Abstract:
A solar cell unit, a solar cell array (30), a solar cell module (100) and a manufacturing method thereof are disclosed. The solar cell unit includes a cell (31) consisting of a cell substrate (311) and a plurality of secondary grid lines (312) disposed on a front surface of the cell substrate (311), in which the secondary grid lines (312) comprise an edge secondary grid line (3121) adjacent to an edge of the cell substrate (311) and a middle secondary grid line (3122) located inside of the edge secondary grid line (3121), and the at least one edge secondary grid line (3121) has a width greater than that of the middle secondary grid line (3122) ; a plurality of conductive wires (32) spaced apart from each other, the plurality of conductive wires (32) intersected and connected with the secondary grid lines (312).
Abstract:
A manufacturing method of a solar cell module is disclosed. The method includes: welding in high frequency a conductive wire constituted by a metal wire with a cell; superposing an upper cover plate, a front adhesive layer, the cell, a back adhesive layer and a back plate in sequence, and laminating them to obtain the solar cell module.
Abstract:
A solar cell module (100) and a manufacturing method thereof are disclosed. The solar cell module (100) includes an upper cover plate (10), a front adhesive layer (20), a cell (31), a back adhesive layer (40) and a back plate (50) superposed in sequence, a secondary grid line (312) being disposed on a front surface of the cell (31), a transparent film (60) being disposed between the front adhesive layer (20) and the cell (31), a conductive wire (32) being disposed on a surface of the transparent film (60) corresponding to the cell (31), the conductive wire (32) being inserted into the transparent film (60) and exposed therefrom, and being formed of a metal wire (321) and connected with the secondary grid line (312), the transparent film (60) having a melting point higher than the melting point of the front adhesive layer (20) and the back adhesive layer (40), the metal wire (321) including a metal wire body and a connection material layer (322) coating the metal wire body, and the conductive wire (32) being connected with the secondary grid line (312) by the connection material layer (322).
Abstract:
A solar cell module (100), a manufacturing method thereof, and a solar cell unit are disclosed. The solar cell module (100) includes an upper cover plate (10), a front adhesive layer (20), a cell array (30), a back adhesive layer (40) and a back plate (50) superposed in sequence, the cell array (30) comprising multiple cells (31), adjacent cells (31), connected by a plurality of conductive wires (32), which are constituted by a metal wire extending reciprocally between surfaces of the adjacent cells (31), the metal wire including a metal wire body (321), and a conductive adhesive (322), coating the metal wire body (321), the conductive wires (32) being in contact with the cells (31), the front adhesive layer (20) in direct contact with the conductive wires (32) and filling between adjacent conductive wires (32).
Abstract:
A solar cell support assembly includes supports (4); swing bars (2); beams (3) extended in a longitudinal direction and spaced from one another in a transverse direction, the beams (3) connected to the plurality of the swing bars (2) correspondingly, each of the beams (3) rotatably supported on the supports (4) and adapted to mount solar panels (5) thereon, each of the beams (3) comprising a hollow tube, and a wall thickness of each beam decreases gradually along a direction from a connecting position between the beam (3) and the swing bar (2) to two ends of the beam (3); a pushrod (9) connected to the swing bars (2) to drive the plurality of the swing bars (2) to rotate the beams (3), respectively; and a driving device (1) connected to the pushrod (9) to drive the pushrod (9) to move along the transverse direction.
Abstract:
A power battery assembly (1) comprises a battery circuit and a circuit protecting unit (100). The circuit protecting unit (100) is connected in series with the battery unit. The circuit protecting unit (100) comprises a relay (2) and a current sensing unit (3) connected in series with the battery circuit, a switching unit (5) connected with the relay (2) for controlling the switching of the relay (2), and a controller (4) connected with the switching unit (5) and the current sensing unit (3)to control the switching on or switching off the switching unit (5) based on comparison of the current value detected by the current sensing unit (3) and sent to the controller (4) with a first predetermined current value. An electric vehicle is also provided.
Abstract:
A conductive wire (32) of a solar cell unit, a solar cell unit, a solar cell array (30), a solar cell module (100) and a manufacturing method thereof are disclosed. The conductive wire (32) is constituted by a metal wire whose height is H, and whose width is W, a ratio of the height H and the width W being 1:1 to 6:1.
Abstract:
A solar cell array (30), a solar cell module (100) and a manufacturing method thereof are disclosed. The solar cell array (30) includes a plurality of cells (31) arranged in an n×m matrix form, in which in a row of cells, adjacent cells (31) are connected by the plurality of conductive wires (32), and at least two conductive wires (32) are constituted by a metal wire extending reciprocally between surfaces of the adjacent cells (31); in two adjacent rows of cells (31), a cell (31) in a a th row and a cell in a (a+1) th row are connected by the plurality of conductive wires (32), and at least two conductive wires (32) are constituted by a metal wire extending reciprocally between a surface of a cell (31) in a a th row and a surface of a cell (31) in a (a+1) th row. A secondary grid line (312) and a short grid line (33) are disposed on a front surface of the cell (31), and the secondary grid line (312) includes a middle secondary grid line (3122) intersected with the conductive wire (32) and an edge secondary grid line (3121) non-intersected with the conductive wire (32), the short grid line (33) being connected with the conductive wire (32) or at least one middle secondary grid line (3122).
Abstract:
A solar cell module (100) and a manufacturing method thereof are disclosed. The solar cell module includes (100) an upper cover plate (10), a front adhesive layer (20), a cell array (30), a back adhesive layer (40) and a back plate (50) superposed in sequence, the cell array (30) comprising a plurality of cells (31) arranged in a matrix form of multiple rows and multiple columns, at least two rows of the cells (31) being connected by a plurality of conductive wires, at least two conductive wires being constituted by a metal wire which extends reciprocally between surfaces of the cells (31) in different rows, the conductive wires contacting with the cells (31), the front adhesive layer (20) being in direct contact with the conductive wires and filling between adjacent conductive wires.
Abstract:
A conductive wire (32) of a solar cell unit, a solar cell unit, a solar cell array (30), a solar cell module (100) and a manufacturing method thereof are disclosed. The conductive wire (32) is constituted by a metal wire whose cross section has a width gradually decreasing in a direction away from a cell.