• BQ25504RGTT

    BQ25504RGTT

    Energy Harvesting PMIC 16-VQFN (3x3)

    vasy_skral

    2 years ago

    138 Uses

    0 Stars


  • BQ25570RGRT

    BQ25570RGRT

    Energy Harvesting PMIC 20-VQFN (3.5x3.5) #commonpartslibrary #integratedcircuit #powermanagement

    a year ago

    16 Uses

    0 Stars


  • NEH2000BYJ

    NEH2000BYJ

    Energy Harvesting PMIC 16-HWQFN (3x3) #CommonPartLibrary #IntegratedCircuit #PowerManagement #EnergyHarvesting

    3 years ago

    2 Uses

    0 Stars


  • BQ25570RGRR

    BQ25570RGRR

    Energy Harvesting PMIC 20-VQFN (3.5x3.5) #commonpartslibrary #integratedcircuit #powermanagement

    2 years ago

    2 Uses

    0 Stars


  • BQ2550 Sub-l

    BQ2550 Sub-l

    Energy Harvesting sub-layout based on a BQ2550 for low powered projects #energy #power #ti #solar

    2 years ago

    3.2k Uses

    2 Stars


  • NH2D0245

    NH2D0245

    Energy Harvesting Wireless Sensor, IoT, Smart Wearables PMIC 16-QFN #dc #solar #harvesting

    4 years ago

    64 Uses

    0 Stars


  • AEM13921-QFN

    AEM13921-QFN

    Ultra Efficient Dual Sources Energy Manager with Ratio/Constant Voltage Regulation, Regulated Buck Output and 5 V Charger, 120 mV, 135 mA The AEM13921 is a fully integrated and compact power management circuit that extracts DC power from two harvesting sources to store energy in a rechargeable storage element and supply an application circuit. A 5 V input can also be used to charge the storage element (e.g., if it gets depleted). This compact and ultra-efficient PMIC allows for extending battery lifetime and eliminating the primary energy storage in a large range of applications. Both sources implement Maximum Power Point Tracking (MPPT) based on open-circuit voltage ratio as well as constant source voltage regulation features, allowing for harvesting the maximum power available from each source to charge the storage element. With its unique cold-start circuit, it can start operating with an input voltage as low as 275 mV (min. 1.5 µW power). The configurable protection thresholds prevent overcharging and overdischarging the storage element. No external components are required to set those thresholds. The thermal monitoring prevents charging and discharging the storage element outside a configurable temperature range. The Average Power Monitoring (APM) allows the application circuit to get an estimate of the energy harvested from each source to the battery and from the battery to the application circuit. A shipping mode is available to avoid charging and discharging the storage element during shipping or storage. A buck regulator with selectable output voltage allows an application circuit to be supplied with high efficiency. I²C communication allows users to control every setting of the AEM13921 from the application circuit MCU. Features and Benefits Dual sources inputs - Boost operation optimized for each source. - Conversion efficiency above 90 % on each source. - Harvests from 120 mV after cold start. - Simultaneous harvesting from both sources. - Up to 135 mA current extracted from the harvester. Maximum Power Point Tracking - Both sources configurable to constant voltage mode or to open-circuit voltage ratio mode. - Optimal harvesting from a multiple combinations of harvesters (PV cells, RF, vibration, pulsed sources...). Cold start from 275 mV / 1.5 µW input - Startup at ultra-low power from each harvesting source input. Configurable overdischarge & overcharge protection - Supports various types of rechargeable storage elements (LiC, Li-ion, LiPo, Li-ceramic pouch...). Regulated output for application circuit - Buck regulator conversion efficiency up to 96 %. - Selectable output voltage between 0.6 V and 3.3 V. - Output current up to 100 mA. Thermal monitoring - Storage element protection against overtemperature and under-temperature during charging and discharging, independently. Average Power Monitoring - Provides data to determine how much energy has been transferred to the storage from each source and from the 5 V charger, as well as the energy drained from the storage to supply the application circuit. System configuration by GPIO or I²C communication - All settings dynamically configurable through GPIO or I²C (Fast Mode Plus). - System data available through I²C. Shipping mode - Storage element charge and discharge disabling during shipment. External 5 V charging capability - Extra charging input for 5 V power supplies. - Configurable CC and CV modes (max. 135 mA). - Provides a fast charging alternative when no source is available for a long time. #AEM13921 #EnergyHarvesting #PowerManagementIC #PMIC #MPPT #BatteryCharging #EnergyAutonomous #IoT #WirelessSensor #IndustrialMonitoring #EmbeddedSystems #QFN #epeas #LowPowerDesign

