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2025粤港澳车展:小米YU7首次公众亮相 将于7月上市_我的网站

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[ 新车首发] 在5月31日开幕的2025粤港澳车展上,小米YU7(参数|询价)迎来首次公众亮相。    
The general assembly of the Lixun-1 upper stage Photo: Courtesy of CAS Space
    The general assembly of the Lixun-1 upper stage Photo: Courtesy of CAS Space
The Lixun-1 upper stage Photo: Courtesy of CAS Space
    The Lixun-1 upper stage Photo: Courtesy of CAS Space
Lixun-1 upper stage, a versatile "space tug" developed by China's commercial space firm CAS Space, is scheduled to make its maiden flight in the first quarter of 2027 after completing a series of key propulsion-system tests, the developer and its chief designer told the Global Times on Tuesday.
The "tug" is designed to ferry satellites from one orbit to another and support missions ranging from constellation deployment to lunar exploration. 
While the main stages of a rocket carry payloads from the ground into an initial orbit, an upper stage takes over once the craft is in space. By repeatedly restarting its engine and changing orbit, Lixun-1 can deliver satellites to higher or different orbits, distribute multiple spacecraft to separate destinations during a single launch, or send probes onto trajectories toward the moon and beyond, Global Times learned from the developer.
Yang Haoliang, chief designer of the Lixun-1 upper stage, compared the system to a shuttle service. "If the regular stages of a launch vehicle are like a long-distance bus," - they carry the upper stage and satellites from Earth to a near-Earth parking orbit - the upper stage then takes over as a "space tug," carrying its satellite "passengers" onward to their designated orbital "stops," Yang explained. 
That capability can have a direct impact on how efficiently satellites are launched and operated, Yang said. If a satellite has to climb from an initial orbit to its final destination using its own engine, the process can consume a considerable amount of onboard propellant and reduce the fuel available during its operational life. An upper stage can instead perform that orbital transfer, helping conserve satellite fuel and potentially extend its service life.
It can also make one rocket launch do more work. Instead of releasing a batch of satellites into roughly the same orbit, Lixun-1 can repeatedly ignite its engine and maneuver between deployments, sending different satellites to different altitudes and inclinations. Yang said this would help accelerate constellation deployment while improving the efficiency of individual launches.
The practical ambitions behind the system are backed by a major technical milestone reached this month. In August, Lixun-1 completed its PV-001 integrated propulsion-system coordination firing test, during which the entire system operated smoothly for 566 seconds.  
Yang told the Global Times that the current Lixun-1 upper stage has a thrust of 20 kilonewtons and can achieve a specific impulse of 315 seconds, which he described as reaching an internationally leading level. The August firing covered the planned profile for the maiden mission, an important step before the system proceeds to flight testing.
The test was more than a demonstration of the engine itself. As an important system-level verification during development, it examined the coordination and engineering reliability of the engine pressurization system, propellant delivery system, propellant management system and servo-control system under the fully integrated configuration.
Of a series of tests that accumulated 5,211 seconds of firing time, the latest one focused on three core technologies: a high-thrust, high-performance 20-kilonewton upper-stage engine capable of multiple starts; balanced propellant delivery from multiple parallel tanks; and a highly reliable integrated electrical system. Their successful verification means Lixun-1 has completed its system-level testing and is ready to move into the flight-test phase, according to the developer.
Lixun-1 has been designed as a modular and generally adaptable upper stage rather than a system tied to only one rocket. It is intended to work with CAS Space's Kinetica-2 and Kinetica-2 heavy-lift variants as well as other launch vehicles, Yang said.
When paired with the Kinetica-2 family, Lixun-1 could significantly expand the rocket's mission range. For communications missions, it could deliver satellites to geosynchronous transfer orbit or even directly to geosynchronous orbit, conserving satellite propellant while supporting the deployment of high-throughput satellites and future 6G communications spacecraft.
For multi-satellite missions, the combination could distribute spacecraft to different orbital altitudes and inclinations during a single launch, potentially serving both low-Earth-orbit constellations and medium- or high-orbit payloads. For deep-space missions, it could place probes onto Earth-moon transfer trajectories and support lunar exploration, Yang said.
The upper stage is designed to be able to conduct more than 20 engine ignitions, autonomously plan orbital-transfer routes and operate under the vacuum and extreme temperature conditions of space. After completing payload deployment, it can also carry out orbital disposal maneuvers to reduce space-debris risks.
Yang said the Lixun-1 and Kinetica-2 combination is designed to cover the vast majority of commercial satellite launch requirements while retaining the ability to participate in major national space projects. More broadly, the upper stage forms part of CAS Space's effort to build launch capabilities reaching medium and high Earth orbits and deep space, extending the reach of China's commercial space sector toward higher orbits and more distant destinations.
。目前新车已经开启咨询,尚未接受预订,计划将于7月正式上市。

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回顾新车,外观采用封闭式前脸设计,两侧大灯组内部配备了横纵交错的LED日间行车灯,同时在灯组内部设计了一个贯穿至前机舱盖的风道设计。此外新车还采用蚌式前盖,面积高达3.11㎡,下方容纳了141L的超大电动前备箱,最多支持8种开合方式。
车身侧面,新车整体造型展现出了轿跑SUV的设计线条,前翼子板处还设有通风开口,轮圈则采用20英寸五辐式设计,内部还搭配了黄色的布雷博制动卡钳。新车长宽高分别为4999/1996/1608(1600)mm,轴距为3000mm,属于中大型SUV。
车尾部分,新车配备双段式的车顶扰流板,并在后备厢末端配备了小尺寸的襟翼;尾灯组采用立体光环尾灯设计,点亮后具有不错的辨识度。
内饰注重材质的打造,结合了大面积的皮质材质、木纹饰板和翻毛皮。小米天际屏全景显示让信息展现更清晰、更全面,座舱搭载第三代骁龙8移动平台芯片,启动、升级更快,澎湃OS车机系统可以实现三个界面同时展示,并可以随时将手机应用转移到车机屏幕上,还能实现与家庭的小米生态互联。
车辆前排配备零重力座椅,前排两个座椅还提供了更宽的腿托,座椅可一键放倒。后排座椅可电动调节,并配备车载冰箱和独立屏幕。辅助驾驶方面,小米YU7配备小米HAD辅助驾驶系统,端到端辅助驾驶,全系标配激光雷达,芯片算力700TOPS。
动力方面,YU7会提供单电机版本和双电机版本,总体的功率表现会比SU7稍大一些。先来看单电机版,采用后轮驱动,电机最大功率为235千瓦,最高时速240km/h,配备弗迪磷酸铁锂电池,CLTC纯电续航里程为835km。双电机版本前后电机总功率分别为365千瓦/508千瓦,最高车速253km/h,最快0-100km/h加速3.23秒,配备宁德时代三元锂电池,CLTC纯电续航里程分别为770km/760km。底盘方面,其配备连续阻尼可变减震器以及闭式双腔空气弹簧。(文/ 郭辰)

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Published on:19:54:45


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