摘要:
A support structural member and a display device are provided by the present application. The support structural member includes: a support frame, having a screen body support surface, in which the support frame includes a first sliding support member and a second sliding support member arranged opposite to each other, and the first sliding support member and the second sliding support member are movably connected in a first direction; a driving portion, including a first driving mechanism, in which the first driving mechanism is configured to drive the first sliding support member and the second sliding support member to move relatively to each other in the first direction to drive the first sliding support member and the second sliding support member approach to or far away from each other. The present application can increase the stretching- and-shrinking speed of the support frame, and further can increase the unfolding speed and the storage speed of the display device.
摘要:
Disclosed are a flexible display screen and a flexible display apparatus. The flexible display screen comprises a display device (21), a flexible substrate (22), a support structure (23) and a drive chip (24). The display device (21) is positioned on the flexible substrate (22), and the flexible substrate (22) is positioned on the support structure (23). A groove (25) is provided in the support structure (23), and the groove (25) is used to receive the drive chip (24). Since the groove (25) for receiving the drive chip (24) is provided in the support structure (23) of the flexible display screen. The drive chip (24) will not cause the screen body of the flexible display screen to bend, thereby not affect the display effect of the flexible display screen.
摘要:
Provided are a thin film transistor and a manufacturing method thereof, a display panel, and a display apparatus. The thin film transistor comprises an active region (11), a gate insulating layer (12), a gate (13), a source (14) and a drain (15), a passivation layer (16), and a planarization layer (17) that are successively formed on a flexible substrate (10), wherein a protective layer (18) is formed between the passivation layer (16) and the planarization layer (17), and located directly above the active region (11) and the gate (13). The protective layer (18) is used to protect the semiconductor material of the thin film transistor in a perpendicular area of protective layer (18). Therefore, the stress on part of the materials of the thin film transistor is reduced during bending, and damage to the semiconductor material is avoided during bending of the thin film transistor device, thus improving the quality of the device.
摘要:
The present invention provides a pixel arrangement structure, a vapor deposition mask and an irregular-shaped display screen. The pixel arrangement structure is used for irregular-shaped display of an irregular-shaped display screen, the pixel arrangement structure is provided with several rows and/or several columns of pixel display units, wherein neighboring rows and/or neighboring columns of the pixel display units are arranged in parallel within an irregular-shaped display region (105). By arranging the pixel display units within the irregular-shaped display region (105) in such a way that the neighboring rows and/or neighboring columns of the pixel display units are parallel rows or columns, a confusion phenomenon at the interface between an irregular-shaped display region (105) and a non-display region (107) on an edge of the irregular-shaped display region (105) can be eliminated.
摘要:
A display is disclosed, including a pixel structure (10), an integrated circuit (20), and diagonal wires (30). The pixel structure (10) includes a plurality of units. Each unit includes a first pixel unit (100a) and a second pixel unit (100b). The first pixel unit (100a) is axial symmetrical to the second pixel unit (100b). The arrangement of the pixel structure (10) is RGBBGR. The integrated circuit (20) has a plurality of ports arranged in a form of sequential red sub-pixel port, green sub-pixel unit port, and blue sub-pixel port repeatedly. The diagonal wires (30) includes a first crossing diagonal wire (30a) and a second crossing diagonal wire (30b) arranged crosswise. The first crossing diagonal wire (30a) is configured to connect a data line of a column where the red sub-pixel (R) of the second pixel unit (100b) is positioned, to the red sub-pixel port, and the second cross diagonal wire (30b) is configured to connect a data line of a column where the green sub-pixel (G) of the second pixel unit (100b) is positioned, to the green sub-pixel port. With the above display, the output mode and data transmission of the arrangement of the pixels match the V-delta structure.
摘要:
A data drive circuit, a drive method for data drive circuit and an organic light emitting display that has the data drive circuit. The data drive circuit has a data signal multiplexing structure, and also comprises a power source line (50) for connecting to a power source (Vref) and second transistors (T2' ... Tm') connected to the power source line (50), the second transistors (T2' ... Tm') have source electrodes electrically connected to the power source line (50), gate electrodes electrically connected to the same line (Sel_1) of the control lines, and drain electrodes respectively electrically connected to different lines (Dj') of the signal lines at a connection point between a first transistor (T1 ... Tm) and the display area (40). By connecting a compensation power source (Vref) to the signal lines (D1' ... Dm') for initializing the pixel units (11 ... mm), the influence of stray capacitance in the pixel units (11 ... mm) is alleviated, thereby effectively improving the response properties and display properties of an organic light emitting display apparatus equipped with this data drive circuit.
摘要:
Provided are a pixel structure and an organic light-emitting display using same. The pixel structure comprises multiple pixels, each pixel comprises multiple sub-pixels, at least one pixel forms a pixel unit, pixel units that are longitudinally adjacent are arranged in a vertical mirror manner, and/or pixel units that are horizontally adjacent are arranged in a horizontal mirror manner. Through a reasoned structure of pixel arrangement and by deposition of sub-pixels of adjacent pixels through a shared mask aperture, the area of mask apertures can be increased during deposition, the difficulty of manufacture with the mask technique is reduced and the difficulty of the deposition process is also reduced. No gap needs to be reserved when the sub-pixels of the adjacent pixels of the mask are deposited, and genuinely high PPI can be achieved while maintaining a high aperture ratio. In addition, mask strength is increased, thus preventing deformation during use, improving product yield, increasing service life and reducing costs.
摘要:
A pixel circuit, a display device, and a drive method therefor. The pixel circuit comprises: a first power source (ELVDD), a second power source (ELVSS), an organic light-emitting diode (OLED), a first capacitor (Cl), a first transistor (Tl), a second transistor (T2), and a third transistor (T3), wherein the first transistor (Tl) is configured to compensate a threshold voltage of the third transistor (T3). According to the drive method, the pixel circuit is driven to emit light by sequentially applying scanning signals to the pixel circuit on scanning lines (Snl, Sn2, Sn3). The pixel circuit and the method for driving the pixel circuit can improve the response characteristics of active matrix organic light-emit- ting diodes, thereby enabling the display device to display images having uniform image quality.