    2 months ago

    2 Uses

    0 Stars


  • LTC3108EDE#PBF

    LTC3108EDE#PBF

    Energy Harvesting PMIC 12-DFN (4x3) #CommonPartsLibrary #IntegratedCircuit #PowerManagement #LTC3108

    3 years ago

    14 Uses

    0 Stars


  • BQ25504RGTR

    BQ25504RGTR

    Energy Harvesting PMIC 16-VQFN (3x3) #BatteryManagement #commonpartslibrary

    4 years ago

    16 Uses

    0 Stars


  • AEM10941

    AEM10941

    Power Management Specialized - PMIC AEM10941 IC - Photovoltaic Energy Harvesting Manager #solar #energy #mppt

    4 years ago

    21 Uses

    0 Stars


  • AEM10330

    AEM10330

    The AEM10330 is an integrated energy management circuit that extracts DC power from an ambient energy harvesting. #DC #solar #energy #power

    4 years ago

    6 Uses

    0 Stars


  • BQ25570RGRR

    BQ25570RGRR

    Energy Harvesting PMIC 20-VQFN (3.5x3.5) #BatteryManagement #commonpartslibrary

    4 years ago

    20 Uses

    0 Stars


  • LTC3105EDD#PBF

    LTC3105EDD#PBF

    series Converter, Energy Harvesting Voltage Regulator IC 1 Output 10-DFN (3x3) #RegulatorSwitching #commonpartslibrary

    4 years ago

    3 Uses

    0 Stars


  • AEM20940

    AEM20940

    Energy saving, Sensor, AEM20940, low power, thermal, ultra-low power, industrial, automation, e-peas, energy harvesting, pmic, e-health #DC #solar #energy #power

    4 years ago

    3 Uses

    0 Stars


  • AEM30940

    AEM30940

    E-peas’ RF energy harvesting IC solution – AEM30940 – is an integrated energy management subsystem that extracts DC power #DC #solar #energy #power #mppt

    3 years ago

    0 Uses

    0 Stars


  • LTC3588 SubModule

    LTC3588 SubModule

    This breakout board uses the LTC3588 Piezoelectric Energy Harvester from Linear Technologies. This board can be used not only for harvesting piezoelectric energy, but solar energy as well. There is a bridge rectified input for piezo elements (PZ1 and PZ2) and a direct input (VIN) for DC sources. Both are clamped to 20V. In addition, the board can simply be used as a standalone nanopower buck regulator. #SubModule #Sublayout #LTC3588

    4 years ago

    69 Uses

    0 Stars


  • AEM10941 SubModule

    AEM10941 SubModule

    AEM10941 Solar Harvesting IC from E-peas. It efficiently converts solar panel energy into SUperCApacitor charge, it even works with indoor light. It features two regulated outputs that are enabled when the supercapacitor has sufficient charge, and a low voltage warning that informs the user of impending shutdown when the supercapacitors run low. #SubModule #SubLayout

