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3pcs XL63020-4.2V Li Battery/USB Auto Boost Power Module Microcontroller Power Supply Low Ripple TPS63020 Solution
- Advanced Power Management - Designed with the cutting-edge TI TPS63020 chip, this USB auto-lift/buck module ensures power delivery across the entire discharge cycle of your lithium battery (1.8V-5.5V). Whether you're charging a , camera, or IoT device, our module provides stable 3.3V (1.3A), 4.2V (1A), or 5V (0.9A) outputs via jumper selection. With dual energy-saving modesdynamic response priority and ultra-efficient light load operation (>90%), its Suitable for both performance-critical and low-power applications.; Industry-Leading Ripple Control - Experience stability with our full ceramic capacitor design, which reduces no-load ripple to 5mVpp. This minimizes interference with sensitive signals like ADC sampling bands, ensuring smooth operation even in demanding . Suitable for precision electronics where every millivolt counts.; Space-Saving Design - Compact yet powerful, this module measures just 17.4mm x 26.2mm, making it Suitable for small-sized devices where space is at a premium. Its vertical welding capability further optimizes space utilization without compromising performance. Suitable for integrating into tight-fitting gadgets like smartwatches, portable speakers, or handheld gaming consoles.; Effortless Customization - Tailor the output voltage to your exact needs! By disconnecting all jumpers and soldering the ADJ resistor, you can achieve custom voltages such as 4.0V. For example, setting R2=36K when R1=0 will yield a precise 4.0V output. Plus, e...
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Product description
Product core features: Core
solution: TI TPS63020 chip
Voltage conversion: automatic switching between boost and boost, covering the full discharge cycle of lithium batteries ( 1.8 - 5.5V input) Three outputs
Jumper switching: 3.3V ( 1.3A ) / 4.2V (1A) / 5V ( 0.9A ) Energy
Efficiency Management Dual-mode: conventional mode (dynamic response priority) + power saving mode (light load efficiency > 90%) Ripple Control Full Ceramic capacitor design, no-load ripple as low as 5mVpp (industry 1/6)
Version Parameter & Pin Definition: Only Version V 1.00
Size: 17.4 × 26.2 mm
Switching Frequency: 2.4MH z
Operating Temperature: -40°C~85°C
Pin Definition:
VIN: Input positive ( 1.8 - 5.5V ) Reverse connection is strictly prohibited!
PS: Shorted = Power saving mode Remove LED to reduce power consumption again
EN: Suspended = Enable, Low = Off Do not ground! Jumper pads Voltage selection (3V3/4V2/5V) Multiple simultaneous shorting prohibited! User pain point solution Battery voltage drop caused by equipment crash 1.8V continuous regulated output ( 3.7V 1.8V throughout the regulated) traditional DCDC interference sensor signal 15mV ripple + 2.4MH z high frequency away from the ADC sampling band small size equipment space constraints 17.4 mm × 26.2 mm + vertical welding to save space
Q1: Why does it consume power when no load?
Q2: How to output non-standard voltage such as 4.0V?
Q3: Input 5V output 3.3V is buck or boost? Electronic OK Wire & Solder Wire 8-Color Wrapping Wire Add to...
Product core features: Core
solution: TI TPS63020 chip
Voltage conversion: automatic switching between boost and boost, covering the full discharge cycle of lithium batteries ( 1.8 - 5.5V input) Three outputs
Jumper switching: 3.3V ( 1.3A ) / 4.2V (1A) / 5V ( 0.9A ) Energy
Efficiency Management Dual-mode: conventional mode (dynamic response priority) + power saving mode (light load efficiency > 90%) Ripple Control Full Ceramic capacitor design, no-load ripple as low as 5mVpp (industry 1/6)
Version Parameter & Pin Definition: Only Version V 1.00
Size: 17.4 × 26.2 mm
Switching Frequency: 2.4MH z
Operating Temperature: -40°C~85°C
Pin Definition:
VIN: Input positive ( 1.8 - 5.5V ) Reverse connection is strictly prohibited!
PS: Shorted = Power saving mode Remove LED to reduce power consumption again
EN: Suspended = Enable, Low = Off Do not ground! Jumper pads Voltage selection (3V3/4V2/5V) Multiple simultaneous shorting prohibited! User pain point solution Battery voltage drop caused by equipment crash 1.8V continuous regulated output ( 3.7V 1.8V throughout the regulated) traditional DCDC interference sensor signal 15mV ripple + 2.4MH z high frequency away from the ADC sampling band small size equipment space constraints 17.4 mm × 26.2 mm + vertical welding to save space
Q1: Why does it consume power when no load?
Q2: How to output non-standard voltage such as 4.0V?
Q3: Input 5V output 3.3V is buck or boost? Electronic OK Wire & Solder Wire 8-Color Wrapping Wire Add to...
Warranty & Returns
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- Return for refund within: 30 days
- Return for replacement within: 30 days
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