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AVSS PRS-M350US Drone Parachute for DJI Matrice 350 M350 RTK Sale

  • Regular price $3,500.00

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Vendor: AVSS

Type: Accessories

Sku: PRS-M350US

Available: Able To Source

AVSS PRS-M350US Drone Parachute for DJI Matrice 350 M350 RTK

About the Drone Parachute Recovery System

OVERVIEW

The ASTM F3322-18 compliant PRS-M350 has been designed to easily integrate with the DJI Matrice 350 RTK. The attachment bracket secures the PRS without interfering with sensitive GPS modules and ensures take-off with various payload combinations. The parachute recovery system includes an electronic module to power the Parachute Pod™ and flight termination system. The onboard system comes equipped with an automatic triggering device to deploy the drone parachute. An independent remote for manually deploying the drone parachute gives you constant control over your operations.

KEY FEATURES

  • Field replaceable Parachute Pods™
  • Plug-and-play flight termination system with an option of 0 meter/feet deployment
  • Less than 0.5-second automatic deployment
  • Greater than 2km/1.2mi manual deployment range
  • ASTM F3322, EASA MOC 2512, and third party documentation that is relevant to Civil Aviation Authorities

COMPLETE SET INCLUDES

  • One Parachute Pod™
  • Rugged GPC protective case
  • Electronic module
  • Flight termination system
  • Autonomous triggering System
  • Attachment bracket
  • Manual triggering device
  • Electronic module batteries
  • One (1) year, three (3) deployment warranty
  • CAA, ASTM F3322, EASA MOC 2512 documentation

PERFORMANCE OVERVIEW

  • Total weight: 922 grams / 2.03 lbs
  • Average descent rate (7.70 kg): 3.24 mps / 10.62 fps
  • Average descent rate (9.20 kg): 3.54 mps / 11.61 fps
  • Average impact energy (7.70 kg): 40.30 J / 29.80 ft-lb
  • Average impact energy (9.20 kg): 57.60 J / 42.50 ft-lb
  • Minimum deployment altitude (7.70 kg): 44.60 m / 146.33 ft
  • Minimum deployment altitude (9.20 kg): 50.80 m / 166.67 ft

Note: Depending on the Civil Aviation Authority data collection and analysis requirements, performance metrics may require different calculation methods.

Related product

AVSS PRS-M350US Drone Parachute for DJI Matrice 350 M350 RTK

About the Drone Parachute Recovery System

OVERVIEW

The ASTM F3322-18 compliant PRS-M350 has been designed to easily integrate with the DJI Matrice 350 RTK. The attachment bracket secures the PRS without interfering with sensitive GPS modules and ensures take-off with various payload combinations. The parachute recovery system includes an electronic module to power the Parachute Pod™ and flight termination system. The onboard system comes equipped with an automatic triggering device to deploy the drone parachute. An independent remote for manually deploying the drone parachute gives you constant control over your operations.

KEY FEATURES

  • Field replaceable Parachute Pods™
  • Plug-and-play flight termination system with an option of 0 meter/feet deployment
  • Less than 0.5-second automatic deployment
  • Greater than 2km/1.2mi manual deployment range
  • ASTM F3322, EASA MOC 2512, and third party documentation that is relevant to Civil Aviation Authorities

COMPLETE SET INCLUDES

  • One Parachute Pod™
  • Rugged GPC protective case
  • Electronic module
  • Flight termination system
  • Autonomous triggering System
  • Attachment bracket
  • Manual triggering device
  • Electronic module batteries
  • One (1) year, three (3) deployment warranty
  • CAA, ASTM F3322, EASA MOC 2512 documentation

PERFORMANCE OVERVIEW

  • Total weight: 922 grams / 2.03 lbs
  • Average descent rate (7.70 kg): 3.24 mps / 10.62 fps
  • Average descent rate (9.20 kg): 3.54 mps / 11.61 fps
  • Average impact energy (7.70 kg): 40.30 J / 29.80 ft-lb
  • Average impact energy (9.20 kg): 57.60 J / 42.50 ft-lb
  • Minimum deployment altitude (7.70 kg): 44.60 m / 146.33 ft
  • Minimum deployment altitude (9.20 kg): 50.80 m / 166.67 ft

Note: Depending on the Civil Aviation Authority data collection and analysis requirements, performance metrics may require different calculation methods.