    4 years ago

    7 Uses

    0 Stars


  • AEM30940-QFN

    AEM30940-QFN

    AEM30940-QFN highly efficient ambient energy management IC for AC or DC energy harvesting sources, ultra-low-power boost converter with MPPT, cold start from 380mV and 3µW, input voltage range from 50mV to 5V, dual regulated LDO outputs, rechargeable storage element support, optional primary battery backup switching, supplied in QFN-28 5x5mm package. Search Keywords: AEM30940-QFN, AEM30940 QFN, AEM30940 QFN-28, AEM30940 5x5, AEM30940 QFN-28 5x5, e-peas AEM30940-QFN, AEM30940 energy harvesting IC QFN, AEM30940 ambient energy manager QFN, AEM30940 PMIC QFN-28 Hashtags: #AEM30940QFN #AEM30940 #AEM30940QFN28 #QFN28 #QFN5x5 #epeasAEM30940 #EnergyHarvestingIC #AmbientEnergyManager #HarvestingPMIC #MPPTController 120-AEM30940-QFN 0.9mm AEM30940-QFN

    2 months ago

    0 Uses

    0 Stars


  • SM141K10LV

    SM141K10LV

    Monocrystalline Solar Cell 307 mW 6.91 V SM141K10LV – miniature monocrystalline high-efficiency solar cell module (SolarMD™) designed for low-power energy harvesting and battery charging applications. Provides approximately 307 mW peak power with 5.58 V maximum power voltage and 55.1 mA maximum power current. Suitable for portable electronics, wireless sensors, IoT devices, wearable products, emergency backup power systems, and indoor/outdoor light energy harvesting. Features high-efficiency monocrystalline silicon technology, compact 45 × 36 × 1.8 mm package, low-light operation capability, long service life, and stable output performance. Search Keywords: SM141K10LV, IXOLAR SolarMD, ANYSOLAR SM141K10LV, Solar Energy Harvester, Monocrystalline Solar Cell, Solar Module, Energy Harvesting Module, Indoor Solar Panel, Outdoor Solar Panel, IoT Power Supply, Wireless Sensor Power, Battery Charging Solar Cell, Low Power Solar Module, Portable Solar Charger, Renewable Energy Module, Solar Powered Sensor, Solar Backup Power, Solar Energy Harvesting, Embedded Power Source, Wearable Power Module Hashtags: #SM141K10LV #IXOLAR #ANYSOLAR #SolarMD #SolarCell #SolarModule #MonocrystallineSolar #EnergyHarvesting #SolarEnergy #RenewableEnergy #IoT #WirelessSensor #BatteryCharging #PortablePower #EmbeddedSystems #WearableElectronics #LowPowerDesign #GreenEnergy #PowerManagement #ElectronicsDesign

    2 months ago

    0 Uses

    0 Stars


  • ETA1061V50S2G

    ETA1061V50S2G

    1uA Ultra low lq, 0.8V Startup, 1A Synchronous Boost ETA1061, ETA Solutions ETA1061, Synchronous Boost Converter, Ultra Low IQ Boost Converter, 1uA Quiescent Current Converter, 0.8V Startup Converter, DC DC Step Up Converter, Low Power Boost Regulator, Battery Powered Converter, Energy Harvesting Power Supply, IoT Power Management IC, Wearable Electronics Power IC, Power Bank Converter, 5V Boost Converter, High Efficiency Boost Converter, SOT23-6 Boost Converter, DFN2x2 Boost Converter, Portable Electronics Power Supply, Ultra Low Power DC DC Converter, Reverse Current Protection Converter Hashtags: #ETA1061 #ETASolutions #BoostConverter #DCDCConverter #PowerManagement #LowPowerDesign #UltraLowPower #EnergyHarvesting #BatteryPowered #IoTDevices #WearableElectronics #PowerBank #EmbeddedSystems #PowerElectronics #ElectronicsDesign #PCBDesign #HardwareEngineering #PortableElectronics #VoltageRegulator #BatteryManagement

    2 months ago

    0 Uses

    0 Stars


  • AEM10330

    AEM10330

    The AEM10330 is an integrated energy management circuit that extracts DC power from an ambient energy harvesting. #DC #solar #energy #power

    4 years ago

    4 Uses

    0 Stars


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