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In-Depth Look: PHANTOM VISION (FCC ID: SS3-RE5001307)

The PHANTOM VISION by DJI Innovations is a cutting-edge device designed to elevate the experience of remote-controlled aerial systems. This sophisticated piece

Unveiling the PHANTOM VISION by DJI Innovations: An In-Depth Analysis of FCC ID SS3-RE5001307

Introduction

The PHANTOM VISION by DJI Innovations is a cutting-edge device designed to elevate the experience of remote-controlled aerial systems. This sophisticated piece of technology is primarily designed for enthusiasts over the age of 18, offering advanced features that cater to both hobbyists and professionals. With its FCC certification under the ID SS3-RE5001307, this device has met stringent standards for radio frequency emissions, ensuring it is safe and legal for sale and use in the United States. This blog post delves into the PHANTOM VISION’s key specifications, technological innovations, and internal components, providing a comprehensive understanding of its capabilities and regulatory compliance.

Key Features & Specifications

The PHANTOM VISION is packed with features that enhance its functionality and user experience. Below are the key features and technical specifications derived from an in-depth manual analysis:

Key Features:

  • R/C Receiver: Enables remote control of the device, providing seamless user interaction.
  • GPS & Compass Module: Ensures accurate positioning and stable navigation.
  • Low-Voltage Alert: Alerts users of low battery levels to prevent unexpected shutdowns.
  • ATTI./GPS ATTI. Mode: Enhances flight stability and control, crucial for precise maneuvers.
  • NAZA-M Autopilot System: Offers sophisticated autopilot capabilities for automated flight paths.
  • Intelligent Orientation Control: Simplifies control by maintaining consistent orientation regardless of the device’s position.
  • Power System for Flight: Provides robust power management for extended flight durations.
  • LED Indicator: Offers visual cues for the device’s status and alerts.

Technical Specifications:

  • Power Consumption of Transmitter: <20dBm
  • Receiver Sensitivity (1% PER): >-93dBm
  • Working Current/Voltage: 52 mA@6V
  • Control Channel Numbers of Transmitter: 6
  • Communication Distance: 300m
  • Working Frequency: 5.8GHz ISM
  • AA Battery (5#): 4 Required
  • Wi-Fi and Bluetooth: Present, though specific details are not available

Technology Deep Dive

The PHANTOM VISION leverages key wireless technologies such as Wi-Fi and Bluetooth, although detailed specifications are not disclosed. Operating in the 5.8GHz ISM band, this frequency is advantageous for reducing interference, providing a stable and long-range communication link essential for remote control operations. The integration of Wi-Fi and Bluetooth enhances connectivity options, allowing for seamless data transmission and device pairing. These technologies ensure robust performance, optimal range, and minimal interference, contributing to the device’s overall efficiency and user experience.

In-Depth Internal Component Analysis / Teardown

Main PCB with SoC and RF Shielding.
Main PCB with SoC and RF Shielding.

The main PCB of the PHANTOM VISION is designed with a high level of integration. The presence of a large integrated circuit suggests it functions as the central processor or system-on-chip (SoC), managing the device’s core operations. Smaller ICs are likely power management units or RF transceivers, crucial for maintaining power efficiency and communication integrity. The PCB’s multi-layer design, possibly four layers, supports complex routing for power and data signals, while the visible wire antenna indicates RF capabilities, potentially in the 2.4GHz band. The metal shielding provides essential EMI/RFI protection, ensuring stable performance.

PCB with SoC and External Antenna Connectors.
PCB with SoC and External Antenna Connectors.

This image highlights the PHANTOM VISION’s focus on RF communication, evident from the dual coaxial connectors likely used for external antennas. The large central IC may serve as the main processing unit, with smaller chips handling power and RF tasks. The PCB’s multi-layer construction supports high-speed data handling and RF signal routing, with metal shielding protecting sensitive components. The robust build quality and efficient layout suggest a device designed for reliable wireless communication.

PCB with External Antenna Connectors and Test Points.
PCB with External Antenna Connectors and Test Points.

The PCB features U.FL connectors for external antennas, enhancing its RF capabilities for Wi-Fi or Bluetooth. The central IC likely functions as the device’s main processor, with additional components supporting power regulation. The presence of test points indicates areas for diagnostics and firmware updates, crucial for maintaining device performance. The absence of visible shielding suggests reliance on PCB design to minimize interference.

Compact PCB with Microcontroller and RF Shielding.
Compact PCB with Microcontroller and RF Shielding.

This image showcases a compact PCB with surface-mounted ICs, including a microcontroller or SoC for processing tasks. The board features coaxial connectors for antennas, emphasizing RF communication. A micro USB connector suggests data transfer capabilities, while the central metal shield protects critical components from EMI/RFI interference. The use of passive components for signal conditioning highlights the device’s focus on maintaining signal integrity.

Simple PCB with Patch Antennas for RF Applications.
Simple PCB with Patch Antennas for RF Applications.

This PCB features simple patch antennas, likely designed for GPS reception. The coaxial cables provide a direct RF signal path, essential for maintaining signal quality. The straightforward design focuses on functionality, typical for a basic antenna module used in RF applications.

Patch Antennas for GPS Reception.
Patch Antennas for GPS Reception.

The image shows patch antennas designed for GPS signals, identifiable by their square shape and coaxial cable connections. These components are crucial for receiving precise location data, essential for navigation and positioning tasks in devices like drones.

Regulatory Insights & FCC Filing

The FCC ID SS3-RE5001307 certification confirms the PHANTOM VISION’s compliance with U.S. electromagnetic interference standards. While the grant date is not specified, this certification ensures the device is legally marketable in the U.S. FCC filings typically include a range of information, such as test reports for RF exposure, electromagnetic compatibility (EMC), internal and external photographs, user manuals, schematics, and block diagrams. This documentation supports the device’s regulatory compliance and market readiness.

Potential Use Cases & Target Audience

With its advanced features and built-in autopilot system, the PHANTOM VISION is ideal for several user profiles:
Aerial Photography Enthusiasts: Users can leverage the device’s GPS stability and intelligent orientation control for capturing stunning aerial shots.
Professional Surveyors: The device’s precise navigation capabilities make it suitable for mapping and surveying tasks, offering reliable data collection.
Tech-Savvy Hobbyists: The robust control system and safety features appeal to hobbyists seeking a sophisticated yet user-friendly drone experience.

Conclusion

The PHANTOM VISION by DJI Innovations stands out as a technologically advanced device with robust RF capabilities and regulatory compliance. Its FCC certification ensures it meets stringent standards, making it a reliable choice for consumers and professionals alike. As a sophisticated piece of technology, it caters to a wide range of applications, from aerial photography to professional surveying, positioning itself as a versatile tool in the market.

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