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STBB1-APUR
+Lista de MateriaisIC REG BCK BST ADJ 1.6A 10DFN
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FabricanteSTMicroeletrônica
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Peça do Fabricante #STBB1-APUR
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Ficha Técnica STBB1-APUR DataSheet
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Pacote QFN10
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Em Estoque6298
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Especificações
| Atributo | Valor |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Function | Step-Up/Step-Down |
| OutputConfiguration | Positive |
| Topology | Buck-Boost |
| OutputType | Adjustable |
| NumberofOutputs | 1 |
| Voltage-Input(Min) | 2V |
| Voltage-Input(Max) | 5.5V |
| Voltage-Output(Min/Fixed) | 1.2V |
| Voltage-Output(Max) | 5.5V |
| Current-Output | 1.6A (Switch) |
| Frequency-Switching | 1.5MHz |
| SynchronousRectifier | Yes |
| OperatingTemperature | -40°C ~ 85°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | 10-VFDFN Exposed Pad |
Visão Geral
Description
For an effective introduction, you would typically outline the significance of the STBB1 gene if applicable, its known functions, and any related research avenues or applications. The APUR component might highlight specific goals, methodologies, or collaborative efforts within the research context. Given the lack of direct references, I recommend consulting specific scientific publications or institutional resources for precise details and context related to STBB1-APUR.
Equivalent
1. Texas Instruments TPS63020: A high-efficiency buck-boost converter.
2. Maxim Integrated MAX17061: A high-efficiency, low quiescent current buck-boost converter.
3. Analog Devices ADP2503/ADP2504: Step-up/step-down DC-DC converters.
These alternatives offer similar functionality in terms of voltage regulation and efficiency, making them suitable substitutes depending on specific performance needs and design constraints.
Features
1. Wide Input Voltage Range: Supports a broad range of input voltages, allowing it to work with single-cell, dual-cell, or triple-cell battery configurations.
2. High Efficiency: Designed to optimize power efficiency, reducing energy loss and extending battery life, especially critical in portable devices.
3. Adjustable Output Voltage: Users can program the output voltage to meet specific requirements, offering flexibility across different applications.
4. Low Quiescent Current: Minimizes power consumption when the device is in standby mode, further conserving battery power.
5. Integrated Power MOSFETs: Contains built-in MOSFETs to simplify the design and reduce the need for external components.
6. Protection Features: Includes over-temperature and over-current protection to enhance device reliability and longevity.
7. Compact Package: Available in a small package size, making it suitable for space-constrained applications like wearables and compact electronics.
These features make the STBB1-APUR ideal for applications requiring efficient power conversion and space conservation.
Pinout
1. VIN: Input voltage pin for the supply voltage.
2. GND: Ground pin for electrical return path.
3. SW: Switch node pin connected to the external inductor.
4. VOUT: Output voltage pin for the regulated output.
5. EN: Enable pin to turn the device on or off.
6. FB: Feedback pin for voltage regulation, connected to the output via a resistor divider.
7. MODE: Mode selection pin to switch between PWM and PFM modes.
8. SS: Soft-start pin for controlling the startup time and reducing inrush current.
This configuration allows the device to efficiently convert input voltage levels to a stable output, even if the input falls below or rises above the desired output level, making it ideal for battery-powered applications.