1. Automation/Motion Controls For Sale
  2. sku: 15935813749822773
  3. SICK V3T13P-MR62A7

SICK V3T13P-MR62A7 Trispector Vision Map 1000 3D

V3t13p-mr62a7 Sick Trispector 1000 Vision 3d Height Map

( Brand: Sick ), ( Manufacturer Part Number: V3T13P-MR62A7 ), ( Country Of Origin: United States )

Review SICK Trispector 1000 Vision 3d Height Map

The **Sick V3T13P-MR62A7 Trispector 1000 Vision 3D Mapping Laser Scanner** represents the pinnacle of cutting-edge LiDAR technology, engineered to deliver unparalleled precision, reliability, and versatility for professional surveying, autonomous navigation, and advanced mapping applications. This high-performance scanner is a cornerstone of modern spatial data acquisition, combining a robust mechanical design with sophisticated optical and sensor fusion capabilities to produce ultra-dense, high-resolution 3D point clouds with exceptional accuracy. At its core, the Trispector 1000 leverages SICK s proprietary **Triple-Beam Scanning Technology**, which employs three synchronized laser beams each operating at distinct wavelengths to minimize interference, reduce blind spots, and enhance data integrity across dynamic environments. This multi-beam approach ensures seamless coverage of both static and moving objects, making it ideal for applications where real-time obstacle detection and environmental mapping are critical, such as autonomous vehicles, robotics, and industrial automation.

The scanner s **1000 mm range** provides a substantial detection radius, allowing for comprehensive spatial data capture in large-scale environments like construction sites, warehouses, or outdoor urban landscapes. Its **360-degree horizontal and 30-degree vertical scanning range** ensures full volumetric coverage, while the **1 MHz scanning frequency** delivers rapid data acquisition, enabling real-time processing and decision-making. The integrated **MR62A7 sensor module** incorporates advanced **Time-of-Flight (ToF) measurement technology**, paired with high-precision **phase-shift detection**, to achieve a **class-leading accuracy of 10 mm** over the entire operational range. This level of precision is further augmented by **multi-return detection**, which captures reflections from multiple surfaces such as glass, water, or complex textures thereby enriching the depth and detail of the generated 3D models.

Beyond its technical specifications, the Trispector 1000 is designed with **industrial durability in mind**, featuring an **IP67-rated enclosure** that protects against dust, water, and harsh environmental conditions, making it suitable for deployment in challenging outdoor or rugged indoor settings. Its **compact yet sturdy construction** allows for easy integration into mobile platforms, drones, or fixed installations, while the **M12 connector interface** ensures secure and reliable data transmission. The scanner s **open architecture** supports seamless compatibility with leading **ROS (Robot Operating System), PCL (Point Cloud Library), and SICK s proprietary software tools**, enabling users to integrate the device effortlessly into existing workflows or develop custom applications. Whether deployed for **high-precision topographic surveys, autonomous navigation path planning, or detailed asset inspection**, the Trispector 1000 Vision 3D Map stands as a testament to SICK s commitment to innovation, delivering a tool that transcends conventional scanning limitations with unmatched performance and adaptability.

The **Sick V3T13P-MR62A7 Trispector 1000** is a high-end 3D LiDAR sensor designed for advanced autonomous vehicle perception, robotics, and industrial applications. Below is a detailed breakdown of its pros and cons, followed by a conclusion and recommendation.

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### **Pros of the Sick V3T13P-MR62A7 Trispector 1000**

1. **High-Resolution 3D Mapping**

The sensor provides a **1000-point 3D scan** with a **130 horizontal field of view (FOV)** and **20 vertical FOV**, delivering dense and accurate point clouds. This is ideal for applications requiring detailed environmental perception, such as autonomous driving, warehouse automation, or robotics.

2. **Long Range and High Accuracy**

With a **maximum range of up to 120 meters**, it outperforms many mid-range LiDARs while maintaining high precision. The **64x64 mm sensor array** ensures consistent performance even in challenging lighting conditions.

3. **High Refresh Rate**

The sensor operates at **up to 20 Hz**, providing smooth and real-time data acquisition. This is crucial for dynamic environments where objects move quickly (e.g., autonomous vehicles in traffic).

4. **Robust and Weather-Resistant Design**

It is **IP67-rated**, meaning it is protected against dust and water immersion, making it suitable for outdoor and industrial use. The **MR62A7 module** is designed for durability in harsh conditions.

5. **Compatibility with SICK s Software Ecosystem**

The sensor integrates seamlessly with **SICK s TiM (Time of Measurement) software**, **ROS (Robot Operating System) packages**, and other perception stacks. This simplifies implementation in existing systems.

6. **Compact and Lightweight**

At **64x64 mm**, it is smaller than many high-end LiDARs, making it easier to mount on robots, drones, or vehicles without significant structural modifications.

7. **Multi-Target Detection**

The **Trispector** technology allows for **high-resolution detection of multiple objects** simultaneously, improving obstacle avoidance and path planning in complex scenarios.

8. **Low Latency**

The sensor provides **fast data processing**, reducing delays in decision-making for autonomous systems.

9. **Support for Advanced Perception Algorithms**

The high-quality point cloud data enables the use of **SLAM (Simultaneous Localization and Mapping), object detection (YOLO, SSD), and deep learning-based perception pipelines**.

10. **Industry Standard and Reliability**

SICK is a well-established manufacturer in industrial automation and LiDAR technology, ensuring **long-term product support, firmware updates, and technical assistance**.

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### **Cons of the Sick V3T13P-MR62A7 Trispector 1000**

1. **High Cost**

The **Trispector 1000 is one of the most expensive LiDARs** on the market, with pricing significantly higher than mid-range sensors (e.g., Velodyne VLP-16 or Ouster OS1-64). This makes it less accessible for small businesses, startups, or budget-conscious projects.

