长光TW系列无人机技术规格

> 产品 >无人机 > 长光TW系列无人机技术规格

长光TW系列无人机技术规格

长航时和高效率:优化的燃油效率和轻质材料允许延长任务时间。
多有效载荷能力:通过模块化有效载荷支持不同的任务要求。
高空作业:能够在具有挑战性的环境中执行任务。
实时数据传输:确保无缝情报收集和分析。
自主和远程操作:减少人为干预并提高操作灵活性。

分享:
描述

 

 
 

Technical Specifications of Changguang TW Series UAV

Technical Specifications of Changguang TW Series UAV

Technical Specifications of Changguang TW Series UAV

Technical Specifications of Changguang TW Series UAV

Technical Specifications of Changguang TW Series UAV

 

TW 07 (Electric)

TW 12 (Electric)

TW 25 (Electric)

TW 50 (Electric)

TW 200 (Electric)

Wingspan

1.62m

2.20m

2.98m

3.68m

5.88m

Overall Dimensions

1.62*0.37*0.47m

2.20*0.45*0.68m

2.98*0.63*0.90m

3.68*0.68*1.14m

5.88*1.36*1.85m

Folded Dimensions

0.67*0.37*0.39m

1.10*0.45*0.50m

1.40*0.63*0.63m

1.90*0.68*0.76m

4.06*1.36*1.25m

Maximum Takeoff

7kg

13.2kg

25kg

50kg

200kg

Maximum Payload Capacity

1公斤

2kg

5kg

10kg

70kg

Maximum Flight Endurance

2h 10min

(Unloaded)

1h 40min

(With payload up to 10x triple EO/IR/Laser pods)

3h 20min

(Unloaded)

2h 40min

(With payload up to 10x triple EO/IR/Laser pods)

5h 20min

(Unloaded)

4h

(With payload up to 40x triple EO/IR/Laser pods)

6h 30min

(Unloaded)

5h

(With payload up to 40x triple EO/IR/Laser pods)

8h

(Unloaded)

7h 30min

(With payload up to 40x triple EO/IR/Laser pods)

Cruising Speed

66~72km/h

60~72km/h

60~72km/h

65~90km/h

72~110km/h

Maximum Flight Speed

180km/h

152km/h

152km/h

150km/h

150km/h

Hovering Time

15min

16min

20min

Wind Resistance Level

Wind Resistance: Level 6 (Takeoff/Landing Phase) | Level 7 (Cruise Phase)
(Customizable up to Level 8)

Service Ceiling

5500m

6000 m

Operating Temperature Range

Operating Conditions: -20℃ to +65℃ with light rain capability
(Low-temperature extension available down to -40℃)

Maximum Ascent Rate

20 m/s

10 m/s

Maximum Descent Rate

5 m/s

3 m/s

Positioning Accuracy

Positioning Accuracy: 0.5m

(Customizable to RTK 1cm / PPK 1mm)

Control Range

30km

30km

30/50km

30/50/100km

30/50/100/200km

Transportation Method

Backpack/Aviation Case

(Single-operator Portable Configuration)

Compact Aviation Case

(Passenger Vehicle Transport Optimized)

Extended Aviation Case

(Cargo Van Transport Ready)

Packaging Dimensions

0.69*0.43*0.47 m

1.18*0.52*0.58 m

1.42*0.69*0.68 m

1.92*0.71*1.17m

4.08*1.40*1.42m

 

产品详情


长光 TW 系列无人机是一款高性能无人机,专为情报收集、监视和侦察任务而设计。它采用固定翼设计,具有先进的空气动力学特性,可确保长续航时间和高效率。TW 系列配备了最先进的航空电子设备、实时数据传输系统和模块化有效载荷配置,适用于边境巡逻、灾害监测和军事侦察等各种应用。

 

翼展:因型号而异,针对耐力进行了优化
最大起飞重量:可配置不同的有效载荷能力
续航时间:最长可连续飞行20小时
Cruising Speed: 100–150 km/h
工作高度:最高 8,000 米
有效载荷能力:包括 EO/IR 摄像机、LiDAR、SAR 和通信中继
控制系统:遥控和自主飞行能力

 

Dual-All-Wing Fixed-Wing UAVs: High Maximum Payload, Wind Resistance & COTS Technology for VTOL Scenarios

 

In the realm of unmanned aerial systems (UAS), the Changguang TW series redefines fixed-wing UAV capabilities by merging dual-all-wing aerodynamics with VTOL mission readiness. Designed for demanding scenarios that require both vertical takeoff and landing (VTOL) flexibility and long-endurance flight, these UAVs leverage a unique dual-all-wing structure to deliver unmatched maximum payload capacity, robust wind resistance levels, and commercial-off-the-shelf (COTS) technology integration.

 

Aerodynamic Excellence: The Dual-All-Wing Advantage

 

The core of the TW series lies in its dual-all-wing design, optimizing lift-to-drag ratios for efficient long-distance flight while enabling stable operations in challenging conditions. Unlike traditional fixed-wing UAVs, this architecture supports:

 

VTOL-Compatible Missions: While not a pure VTOL aircraft, the design excels in scenarios where VTOL drones face limitations—such as extended flight ranges (2–8 hours) and heavy payloads (1kg to 70kg, depending on model).
Wind resistance up to Level 7 (13.9–17.1 m/s), with customizable configurations reaching Level 8 for extreme environments, ensuring reliable data acquisition in coastal storms or mountainous turbulence.

