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    • 1. 发明授权
    • Motor vehicle roof with outside solar generator
    • 机动车顶与外太阳能发电机
    • US06423894B1
    • 2002-07-23
    • US09618118
    • 2000-07-17
    • Werner PätzThomas GanzHelmut TeschnerReinhard Wecker
    • Werner PätzThomas GanzHelmut TeschnerReinhard Wecker
    • H01L31042
    • B60J7/00Y02T10/90Y10S136/291
    • A motor vehicle roof with a solar generator which is securely attached on the outside on the solid roof skin for producing solar current for the vehicle. The solar generator can be adjusted between a first spatially compact configuration and a second, less spatially compact configuration in which its active solar surface projected onto the plane of the roof is larger than in the first configuration. The invention also relates to a motor vehicle roof with an attachment element which runs in the lengthwise direction of the roof and which is mounted externally on the solid roof skin and which is made such that a mobile flat solar generator can be pushed into the attachment element and is held in the working configuration by it to produce solar current.
    • 一种具有太阳能发电机的机动车辆车顶,其牢固地附接在固体屋顶皮肤上的外部,用于产生用于车辆的太阳能电流。 太阳能发电机可以在第一空间紧凑的构造和第二,较小的空间紧凑的构造之间进行调整,其中投射到屋顶的平面上的活动太阳能表面大于第一构型。 本发明还涉及具有附接元件的机动车辆车顶,该附接元件在屋顶的长度方向上延伸,并且外部安装在固体屋顶皮上,并且被制成使得移动平板太阳能发电机能够被推入附接元件 并且通过它被保持在工作配置中以产生太阳能电流。
    • 2. 发明授权
    • Motor vehicle roof with adjustable closure element
    • 机动车顶与可调闭合元件
    • US06485090B1
    • 2002-11-26
    • US09631992
    • 2000-08-03
    • Werner PätzThomas GanzHelmut TeschnerReinhard Wecker
    • Werner PätzThomas GanzHelmut TeschnerReinhard Wecker
    • B60J704
    • B60J7/003
    • A motor vehicle roof with a roof opening which can be closed or at least partially exposed by a displaceable closure element (10) which has an electrical element (12), an displaceable headliner part (20) for concealing the closure element and at least one coupling element (18) which acts as a driver to entrain the headliner part in the displacement motion of the closure element. The coupling element furthermore provides for electrical contact between the electrical element of the closure element and a contact element (32) which is provided on the headliner part to establish electrical contact between the electrical element of the closure element and a vehicle-mounted electrical element.
    • 一种具有屋顶开口的机动车辆车顶,其可以通过具有电气元件(12)的可移位闭合元件(10)封闭或至少部分地暴露,用于隐藏封闭元件的至少一个可移动的顶篷部件(20) 耦合元件(18),其用作驱动器以将顶篷部件夹带在封闭元件的位移运动中。 联接元件还提供了闭合元件的电气元件与设置在车顶衬板部分上的接触元件(32)之间的电接触,以建立闭合元件的电气元件与车载电气元件之间的电接触。
    • 3. 发明授权
    • Solar cover for a motor vehicle roof and a process for its manufacture
    • 汽车屋顶的太阳能盖板及其制造工艺
    • US06517148B1
    • 2003-02-11
    • US09597459
    • 2000-06-19
    • Helmut TeschnerThomas GanzReinhard WeckerWerner Pätz
    • Helmut TeschnerThomas GanzReinhard WeckerWerner Pätz
    • B60J700
    • B60J7/00Y02T10/90
    • A solar cover for a motor vehicle roof, which is provided with an outside transparent cover plate (12) and an inside cover (14) between which at least one solar cell (18) is embedded, an electrical contact (28) from which the solar current from the at least one solar cell is directed to the motor vehicle, and an electrical connector element which produces electrical contact between the at least one solar cell and the contact is embedded between the cover plate and the cover. The contact (28) is located in the horizontal direction outside of the area of the cover plate (12) which is covered by the cover (14) and the electrical connector (26) extends in the horizontal direction beyond the area covered by the cover to the contact.