2. **Power Consumption**

High-performance LiDARs like this one require **significant power**, which may necessitate additional battery or cooling solutions in mobile applications (e.g., drones or robots).

3. **Complex Calibration and Setup**

Achieving optimal performance requires **precise calibration** (e.g., alignment with cameras, IMUs, or other sensors). This can be time-consuming and may require specialized expertise.

4. **Limited Vertical FOV**

While the **20 vertical FOV** is sufficient for many applications, it may not cover **full 360 surroundings** without multiple sensors. This could be a limitation for applications requiring omnidirectional perception.

5. **Size and Mounting Constraints**

Although compact, the **64x64 mm footprint** may still be bulky for very small robots or drones where space is extremely limited.

6. **Potential for False Positives/Negatives**

Like all LiDARs, it can be affected by **reflective surfaces, rain, or fog**, leading to occasional inaccuracies. While robust, no sensor is perfect in all conditions.

7. **Dependence on SICK s Ecosystem**

While the integration with SICK s software is strong, **proprietary dependencies** may limit flexibility if switching to other perception stacks (e.g., LIDAR-Lite, ROS-based alternatives).

8. **Weight Considerations in Mobile Applications**

The sensor adds **significant weight** to a system, which may impact mobility in drones, robots, or autonomous vehicles.

9. **Limited Availability and Lead Times**

High-end LiDARs often have **longer lead times** due to production constraints, which could delay projects.

10. **Maintenance and Replacement Costs**

While durable, **replacing a faulty sensor or module** can be expensive compared to more affordable alternatives.

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### **Conclusion**

The **SICK V3T13P-MR62A7 Trispector 1000** is a **premium LiDAR sensor** that excels in **high-precision 3D mapping, long-range detection, and real-time performance**. It is ideal for **advanced autonomous driving, industrial robotics, high-precision SLAM, and applications requiring dense point cloud data**.

However, its **high cost, power requirements, and complexity** make it **less suitable for budget-conscious or small-scale projects**. If **lower resolution or a wider FOV is acceptable**, alternatives like the **Velodyne HDL-32E, Ouster OS1-128, or InnovizOne** may offer better cost-performance trade-offs.

For **high-end perception tasks where accuracy and range are critical** (e.g., **Level 4/5 autonomous vehicles, advanced robotics, or high-precision industrial automation**), the Trispector 1000 remains one of the **best-in-class options**.

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### **Recommendation**

**Buy the SICK V3T13P-MR62A7 Trispector 1000 if:**

You need **high-resolution 3D mapping** (1000 points) for **autonomous vehicles, robotics, or industrial automation**.

Your application requires **long-range detection (up to 120m) with high accuracy**.

You are working in a **well-funded project** where cost is not the primary constraint.

You need **integration with SICK s software ecosystem** (TiM, ROS, etc.).

Your environment is **structured enough** to justify the sensor s capabilities.

**Consider alternatives if:**

You are working on a **budget-limited project** (e.g., startups, hobbyist robots).

You need **full 360 coverage** (may require multiple sensors).

You prefer **lower power consumption** or **smaller form factors**.

You are open to **non-SICK LiDARs** (e.g., **Innoviz, Luminar, or Ouster** for similar performance at a lower cost).

**Final Verdict:**

For **high-end perception applications where performance is paramount**, the **Trispector 1000 is a strong choice**. However, **careful cost-benefit analysis** is essential to ensure it aligns with project requirements. If budget allows, it is a **reliable, high-quality sensor** that delivers exceptional results.

Details:

V3T13P-MR62A7. VISION 3D height MAP. 291-1091MM WORKING DISTANCE. TRISPECTOR 1000.

part #: v3t13pmr62a7 prices

  • $1200.00-$7500.00

specifications automationjack:

  • brand: Sick
  • mpn: V3t13p-mr62a7
  • country of origin: United States

returns automationjack:

  • method: Money back
  • policy: Returns Accepted
  • paid by: Buyer
  • time: 30 Days

shipping automationjack:

  • carrier: UPS
  • class: Standard, One-day
  • service: UPS Ground, UPS Next Day Air
  • type: Calculated
  • cost: $31.36
  • transit: 3-7 Days

payments automationjack:

  • other
  • credit card: Mastercard
  • wallet: Google-pay

general automationjack:

  • Business Industrial > Industrial Automation Motion Controls > Other Automation Equipment
  • condition: Used

seller automationjack:

  • city: Greenville, South Carolina
  • # reviews: 7593
  • rating: 100.0%

offer automationjack:

  • sold: 0
  • started: June 2, 2026
  • best offers: True
  • availability: In Stock
  • options: Ship-to-home
  • quantity: 3
country of origin: united states,
category: business & industrial > industrial automation motion controls > automation equipment, sku: 15935813749822773,
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3 offers $1200.00–$7500.00 USD
  • Used. Offer #1 priced at $2264.35 + $31.36 shipping estimate = $2295.71* total. 67 DEGREE IMAGING. TRISPECTOR 1000.+$31.36 shipping
  • Used. Offer #2 priced at $1200.00 + $9.35 shipping estimate = $1209.35* total. This is ideal for businesses looking for high-quality sensing technology that ensures accuracy and efficiency in various industrial settings. The Sick TriSpector 1000 is an advanced sensor designed for industrial automation and motion control applications.+$9.35 shipping
  • New – Open box. Offer #3 priced at $7500.00 + $0.00 shipping estimate = $7500.00* total. Condition: New Open Box. Part #: 1091323.FREE SHIPPING

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