Sabrina Yeh - Laguna Beach CA, US Tracy Ho - San Diego CA, US Yuko Nishikawa - La Jolla CA, US Toshiyuki Suzuki - San Diego CA, US
Assignee:
SONY CORPORATION - Tokyo SONY ELECTRONICS, INC. - Parkridge NJ
International Classification:
G06F 3/048
US Classification:
715835
Abstract:
A graphical user interface (GUI) renderable on a television display. The GUI includes a plurality of selectable media categories, wherein the plurality of selectable media categories includes at least one selectable media item. The plurality of selectable media categories may include a photo media category and a music media category. The GUI further includes a workspace window comprising sections, wherein each section is associated with one of the plurality of selectable categories, and wherein the workspace window responsive to a user selecting a media item renders a graphical representation of the user selected media item in its corresponding section. Moreover, the GUI includes a preview window, wherein the preview window graphically displays a content of the user selected media item, wherein the preview occurs automatically and immediately after the user selected media item. Thus, changes as they occur can be viewed without the need to exit the edit mode.
Methods For Prelithiation Of Silicon Containing Electrodes
- Irvine CA, US Xiaohua Liu - Irvine CA, US David J. Lee - Irvine CA, US Tracy Ho - Irvine CA, US Mai Vietnam - Irvine CA, US Benjamin Yong Park - Irvine CA, US Frederic Bonhomme - Irvine CA, US
International Classification:
H01M 4/36 H01M 4/38 H01M 4/04
Abstract:
The present application describes a method of forming an energy storage device that directly adds a lithium layer (such as a lithium foil or otherwise deposited lithium) into the cell stack during cell assembly for prelithiating. The method includes providing a silicon-based anode, providing a cathode, positioning a separator between the anode and the cathode, and disposing a lithium layer between the silicon-based anode and the separator, such that the lithium layer is in contact with the anode.
Methods For Prelithiation Of Silicon Containing Electrodes
- Irvine CA, US Xiaohua Liu - Irvine CA, US David J. Lee - Irvine CA, US Tracy Ho - Garden Grove CA, US Mai Vietnam - Stanton CA, US Benjamin Yong Park - Mission Viejo CA, US Frederic Bonhomme - Irvine CA, US
International Classification:
H01M 4/36 H01M 4/38 H01M 4/04
Abstract:
The present application describes a method of forming an energy storage device that directly adds a lithium layer (such as a lithium foil or otherwise deposited lithium) into the cell stack during cell assembly for prelithiating. The method includes providing a silicon-based anode, providing a cathode, positioning a separator between the anode and the cathode, and disposing a lithium layer between the silicon-based anode and the separator, such that the lithium layer is in contact with the anode.
Silicon-Based Energy Storage Devices With Carboxylic Ether, Carboxylic Acid Based Salt, Or Acrylate Electrolyte Containing Electrolyte Additives
- Irvine CA, US Benjamin Yong Park - Mission Viejo CA, US Ian Browne - Orange CA, US Tracy Ho - Garden Grove CA, US Sung Won Choi - San Diego CA, US
International Classification:
H01M 10/0567 H01M 4/38 H01M 4/587 H01M 4/36
Abstract:
Electrolytes and electrolyte additives for energy storage devices comprising a carboxylic ether, a carboxylic acid based salt, or an acrylate electrolyte are disclosed. The energy storage device comprises a first electrode and a second electrode, wherein at least one of the first electrode and the second electrode is a Si-based electrode, a separator between the first electrode and the second electrode, an electrolyte, and at least one electrolyte additive selected from carboxylic ethers, carboxylic acid based salts, and acrylates.