    • 一种用于机动车辆车顶的太阳能盖,其设置有外部透明盖板(12)和内部盖(14),在其内嵌入至少一个太阳能电池(18),电接触件(28) 来自至少一个太阳能电池的太阳能电流被引导到机动车辆,并且在至少一个太阳能电池和触点之间产生电接触的电连接器元件嵌入在盖板和盖之间。 接触件(28)位于盖板(12)的被盖(14)覆盖的区域外的水平方向上,并且电连接器(26)在水平方向上延伸超过由盖子覆盖的区域 到联系人。
    • 6. 发明授权
    • Process for auxiliary air conditioning of a motor vehicle
    • 汽车辅助空调的过程
    • US06626003B1
    • 2003-09-30
    • US09492840
    • 2000-01-27
    • Franz-Josef KortümReinhard Wecker
    • Franz-Josef KortümReinhard Wecker
    • F25B2700
    • B60H1/00778B60H1/00B60H1/00428B60H1/22H02J7/35Y02T10/88
    • Process for air conditioning of the passenger compartment of a motor vehicle by means of an air conditioning system (7) using solar power which is obtained via at least one solar module (1) which is attached to the motor vehicle, especially on the motor vehicle roof, and which is also used for charging a battery (4) of the motor vehicle, in which the solar power is used additionally or alternatively to charge the motor vehicle battery (4), and also to operate a ventilation system (6) when the vehicle is unoccupied, and in which the air conditioning system (7) is activated prior to entry of a passenger into the passenger compartment, the air conditioning system being operated so as to draw most of its power from the motor vehicle battery (4).
    • 使用通过至少一个太阳能模块(1)获得的使用太阳能的空调系统(7)进行机动车辆的空调的处理,太阳能模块(1)连接到机动车辆,特别是机动车辆 屋顶,并且还用于对机动车辆的电池(4)进行充电,其中额外地或替代地使用太阳能来对汽车电池(4)充电,并且还可以在通风系统(6) 车辆未占用,并且其中空调系统(7)在乘客进入乘客舱之前被启动,空调系统被操作以从机动车辆电池(4)吸取其大部分动力, 。
    • 7. 发明授权
    • Apparatus for shading surfaces having a spread roof sheathing and
photovoltaic elements provided on same
    • 用于遮蔽表面的装置,其具有铺设的屋顶护套和设置在其上的光电元件
    • US5478407A
    • 1995-12-26
    • US175774
    • 1994-01-03
    • Andreas DorisonReinhard WeckerHans-Peter GanterGerd Schmid
    • Andreas DorisonReinhard WeckerHans-Peter GanterGerd Schmid
    • E04B7/14H02S20/10H02S20/20H01L31/042
    • E04B7/14H02S20/10H02S20/20Y02B10/12Y10S136/293
    • In an apparatus for shading surfaces, in particular for shading spaces which can be negotiated on foot, or the like, comprising at least a roof sheathing which is stretched on supports or the like carrier elements at a spacing relative to the surface to be shaded, or a corresponding cable netting assembly, as a carrier assembly, on the outside of which are provided photovoltaic elements, the photovoltaic element or solar module is attached to the carrier assembly by intermediate elements with which distortion phenomena of the carrier assembly, which are caused by stretching, can be carried, and external forces can be transmitted to the carrier assembly. In addition a plurality of photovoltaic elements or solar modules of approximately the same orientation are to be connected in series and respective region and the latter are determined by the connected to a regulating system, wherein the solar modules of approximately the same orientation are preferably associated with a respective region and the latter are determined by the direction of incidence of the sunlight to be received, in dependence on the position of the sun.
