Source: https://patents.google.com/patent/US9971448B2/en
Timestamp: 2019-11-19 21:36:40
Document Index: 744946489

Matched Legal Cases: ['§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1', '§ 122', '§ 1']

US9971448B2 - Flexible electronic devices - Google Patents
Flexible electronic devices Download PDF
US9971448B2
US9971448B2 US15/419,730 US201715419730A US9971448B2 US 9971448 B2 US9971448 B2 US 9971448B2 US 201715419730 A US201715419730 A US 201715419730A US 9971448 B2 US9971448 B2 US 9971448B2
US15/419,730
US20170139532A1 (en
2011-09-30 Priority to US13/250,227 priority Critical patent/US8929085B2/en
2015-01-05 Priority to US14/589,712 priority patent/US9274562B2/en
2016-02-26 Priority to US15/055,432 priority patent/US9557874B2/en
2017-01-30 Application filed by Apple Inc filed Critical Apple Inc
2017-01-30 Priority to US15/419,730 priority patent/US9971448B2/en
2017-05-18 Publication of US20170139532A1 publication Critical patent/US20170139532A1/en
2018-05-15 Publication of US9971448B2 publication Critical patent/US9971448B2/en
229910002096 lithium permanganates Inorganic materials 0 description 1
As shown in FIG. 11, flexible battery 34 may include lubricious separator layers such as slip layers 82. Slip layers 82 may be interposed between electrode structures such as battery layers 80. Providing battery 34 with lubricious separator layers may help layers 80 slide or glide with respect to other layers 80 thereby allowing battery 34 to flex. Lubricious separator 82 may be formed from tetrafluoroethylene, polytetrafluoroethylene (e.g., Teflon®), or other suitable materials. In the example of FIG. 11, every other separator layer in battery 34 is a slip layer such as slip layers 82. This is merely illustrative. If desired, separator layers S/E may be lubricious, every second separator layer between layers 82 may be lubricious, a single lubricious layer may be provided, or other configurations in which battery 34 includes a lubricious layer such as layer 82 are possible.
FIG. 19 shows an illustrative portion of housing 12 in the vicinity of one of multi-stable regions 110. As shown in FIG. 19, multi-stable regions 110 of housing 12 may include one or more bi-stable protrusions such as bulges 113. Bulges 113 may be bi-stable bulges that have an external (i.e., convex) stable position and an internal (i.e., concave) stable position. Flexing bottom portion 116 as indicated by arrows 118 may cause bulges 113 to “pop” into or out of device 10. Housing 12 may be provided with a stable bent position in the configuration in which bulges 113 bulge inward and another stable bent position in the configuration in which bulges 113 bulge outward of device 10. This is merely illustrative. If desired, housing 12 may be configured to have a shape that allows a bi-stable portion 110 to be formed at any location along a length of housing 12 as shown in FIG. 20.
a display having an array of pixels and having a rigid cover layer over the array of pixels;
a flexible fabric layer;
a touch sensor that receives user input on the flexible fabric layer; and
processing circuitry that controls the array of pixels based on the user input.
a flexible fabric material;
an array of light-emitting elements mounted to the flexible fabric material;
a flexible touch sensor that detects user input on the flexible fabric material; and
processing circuitry that controls the light-emitting elements based on the user input.
14. A wrist-watch electronic device, comprising:
a display having a rigid cover layer;
a flexible member coupled to the display;
a sensor that detects user input on the flexible member; and
processing circuitry that gathers signals from the sensor and that controls the display based on the signals.
US15/419,730 2011-09-30 2017-01-30 Flexible electronic devices Active US9971448B2 (en)
US13/250,227 US8929085B2 (en) 2011-09-30 2011-09-30 Flexible electronic devices
US14/589,712 US9274562B2 (en) 2011-09-30 2015-01-05 Flexible electronic devices
US15/055,432 US9557874B2 (en) 2011-09-30 2016-02-26 Flexible electronic devices
US15/419,730 US9971448B2 (en) 2011-09-30 2017-01-30 Flexible electronic devices
US15/974,545 US10318061B2 (en) 2011-09-30 2018-05-08 Flexible electronic devices
US16/421,886 US20190278422A1 (en) 2011-09-30 2019-05-24 Flexible Electronic Devices
US15/055,432 Continuation US9557874B2 (en) 2011-09-30 2016-02-26 Flexible electronic devices
US15/974,545 Continuation US10318061B2 (en) 2011-09-30 2018-05-08 Flexible electronic devices
US20170139532A1 US20170139532A1 (en) 2017-05-18
US9971448B2 true US9971448B2 (en) 2018-05-15
ID=47116317
US13/250,227 Active 2032-08-18 US8929085B2 (en) 2011-09-30 2011-09-30 Flexible electronic devices
US14/589,712 Active US9274562B2 (en) 2011-09-30 2015-01-05 Flexible electronic devices
US15/055,432 Active US9557874B2 (en) 2011-09-30 2016-02-26 Flexible electronic devices
US15/419,730 Active US9971448B2 (en) 2011-09-30 2017-01-30 Flexible electronic devices
US15/974,545 Active US10318061B2 (en) 2011-09-30 2018-05-08 Flexible electronic devices
US16/421,886 Pending US20190278422A1 (en) 2011-09-30 2019-05-24 Flexible Electronic Devices
US (6) US8929085B2 (en)
EP (2) EP3299927A1 (en)
JP (1) JP6067717B2 (en)
KR (3) KR101961885B1 (en)
CN (2) CN107577274A (en)
AU (2) AU2012316357B2 (en)
WO (1) WO2013048925A2 (en)
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