 

Payload Mastery for Mission-Critical Tasks

 

The TW series sets new standards for maximum payload capacity, empowering users to integrate diverse COTS sensors and equipment:

 

Modular Payload Bays: Accommodate electro-optical (EO), infrared (IR), LiDAR, and multispectral cameras, ideal for precision agriculture, infrastructure inspection, and disaster mapping.
For example, the TW200 model supports a 70kg payload, enabling simultaneous deployment of high-resolution imaging systems and real-time data links—critical for large-scale surveying projects that demand both speed and accuracy.

 

COTS-Driven Innovation for Rapid Deployment

 

By embracing commercial-off-the-shelf technology, the TW series reduces integration complexity and accelerates mission readiness:

 

Plug-and-Play Sensors: Seamlessly connect industry-standard payloads without custom modifications, thanks to an open-architecture data acquisition system.
RTK-GNSS Integration: Achieve centimeter-level positioning using COTS modules, enhancing mapping precision for applications like power line routing inspection and border surveillance.

 

The result? A UAV platform that balances affordability with enterprise-grade performance, perfect for organizations requiring rapid deployment and scalable payload solutions.

 

Real-World Performance in VTOL-Ready Scenarios

 

In a recent forest fire monitoring mission in California:

 

A TW150 UAV with a 30kg payload flew for 6 hours, covering 300km while transmitting thermal imagery through its COTS-based data link.
Its dual-all-wing design maintained stable flight in strong breeze, outperforming traditional VTOL drones that struggled with both endurance and payload limits.

 

The Future of Hybrid UAV Missions

 

The TW series proves that fixed-wing UAVs can excel in VTOL-adjacent roles by prioritizing aerodynamic efficiency, payload versatility, and COTS integration. Whether mapping vast agricultural fields, inspecting offshore wind farms, or supporting disaster relief, these UAVs offer a pragmatic balance between the short-range flexibility of VTOL systems and the long-endurance capabilities of fixed-wing aircraft.

 

With dual-all-wing VTOL UAVs like the TW series, users no longer compromise on payload capacity, wind resistance, or technology compatibility. Discover how Changguang’s innovative design can elevate your mission-critical operations—where every flight demands precision, power, and adaptability.

 

High-Efficiency Dual-All-Wing UAVs: VTOL-Compatible Design, Wind Resistance Level 7 & COTS-Powered Payload Systems

 

In the evolving landscape of unmanned aerial systems (UAS), Changguang’s dual-all-wing UAVs redefine operational efficiency by merging fixed-wing aerodynamics with VTOL mission adaptability. Engineered for scenarios demanding both vertical takeoff/landing (VTOL) flexibility and long-endurance flight, these UAVs integrate a unique dual-all-wing structure to deliver unmatched wind resistance, robust maximum payload capacity, and commercial-off-the-shelf (COTS) technology for rapid sensor integration.

 

Aerodynamic Innovation: The VTOL-Compatible Edge

 

The dual-all-wing design optimizes lift distribution, enabling stable flight in complex environments while addressing limitations of traditional VTOL drones. Key advantages include:

 

VTOL-Compatible Operations: While not pure VTOL, the architecture excels in missions where VTOL systems struggle with range—supporting 2–8 hours of flight and payloads from 1kg to 70kg (model-dependent).
Wind Resistance Level 7 (13.9–17.1 m/s) as standard, with custom configurations reaching Level 8, ensuring reliability in coastal storms or mountain updrafts.

 

Payload Mastery for Mission-Critical Tasks

 

These UAVs set new benchmarks for maximum payload capacity, empowering users to integrate diverse COTS sensors:

 

Modular Payload Bays: Accommodate electro-optical (EO), infrared (IR), LiDAR, and multispectral systems, ideal for precision agriculture, power line inspection, and disaster response.
The TW200 model, for instance, supports 70kg payloads, enabling simultaneous deployment of high-resolution cameras and real-time data links for large-scale mapping projects.

 

COTS-Driven Scalability and Integration

 

By leveraging commercial-off-the-shelf technology, the UAVs streamline deployment and reduce costs:

 

Plug-and-Play Sensor Systems: Seamlessly integrate industry-standard payloads via an open-architecture interface, eliminating custom modifications.
RTK-GNSS Positioning: COTS-based centimeter-level positioning enhances mapping accuracy for applications like border surveillance and infrastructure monitoring.

 

The result is a scalable platform that balances affordability with enterprise-grade performance, perfect for organizations requiring rapid mission adaptation.

 

Real-World Performance in Demanding Environments

 

During a recent typhoon response mission in East Asia:

 

A TW150 UAV with a 30kg payload flew for 5 hours, transmitting thermal imagery across 200km while maintaining stability in strong breeze.
Its dual-all-wing design outperformed traditional VTOL drones, which faced both endurance limitations and payload restrictions in turbulent conditions.

 

The Future of Hybrid UAV Operations

 

Changguang’s dual-all-wing UAVs prove that fixed-wing efficiency and VTOL adaptability can coexist. By prioritizing aerodynamic design, wind resistance, and COTS integration, these systems offer a pragmatic solution for tasks ranging from offshore wind farm inspection to wildfire monitoring—where every mission demands both precision and resilience.

 

With dual-all-wing VTOL UAVs at the forefront, users no longer compromise on payload capacity, environmental adaptability, or technology compatibility. Discover how these high-efficiency platforms can transform your operations—where innovation meets mission-critical performance.

 

We Provide Advanced
Aerial Imaging Surveillance & Solutions

通过专业的优质利基市场全面协同资源税收关系。

联系我们

长光TW系列无人机技术规格

相关产品
相关新闻

如果您对我们的产品感兴趣,您可以选择在这里留下您的信息,我们会尽快与您联系。