







RUSH TANK MAX SOLO 5.8G 2.5W 48CH VTX Video Transmitter w/ Cherry II Antenna LDS LHCP RHCP MMCX for FPV Quadcopter Racing Drone
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SPECIFICATIONS
Brand Name: hot rc
Hign-concerned Chemical: None
Use: Vehicles & Remote Control Toys
Certification: CE
Origin: Mainland China
Upgrade Parts/Accessories: RUSH TANK MAX SOLO
Remote Control Peripherals/Devices: FPV Antenna
Tool Supplies: RUSHFPV Cherry 2
Technical parameters: Value 2
Material: Metal
Model Number: 2.5W VTX
Four-wheel Drive Attributes: MAX SOLO VTX 2.5W
Wheelbase: Screws
Recommend Age: 14+y
RC Parts & Accs: Remote Controller
Size: H 40mm*W 24mm* D 10.5mm
For Vehicle Type: Airplanes
Item:RUSHFPV MAX SOLO 2.5W VTX Video Transmitter
Package Included:
RUSH MAX SOLO Image Transmission x1
power cable x2
MMCX to SMA adapter cable x1
Antenna x1
Parameters:
Channel:48CH
Power level:PIT-25mW-500mW-100mW-MAX*
Input:DC 7-36V (6S LIPO)
Output:DC 5V (Max 500mA)
Video in:CVBS PAL / NTSC
Audio in:6.5M MONO
Antenna connector:MMCX 50Ω
External control: Smart Audio
Size:H 40mm*W 24mm* D 10.5mm
Weight: 15g (with out cable)
Features:
Developed for extreme long-range pilots,compact and efficient active cooling design unleashes the full performance of the VTX.
LOCK-ON technology with jitter-free transmit channels and no sweep interference for multi-pilot flights.
Factory power consitency calibration for all channels.
Low noise DC-DC power supply drsign oor clean screens.
RUSHFPV CherryII Generation 5.8Ghz 1.8dbi LHCP/RHCP Long Range FPV Antenna MMCX Plug
NEW RF Design:
- For FPV scene optimization, extensive improvements on first generation cherry.
- Using high precision 3D laser metallization technology.
- Ensure consistent performance with each one.
Wider operating frequency:
- Wide operating frequency range, high consistency of parameters at each frequency point, HD/analog equipment, can be adapted.
High launch efficiency:
- SWR less than 1.3 making the antenna have high transmitting efficiency;
- Effectively reduce the heat of high-power VTX;
More even signal coverage:
Optimized radiation field for ideal signal coverage;