sensor and Networking Device – Commercial Solutions from VinC...
FDO for Camera, Sensor and Networking Device – Commercial Solutions from VinC...
 
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
 
ASRock Industrial FDO Solutions in Action for Industrial Edge AI _ Kenny at A...
ASRock Industrial FDO Solutions in Action for Industrial Edge AI _ Kenny at A...ASRock Industrial FDO Solutions in Action for Industrial Edge AI _ Kenny at A...
ASRock Industrial FDO Solutions in Action for Industrial Edge AI _ Kenny at A...
 
How we scaled to 80K users by doing nothing!.pdf
How we scaled to 80K users by doing nothing!.pdfHow we scaled to 80K users by doing nothing!.pdf
How we scaled to 80K users by doing nothing!.pdf
 
Linux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdf
Linux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdfLinux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdf
Linux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdf
 
The Metaverse: Are We There Yet?
The  Metaverse:    Are   We  There  Yet?The  Metaverse:    Are   We  There  Yet?
The Metaverse: Are We There Yet?
 
Powerful Start- the Key to Project Success, Barbara Laskowska
Powerful Start- the Key to Project Success, Barbara LaskowskaPowerful Start- the Key to Project Success, Barbara Laskowska
Powerful Start- the Key to Project Success, Barbara Laskowska
 
Google I/O Extended 2024 Warsaw
Google I/O Extended 2024 WarsawGoogle I/O Extended 2024 Warsaw
Google I/O Extended 2024 Warsaw
 
Demystifying gRPC in .Net by John Staveley
Demystifying gRPC in .Net by John StaveleyDemystifying gRPC in .Net by John Staveley
Demystifying gRPC in .Net by John Staveley
 
AI presentation and introduction - Retrieval Augmented Generation RAG 101
AI presentation and introduction - Retrieval Augmented Generation RAG 101AI presentation and introduction - Retrieval Augmented Generation RAG 101
AI presentation and introduction - Retrieval Augmented Generation RAG 101
 
AI revolution and Salesforce, Jiří Karpíšek
AI revolution and Salesforce, Jiří KarpíšekAI revolution and Salesforce, Jiří Karpíšek
AI revolution and Salesforce, Jiří Karpíšek
 
How Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdf
How Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdfHow Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdf
How Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdf
 
Unpacking Value Delivery - Agile Oxford Meetup - May 2024.pptx
Unpacking Value Delivery - Agile Oxford Meetup - May 2024.pptxUnpacking Value Delivery - Agile Oxford Meetup - May 2024.pptx
Unpacking Value Delivery - Agile Oxford Meetup - May 2024.pptx
 
Oauth 2.0 Introduction and Flows with MuleSoft
Oauth 2.0 Introduction and Flows with MuleSoftOauth 2.0 Introduction and Flows with MuleSoft
Oauth 2.0 Introduction and Flows with MuleSoft
 
Enterprise Knowledge Graphs - Data Summit 2024
Enterprise Knowledge Graphs - Data Summit 2024Enterprise Knowledge Graphs - Data Summit 2024
Enterprise Knowledge Graphs - Data Summit 2024
 
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo DiehlFuture Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
 
Extensible Python: Robustness through Addition - PyCon 2024
Extensible Python: Robustness through Addition - PyCon 2024Extensible Python: Robustness through Addition - PyCon 2024
Extensible Python: Robustness through Addition - PyCon 2024
 
Designing for Hardware Accessibility at Comcast
Designing for Hardware Accessibility at ComcastDesigning for Hardware Accessibility at Comcast
Designing for Hardware Accessibility at Comcast
 
IoT Analytics Company Presentation May 2024
IoT Analytics Company Presentation May 2024IoT Analytics Company Presentation May 2024
IoT Analytics Company Presentation May 2024
 

SPICE MODEL of PBT-BAT-0001 , TA=25degree in SPICE PARK

  • 1. Device Modeling Report COMPONENTS: Lithium Batteries Pack PART NUMBER: PBT-BAT-0001 MUNUFACTURER: BAYSUN Bee Technologies Inc. All Rights Reserved Copyright (c) Bee Technologies Inc. 2010 1
  • 2. Circuit Configuration + - U1 PBT-BAT-0001 SOC1 = 100 TSCALE = 3600 All Rights Reserved Copyright (c) Bee Technologies Inc. 2010 2
  • 3. Discharge Characteristics Circuit Simulation Result 18V 16V 0.2C ( 880 mA ) 14V 0.5C ( 2200 mA ) 1C ( 4400 mA ) 12V 10V 8V 0s 1.0s 2.0s 3.0s 4.0s 5.0s 6.0s V(Hi) Time Simulation Circuit D1 DMOD PARAMETERS: Voch rate = 1 16.8Vdc CAh = 4400m 0 Hi C1 0 IN+ OUT+ 1n + - U1 PBT-BAT-0001 IN- OUT- G1 0 SOC1 = 100 GVALUE TSCALE = 3600 limit(V(%IN+, %IN-)/0.01, 0, rate*CAh ) 0  To discharge from 100% of battery capacity, SOC1=100 All Rights Reserved Copyright (c) Bee Technologies Inc. 2010 3
  • 4. Charge Characteristics Circuit Simulation Result SOC [%] 100V 80V 60V 40V 20V SEL>> 0V Vbatt [V] ICharge [A] V(X_U1.SOC) 18V 5.0A 1 2 16V 4.0A 14V 3.0A 12V 2.0A 10V 1.0A >> 8V 0A 0s 1.0s 2.0s 3.0s 4.0s 5.0s 6.0s 7.0s 8.0s 1 V(Hi) 2 I(U1:PLUS) Time Simulation Circuit D1 PARAMETERS: rate = 0.2 DMOD CAh = 4400m G1 Voch GVALUE 16.8Vdc Limit(V(%IN+, %IN-)/0.1, 0, rate*CAh ) 0 Hi OUT+ OUT- C1 0 1n + - U1 PBT-BAT-0001 IN+ IN- 0 SOC1 = 0 TSCALE = 3600 Vin 20.5Vdc 0  To charge from 0% of battery capacity, SOC1=0 All Rights Reserved Copyright (c) Bee Technologies Inc. 2010 4
  • 5. Data Information No. PBT-BAT-0001 Capacity 65[W], 4400[mAh] (Approximately) Rated Current 3 [A] Input Voltage 20.5 [Vdc] 12.8~16.4 [Vdc] Output Voltage ( 4 cells ) Charging time 5 [hours] (Approximately) All Rights Reserved Copyright (c) Bee Technologies Inc. 2010 5