Datasheet AEM00330 (E-peas) - 4
Hersteller | E-peas |
Beschreibung | Highly Versatile Buck-Boost Ambient Energy Manager with Source Voltage Level Configuration |
Seiten / Seite | 30 / 4 — DATASHEET. AEM00330. List of Tables |
Dateiformat / Größe | PDF / 896 Kb |
Dokumentensprache | Englisch |
DATASHEET. AEM00330. List of Tables
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DATASHEET AEM00330 List of Tables
Table 1: Power and Status Pins . 6 Table 2: Configuration and Ground Pins. 7 Table 3: Absolute Maximum Ratings. 8 Table 4: Thermal Resistance . 8 Table 5: ESD Caution. 8 Table 6: Typical Electrical Characteristics . 9 Table 7: Recommended Operation Conditions . 10 Table 8: DCDC Converter Modes. 12 Table 9: Storage Element Configuration Pins. 17 Table 10: Load Configuration Pins. 18 Table 11: Source regulation Configuration Pins. 19 Table 12: Minimal Bil of Materials . 27 Table 13: Revision History . 30 DS_AEM00330_Rev1.0 Copyright © 2022 e-peas SA Confidential 4 Document Outline Table of Contents List of Tables 1. Introduction 2. Absolute Maximum Ratings 3. Thermal Resistance 4. Typical Electrical Characteristics at 25 °C 5. Recommended Operation Conditions 6. Functional Block Diagram 7. Theory of Operation 7.1. DCDC Converter 7.2. Reset, Wake Up and Start States 7.2.1. Storage Element Priority Supercapacitor as a Storage Element Battery as a Storage Element 7.2.2. Load Priority 7.3. Supply State 7.4. Shutdown State 7.5. Sleep State 7.6. Source Voltage Regulation 7.7. Balancing for Dual-Cell Supercapacitor 8. System Configuration 8.1. High Power / Low Power Mode 8.2. Storage Element Configuration 8.3. Load Configuration 8.4. Custom Mode Configuration 8.5. Disable Storage Element Charging 8.6. Source Level Configuration 8.7. External Components 8.7.1. Storage element information 8.7.2. External inductor information 8.7.3. External capacitors information CSRC CINT CLOAD 9. Typical Application Circuits 9.1. Example Circuit 1 9.2. Example Circuit 2 9.3. Circuit Behaviour 9.4. DCDC Conversion Efficiency From SRC to STO in Low Power Mode 9.4. DCDC Conversion Efficiency From SRC to STO in Low Power Mode 9.5. DCDC Conversion Efficiency From SRC to STO in High Power Mode 9.6. DCDC Conversion Efficiency From STO to LOAD in Low Power Mode 9.7. DCDC Conversion Efficiency From STO to LOAD in High Power Mode 10. Schematic 11. Layout 12. Package Information 12.1. Plastic Quad Flatpack No-Lead (QFN 40-pin 5x5mm) 12.2. Board Layout 13. Revision History