Lji ZD975 6-Axis 975mm Carbon Fiber Umbrella Folding Hexacopter with Motor ESC Propeller (not assembled)
Lji ZD975 6-Axis 975mm Carbon Fiber Umbrella Folding Hexacopter with Motor ESC Propeller (not assembled) is backordered and will ship as soon as it is back in stock.
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Main Features:
--The arm uses 5° pitch up design to maximize the power, the arm uses 20mm diameter carbon tube.
--Aluminum Alloy Folding Parts, Nylon Pipe Clamp (Tighter Clamp) 8-hole Motor Mount, Compatible with most of the 5xxx series motors in the market.
--The diagonal wheelbase of ZD975 is about 975mm, suitable for 17", 1 8" propellers
--The Center plate size 245mmx180mm, and the height is about 35mm, which provides you super big space
--Gimbal rod adopts 10*330mm long carbon tube, which can freely expand the desired length.
--Carbon fiber landing skid, the bearing capacity is over 50kg.
Specifications:
Item Brand: LJI
Item Model: ZD975
Diagonal wheelbase: 975mm (ZD975)
Suitable Propeller: 17", 18"
Arm Diameter: 20mm
Upper plate thickness: 2mm
Lower plate thickness: 3.0mm
Landing Skid height: 350mm
Net weight: about 1250g
Combo 1 Included:
Lji ZD975 6-Axis 975mm Carbon Fiber Frame Kit x 1 (Umassembled)
Battery Plate x 1
ARRIS 5008 335KV Brushless motor x 6
Flycolor 40A OPTO 2-6S ESC for Multirotors x 6
Tarot T Series 1855 High Effeciency Carbon Fiber Propeller X 3 (3CW+3CCW)
ARRIS 5008 335KV Motor Technical Data:
Motor Diameter 57.7mm
Motor Length 27.5mm
Stator Diameter 50mm
Stator Length 8mm
Shaft Diameter 4mm
Weight 185.5g
Batteries 6Cells
Top Mounting Holes 12mm*12mm
Bottom Mounting Holes 25mm*25mm
Flycolor 40A ESC Specifications:
Input Voltage:2-6S
Con. Current: 40A
Max. Current (10s): 50A
BEC: No
Dimension: 45 x 27 x 10mm
Suitable for: Quadcopters, Hexacopter and other Drones
Tarot T Series 1855 High Effeciency Carbon Fiber Propeller CW/CCW
Main Features:
--Root has unique design, which increases the strength and efficiency
--100% carbon TORAY 3K pure carbon fiber applied
--Well-balanced from factory
--Optimized propeller efficiency and loading stability