    • 在用于遮蔽表面的装置中,特别是对于可以在脚上协商的阴影空间等,包括至少一个屋顶护套,其以相对于待遮蔽表面的间隔相对于支撑件或类似载体元件伸长, 或相应的电缆网组件作为载体组件,其外侧设置有光电元件,光电元件或太阳能模块通过中间元件附接到载体组件,中间元件由载体组件的变形现象引起,其由 拉伸,可以承载,并且外力能够传递到载体组件。 此外,大致相同取向的多个光电元件或太阳能模块将被串联连接并且相应的区域并且后者由连接到调节系统确定,其中大致相同取向的太阳能模块优选地与 根据太阳的位置,相应的区域和后者由待接收的阳光的入射方向决定。
    • 8. 发明授权
    • Solar roof for motor vehicles
    • 汽车太阳能屋顶
    • US6155635A
    • 2000-12-05
    • US276758
    • 1999-03-26
    • Reinhard Wecker
    • Reinhard Wecker
    • B60R16/04B60J7/00B60J7/043H01L31/048H02S40/34
    • B60J7/003B32B17/10018H01L31/02008H01L31/048H02S40/34Y02E10/50Y02T10/88
    • A solar roof for motor vehicles having a cover (10) with solar cells (22) which are located between an outside cover plate (20) and an inside covering (24), at least one power consumer which is supplied from the solar cells and which is separate from the solar cover (10), and a contact-making means for establishing an electrical connection between the solar cells (22) and the power consumer. The contact-making means has cover-side contacts (30) and roof-side contacts (42) which, at least in the closed solar cover end position, make an electrical connection between the solar cells and the power consumer. To make the cover-side contacts (30) as simple, space-saving and still reliable as possible, the cover-side are integrated within the solar cover (10).
    • 一种用于机动车辆的太阳能屋顶,其具有位于外盖板(20)和内盖(24)之间的具有太阳能电池(22)的盖(10),至少一个从太阳能电池供应的电力消耗器和 其与太阳能盖(10)分离,以及用于在太阳能电池(22)和电力消耗者之间建立电连接的接触装置。 接触制造装置具有覆盖侧触点(30)和屋顶侧触点(42),其至少在封闭的太阳能盖端位置中在太阳能电池和电力消耗者之间进行电连接。 为了使覆盖侧触点(30)尽可能简单,节省空间并且仍然可靠,盖侧集成在太阳能盖(10)内。
    • 10. 发明授权
    • Circuit arrangement of solar cells
    • 太阳能电池的电路布置
    • US5779817A
    • 1998-07-14
    • US655814
    • 1996-05-31
    • Reinhard Wecker
    • Reinhard Wecker
    • H01L31/04B60J7/04B60R16/02B60R16/03G05F1/67H01L31/042H01L31/048H02J7/00H02J7/35
    • G05F1/67B60J7/04H01L31/02021H01L31/048H02J7/355H02S10/40H02S40/38B60R16/03Y02B10/12Y02B10/14Y02E10/50Y10S323/906Y10S388/933Y10S454/90Y10T29/49355
    • A circuit arrangement with a first string of solar cells which are connected together in series and a second string of solar cells which are connected together in series, the electric power generated by the solar cells being used to operate an ohmic or inductive load. In contrast to known circuits, in which series-connected strings of solar cells are connected in parallel and have roughly identical no-load voltages, it is provided according to the invention that the strings of series-connected solar cells generate different no-load voltages to adapt to the current/voltage characteristic of the load. Preferably, at least one reverse-current blocking diode is connected in series with the string which generates a lower no-load voltage than the other. The series connection with a lower no-load voltage can be selectively formed with solar cells of the same no-load voltage by a smaller number of solar cells, or with solar cells of different power by the same number of solar cells with a lower no-load voltage. Furthermore, in one embodiment, the circuit arrangement is constructed for selective operation of a fan arrangement or for charging a battery by switching several strings of solar cells from a parallel interconnection to a series interconnection.
    • 串联连接在一起的第一串太阳能电池和串联连接在一起的第二太阳能电池组的电路装置,由太阳能电池产生的电力用于操作欧姆或电感负载。 与已知的电路相反,其中串联连接的太阳能电池串并联并具有大致相同的空载电压,根据本发明,提供串联太阳能电池串产生不同的空载电压 以适应负载的电流/电压特性。 优选地,至少一个反向电流阻塞二极管与产生比另一个低的空载电压的串串联连接。 具有较低空载电压的串联连接可以通过较少数量的太阳能电池或相同数量的具有较低无功功率的太阳能电池的不同功率的太阳能电池选择性地形成具有相同空载电压的太阳能电池 负载电压。 此外,在一个实施例中,电路装置构造成用于选择性地操作风扇装置或通过将若干串太阳能电池从并联互连切换到串联互连来对电池充电。