Shared projects

1.8V 2A Portable Power Supply Li-Ion USB Charging - 1V82AR5

by jckz82.

2 layer board of 1.44x1.44 inches (36.47x36.47 mm).
Shared on May 8th, 2017 14:08.

I designed this power supply for small projects, prototyping, Arduino, IoT, and wireless embedded applications. An ATtiny45 provides the ideal balance between features and efficiency. When on, efficiencies go as high as 92%. When off, it only consumes 2μA! It uses two LEDs, red and green, to provide simple information about the charging and power of the device.

This power supply has protection for input overcurrent, output short circuit, output disconnect, battery disconnect, battery overvoltage, and battery undervoltage.

It’s difficult to find a power supply to convert a Lithium-Ion battery to a 1.8V output with high current output, high efficiency, and safety features. This board uses the Texas Instruments TPS63020, which is capable of this task.

This power supply uses a single cell Lithium-Ion battery. The battery is charged at a maximum of 500mA using the Microchip MCP73831. A battery is required to use this power supply.

Specs 1.8VDC output 4A peak output (100ms max) 2A continuous output 90%+ efficiency 2μA sleep current Micro USB charge input Micro JST Connector for Single Cell Li-Ion 500mA max charge rate Minimum recommended battery capacity - 500mAh

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3.3V 2A Portable Power Supply Li-Ion USB Charging - 3V32AR5

by jckz82.

2 layer board of 1.44x1.44 inches (36.47x36.47 mm).
Shared on May 8th, 2017 14:08.

I designed this power supply for small projects, prototyping, Arduino, IoT, and wireless embedded applications. An ATtiny45 provides the ideal balance between features and efficiency. When on, efficiencies go as high as 92%. When off, it only consumes 2μA! It uses two LEDs, red and green, to provide simple information about the charging and power of the device.

This power supply has protection for input overcurrent, output short circuit, output disconnect, battery disconnect, battery overvoltage, and battery undervoltage.

It’s difficult to find a power supply to convert a Lithium-Ion battery to a 3.3V output with high current output, high efficiency, and safety features. This board uses the Texas Instruments TPS63020, which is capable of this task.

This power supply uses a single cell Lithium-Ion battery. The battery is charged at a maximum of 500mA using the Microchip MCP73831. A battery is required to use this power supply.

Specs 1.8VDC output 4A peak output (100ms max) 2A continuous output 90%+ efficiency 2μA sleep current Micro USB charge input Micro JST Connector for Single Cell Li-Ion 500mA max charge rate Minimum recommended battery capacity - 500mAh

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5V 2A Portable Power Supply Li-Ion USB Charging - 5V2AR5

by jckz82.

2 layer board of 1.44x1.44 inches (36.47x36.47 mm).
Shared on May 8th, 2017 14:08.

I designed this power supply for small projects, prototyping, Arduino, IoT, and wireless embedded applications. An ATtiny45 provides the ideal balance between features and efficiency. When on, efficiencies go as high as 92%. When off, it only consumes 2μA! It uses two LEDs, red and green, to provide simple information about the charging and power of the device.

This power supply has protection for input overcurrent, output short circuit, output disconnect, battery disconnect, battery overvoltage, and battery undervoltage.

It’s difficult to find a power supply to convert a Lithium-Ion battery to a 5V output with high current output, high efficiency, and safety features. This board uses the Texas Instruments TPS63020, which is capable of this task.

This power supply uses a single cell Lithium-Ion battery. The battery is charged at a maximum of 500mA using the Microchip MCP73831. A battery is required to use this power supply.

Specs 1.8VDC output 4A peak output (100ms max) 2A continuous output 90%+ efficiency 2μA sleep current Micro USB charge input Micro JST Connector for Single Cell Li-Ion 500mA max charge rate Minimum recommended battery capacity - 500mAh

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5V 3.5A UPS Power Supply For Raspberry Pi, Arduino, BeagleBoard

by jckz82.

2 layer board of 2.96x1.78 inches (75.21x45.24 mm).
Shared on February 8th, 2017 20:51.

This UPS is designed for high current projects, including Raspberry Pi, BeagleBone, Arduino, IoT, wireless embedded applications, and similar computing devices.

You can power directly from the input. When the input source is removed, power is delivered from the Lithium-Ion battery. An advanced charging algorithm prolongs battery life.

I2C is available for checking battery capacity and voltage. It can also be used for adjusting settings such as max charge rate and input current limit.

The microUSB input can negotiate from 100mA to 3.25A with USB MaxCharge and High Voltage Adapters.

This UPS is based on the Texas Instruments BQ25895 power management IC and the Microchip MIC2876 boost IC.

See more details and BOM at www.flashcandy.us

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CandyBrake_V1.0

by jckz82.

2 layer board of 3.71x0.98 inches (94.16x24.82 mm).
Shared on February 3rd, 2017 16:16.

Motorcycle Rear Brake and Turn Signal

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