摘要:
A method of making a customized wireless communication device (100) is disclosed. It can include the steps of: inputting (110) customer requirements; generating (120) a checklist of customer requirements; providing (130) an extruded housing with an opening defining a pocket configured to receive electrical components; and removing (140) material from the extruded housing to form an industrial design having at least one receptacle integral to the extruded housing to receive an antenna module and display module. The method is adapted to allow a designer to customize the look and feel of an electronic device, such as wireless communication device. This method is attractive to a customer.
摘要:
A method of making a customized wireless communication device (100) is disclosed. It can include the steps of: inputting (110) customer requirements; generating (120) a checklist of customer requirements; providing (130) an extruded housing with an opening defining a pocket configured to receive electrical components; and removing (140) material from the extruded housing to form an industrial design having at least one receptacle integral to the extruded housing to receive an antenna module and display module. The method is adapted to allow a designer to customize the look and feel of an electronic device, such as wireless communication device. This method is attractive to a customer.
摘要:
A mobile electronic device 10 with an enhanced antenna farm 180 is disclosed. The device 10 can include: a housing 150 including a front housing 34 and a rear housing 86; and a user interface 62, the rear housing 86 includes an antenna farm 180. Advantageously, the antenna farm 180 allows wireless communication from or to multiple sources, is substantially isolated from EMI from electronic components in the device and can be made with a minimal Z dimension.
摘要:
A mobile electronic device 10 with an enhanced antenna farm 180 is disclosed. The device 10 can include: a housing 150 including a front housing 34 and a rear housing 86; and a user interface 62, the rear housing 86 includes an antenna farm 180. Advantageously, the antenna farm 180 allows wireless communication from or to multiple sources, is substantially isolated from EMI from electronic components in the device and can be made with a minimal Z dimension.
摘要:
A housing for a hand-held electronic device and a corresponding method for forming the same are provided. The housing includes an extruded element having a profile corresponding to a cross-section of the element, which is perpendicular to the direction of extrusion, where the extruded element includes within the profile, one or more areas of bulk material. The one or more areas of the bulk material include a machined surface along the length of the extruded element in the direction of the extrusion including a resulting machined profile. The resulting machined profile varies along the length of the extruded element in the direction of extrusion, while maintaining the continuity of the formed surface.
摘要:
A mobile electronic device with enhanced laminate construction is disclosed. The device 10 can include: a housing 150 including a front housing 34 and a rear housing 86; a user interface 62 connected to the front housing 34; and a stack module 152 including a printed circuit board 28 including an outwardly facing side 154 and an inwardly facing side 156, an electronic component 48 attached to the inwardly facing side 156 and a battery 32 attached with laminate 162 to the electronic component 48. Advantageously, this provides a durable low profile multilayer construction for use in connection with mobile electronic devices desired by users.
摘要:
A mobile electronic device with enhanced impact absorber is disclosed. The device can include: a housing including a front and a rear housing; and a user interface, the rear housing including an impact absorber located on an outer most portion of the rear housing. Beneficially, the impact absorber can provide enhanced impact mitigation. The impact absorber can allow a mobile electronic device to sustain an impact and mitigate damage to the housing and components therein.
摘要:
A mobile electronic device 10 with an enhanced chassis is disclosed. The device 10 can include: a frame 12 including an upper portion 14 and a lower portion 16 defining a narrow profile height 18 having an open top 20 and an open bottom 22; the frame 12 includes an interior portion 24 configured to surround components in a predetermined arrangement and an exterior portion 26; the exterior portion 26 of the frame 12 being connected to a printed circuit board (PCB) 28; and the open top 20 being configured to receive components on the printed circuit board 28 and the open bottom 22 being configured to receive a battery 32. Advantageously, the frame 12 height 13 provides a narrow profile structural system to securely support and connect components in connection with mobile electronic devices. Beneficially, the height is structurally passive and free from contributing to the Z dimension.
摘要:
A mobile electronic device 10 with an enhanced tolerance accumulator 106 is disclosed. The device 10 can include: a housing 150 including a front housing 34 and a rear housing 86; and a user interface 62, the rear housing 86 including a tolerance accumulator 106. Advantageously, this construction provides a robust and durable low profile mobile electronic device, desired by users and the tolerance accumulator 106 provides a durable structure capable of expanding or contracting, as necessary.
摘要:
A housing for a hand-held electronic device and a corresponding method for forming the same are provided. The housing includes a first extruded element having a profile corresponding to a cross-section of the element, which is perpendicular to the direction of extrusion. The housing additionally includes a second extruded element, separate from the first extruded element, having a profile corresponding to a cross-section of the element, which is perpendicular to the direction of extrusion. At least complementary sections of the first extruded element and the second extruded element are respectively removed, such that when the first extruded element and the second extruded element are coupled together at least a portion of the originally extruded profiles, after the removal of the complementary sections of each of the first extruded element and the second extruded element, intersect without interfering.