US2023261121A1PendingUtilityA1

Photovoltaic cells for a portable electronic device

Assignee: GARMIN SWITZERLAND GMBHPriority: Mar 20, 2020Filed: Apr 27, 2023Published: Aug 17, 2023
Est. expiryMar 20, 2040(~13.6 yrs left)· nominal 20-yr term from priority
H10F 77/251H10F 77/247H10F 19/902H10F 71/121H10F 19/00H10F 19/37H10F 77/211H01L 31/022425G02F 1/13324G02F 1/13338H01L 31/1804G04C 10/02H01L 31/042H01L 31/0504H02S 20/30Y02E10/547
64
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

Systems and methods for generating electrical current from at least one photovoltaic cell is described herein. The photovoltaic cell may be disposed over a display of an electronic device. The photovoltaic cell may comprise first and second conductive layers and a photovoltaic layer. The first conductive layer may be etched such that a width of the metal layer is less than a width of the photovoltaic layer providing visibility to the display disposed below. In some embodiments, a capacitive touch sensor is disposed between the metal layer and the absorber layer for providing interaction with a user.

Claims

exact text as granted — not AI-modified
Having thus described various embodiments of the invention, what is claimed as new and desired to be protected by Letters Patent includes the following: 
     
         1 . A photovoltaic power system for an electronic device, the photovoltaic power system comprising:
 a capacitive touch panel comprising an indium tin oxide array configured to detect variations in capacitance; and   at least one photovoltaic cell comprising:
 a first layer comprising a first conductive electrode; and 
 a second layer electrically connected to the first layer and configured to generate electrical current when exposed to electromagnetic radiation; and 
 a third layer comprising a second conductive electrode, 
 wherein a first layer width is less than a second layer width; and 
 wherein the capacitive touch panel is disposed above the first layer. 
   
     
     
         2 . The photovoltaic power system of  claim 1 ,
 wherein the first layer width is between four and ten micrometers,   wherein the second layer width is between ten and fifteen micrometers, and   wherein the first conductive electrode comprises at least one of microcrystalline silicon, amorphous silicon, and perovskites for generating the electrical current.   
     
     
         3 . The photovoltaic power system of  claim 1 ,
 wherein the first layer width is ten micrometers, and   wherein the second layer width is fourteen micrometers.   
     
     
         4 . The photovoltaic power system of  claim 1 ,
 wherein the first layer width is seven micrometers, and   wherein the second layer width is ten micrometers.   
     
     
         5 . The photovoltaic power system of  claim 1 , wherein the at least one photovoltaic cell is a first photovoltaic cell; and
 further comprising a second photovoltaic cell comprising:
 a third layer comprising a second metal electrode; and 
 a fourth layer electrically connected to the third layer and configured to generate electrical current when exposed to electromagnetic radiation, 
 wherein a third layer width is greater than the first layer width, and 
   wherein the first photovoltaic cell and the second photovoltaic cell are electrically connected in series.   
     
     
         6 . The photovoltaic power system for  claim 1 , further comprising:
 an interior portion comprising the at least one photovoltaic cell; and   an exterior portion comprising an exterior photovoltaic cell disposed around an outer edge of the interior portion.   
     
     
         7 . The photovoltaic power system of  claim 1 , wherein the photovoltaic power system is configured to be connected to and provide power to at least one of a wearable and a handheld electric device. 
     
     
         8 . A photovoltaic power system for an electronic device, the photovoltaic power system comprising:
 a capacitive touch sensor comprising an indium tin oxide array configured to detect variations in capacitance; and   a base layer comprising:
 a touch sensor; 
 at least one photovoltaic cell comprising:
 a first layer comprising a first conductive electrode; and 
 a second layer electrically connected to the first layer and configured to generate electrical current when exposed to electromagnetic radiation; and 
 a third layer comprising a second conductive electrode, 
 wherein a first layer width is less than a second layer width; and 
 wherein the capacitive touch sensor is disposed above the first layer. 
 
   
     
     
         9 . The photovoltaic power system of  claim 8 ,
 wherein the second layer width is between ten and fifteen micrometers, and   wherein the first layer width is between four and ten micrometers.   
     
     
         10 . The photovoltaic power system of  claim 8 ,
 wherein the first layer width is seven micrometers, and   wherein the second layer width is ten micrometers.   
     
     
         11 . The photovoltaic power system for  claim 8 , further comprising:
 an interior portion comprising the at least one photovoltaic cell and a second photovoltaic cell,   wherein the second photovoltaic cell comprises a metal electrode layer comprising a width greater than the first layer width; and   an exterior portion comprising at least one exterior photovoltaic cell disposed around an outer edge of the interior portion.   
     
     
         12 . The photovoltaic power system of  claim 8 , wherein the base layer is configured to be disposed above a liquid-crystal display and patterned to provide minimal visual obstruction of the liquid-crystal display. 
     
     
         13 . The photovoltaic power system of  claim 8 , wherein the first conductive electrode comprises at least one of microcrystalline silicon, amorphous silicon, and perovskite for generating the electrical current.

Join the waitlist — get patent alerts

Track US2023261121A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.