Kilovolt Pyroelectric Voltage Generation and Electrostatic Actuation With Fluidic Heating

Fuente: arXiv
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Main Authors: Ni, Di, Gund, Ved, Ivy, Landon, Lal, Amit
Format: Preprint
Published: 2024
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author Ni, Di
Gund, Ved
Ivy, Landon
Lal, Amit
author_facet Ni, Di
Gund, Ved
Ivy, Landon
Lal, Amit
contents Integrated micro power generators are crucial components for micro robotic platforms to demonstrate untethered operation and to achieve autonomy. Current micro robotic electrostatic actuators typically require hundreds to thousands of voltages to output sufficient work. Pyroelectricity is one such source of high voltages that can be scaled to small form factors. This paper demonstrates a distributed pyroelectric high voltage generation mechanism to power kV actuators using alternating exposure of crystals to hot and cold water (300C to 900C water temperature). Using this fluidic temperature control, a pyroelectrically generated voltage of 2470 V was delivered to a 2 pF storage capacitor yielding a 6.10 μJ stored energy. A maximum energy of 17.46 μJ was delivered to a 47 pF capacitor at 861 V. The recirculating water can be used to heat a distributed array of converters to generate electricity in distant robotic actuator sections. The development of this distributed system would enable untethered micro-robot to be operated with a flexible body and free of battery recharging, which advances its applications in the real world.
format Preprint
id arxiv_https___arxiv_org_abs_2411_02295
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Kilovolt Pyroelectric Voltage Generation and Electrostatic Actuation With Fluidic Heating
Ni, Di
Gund, Ved
Ivy, Landon
Lal, Amit
Robotics
Systems and Control
Integrated micro power generators are crucial components for micro robotic platforms to demonstrate untethered operation and to achieve autonomy. Current micro robotic electrostatic actuators typically require hundreds to thousands of voltages to output sufficient work. Pyroelectricity is one such source of high voltages that can be scaled to small form factors. This paper demonstrates a distributed pyroelectric high voltage generation mechanism to power kV actuators using alternating exposure of crystals to hot and cold water (300C to 900C water temperature). Using this fluidic temperature control, a pyroelectrically generated voltage of 2470 V was delivered to a 2 pF storage capacitor yielding a 6.10 μJ stored energy. A maximum energy of 17.46 μJ was delivered to a 47 pF capacitor at 861 V. The recirculating water can be used to heat a distributed array of converters to generate electricity in distant robotic actuator sections. The development of this distributed system would enable untethered micro-robot to be operated with a flexible body and free of battery recharging, which advances its applications in the real world.
title Kilovolt Pyroelectric Voltage Generation and Electrostatic Actuation With Fluidic Heating
topic Robotics
Systems and Control
url https://arxiv.org/abs/2411.02295