The default RC input is configured on the UART6. The SBUS pin is inverted and connected to RX6. Non SBUS, single wire serial inputs can be directly tied to RX6 if SBUS pin is left unconnected. RC could be applied instead at a different UART port such as UART2, UART4 or UART8, and set the protocol to receive RC data: SERIALn_PROTOCOL=23 and change SERIAL6 _Protocol to something other than 23.
OSD Support (Ardupilot)
The MicoAir743v2-AIO supports OSD using OSD_TYPE 5 (MSP_DISPLAYPORT).
VTX Support
The SH1.0-6P connector supports a DJI Air Unit / HD VTX connection. Protocol defaults to DisplayPort. Pin 1 of the connector is 12v so be careful not to connect this to a peripheral requiring 5v.
PWM Output
The MicoAir743v2-AIO supports up to 9 PWM outputs.
Channels 1-8 support DShot/bi-directional DShot.
(currently PX4&INAV not support BDShot function)
PWM output share grouped and every group must use the same output protocol:
1,2,3,4 are group 1
5, 6 are group 2
7,8, 11are group 3
Note: PWM11 is the ¡°LED¡± pin. If this is configured for serial LED use then PWM 7 and 8 can only be used as serial LED also.
Compass
The MicoAir743v2-AIO doesn¡¯t have a built-in compass sensor, but you can attach an external compass using I2C on the SDA and SCL connector.
Introducing the Emax Race Spec family of high performance brushless motors for multirotor FPV racing. Redesigned and engineered to perform better than most in it¡¯s class, every motor is precision crafted within tight tolerances. Paired with performance driven props from any leading manufacturer will result in unreal thrust.
Cooling: The unique fins machined into the bell draw up cool air from the motor base and through the coils as the motor spools up. The faster it spins, the more air it ventilates. Cooling fins significantly reduce heat soak by at least 30%. This ¡°cool¡± feature allows the RS2205 to not only have a longer lasting motor, but also harness the power of N52 magnets.
N52 Magnets: Uses the highest grade magnets. Better acceleration, stopping power, and sustained RPMs during high kv.
Bearings: Genuine Japanese NMB Bearings provide long lasting, smooth performance.
Thrust: Produces over +1,000g of thrust using 4S and GF5045BN.
Key Features: - 1K+ Thrust with 4s battery and recommend propeller combo - Cooling Series Bell Design reduces motor temperature by at least 30% - Highest Grade N52 Neodymium magnets - Genuine Japanese NMB Bearings - Each Motor is Dynamically Balanced in the factory. - 15mm Extended Prop Shaft allows virtually any prop with 5mm hole.
Introducing the Emax Race Spec family of high performance brushless motors for multirotor FPV racing. Redesigned and engineered to perform better than most in it¡¯s class, every motor is precision crafted within tight tolerances. Paired with performance driven props from any leading manufacturer will result in unreal thrust.
Cooling: The unique fins machined into the bell draw up cool air from the motor base and through the coils as the motor spools up. The faster it spins, the more air it ventilates. Cooling fins significantly reduce heat soak by at least 30%. This ¡°cool¡± feature allows the RS2205 to not only have a longer lasting motor, but also harness the power of N52 magnets.
N52 Magnets: Uses the highest grade magnets. Better acceleration, stopping power, and sustained RPMs during high kv.
Bearings: Genuine Japanese NMB Bearings provide long lasting, smooth performance.
Thrust: Produces over +1,000g of thrust using 4S and GF5045BN.
Key Features: - 1K+ Thrust with 4s battery and recommend propeller combo - Cooling Series Bell Design reduces motor temperature by at least 30% - Highest Grade N52 Neodymium magnets - Genuine Japanese NMB Bearings - Each Motor is Dynamically Balanced in the factory. - 15mm Extended Prop Shaft allows virtually any prop with 5mm hole.
Windings made from copper of high purity
- Model: RS2205
- KV: 2300kv
- Weight: Approx. 30g with wires
- Wire AWG: 20AWG
- Stator Diameter: 22mm
- Stator Height: 5mm
- Shaft Diameter: 3mm
- Configuration: 12N14P
- Motor Diameter: 27.9mm
- Motor Height: 31.7mm
- Prop Adapter Shaft Thread: M5
- Input voltage: 3S-4S (12.6 - 16.8v)
- KV2300 With HQ5045 BN Max.thrust:1024g
Á¦Ç° ±¸¼ºÇ° 8 : [ETHIX] P3.5 (5.1x3.5) ÇÁ·ÎÆç·¯
Ethix P3.5 Propeller
- ETHIX 5.1ÀÎÄ¡ ÇÁ·ÎÆç·¯ÀÔ´Ï´Ù.
- ³»±¸¼ºµµ ¾ÆÁÖ ÁÁ½À´Ï´Ù.
±¸¼º
ÇÁ·ÎÆç·¯ 1´ëºÐ(Á¤ÇÇÄ¡2°³, ¿ªÇÇÄ¡2°³)
SPECIFICATION
Propeller Diameter: 5.1 inch Pitch : 3.5 Blades : 3 Material : Poly Carbonate Weight :3.5g Hub Diameter :12.5mm Hub Thickness:6mm Shaft :5mm Adaptor Rings : NO
The RadioMaster Pocket is a small, lightweight radio that packs a big punch. It is available in two versions, ExpressLRS and MPM CC2500, and both versions come preinstalled with EdgeTX firmware.
The Pocket is also equipped with removable stick ends and a foldable antenna, making it easy to transport and store. It is compatible with 18650 batteries, which provide long battery life for hours of fun.
In addition to the classic charcoal and transparent case colors, we have a range of optional color cases available in a selection of vibrant colors, including blue, pink, green, and orange.
This allows you to personalize the radio to match your own unique style.
The RadioMaster Pocket is a great choice for pilots who are looking for a small, lightweight radio with all the powerful features you have come to expect.
Features Available in ExpressLRS Backpack and MPM CC2500 versions Preinstalled with EdgeTX firmware 18650 Batteries, all the power you need for hours of fun (Batteries not included) Portable and lightweight design with removable stick ends and foldable antenna Features hall effect gimbals as standard for smooth centering & precise response Built-in LED lights help visualize your switch positions (SA & SD) Backlit LCD Screen offering a perfect balance of size and functionality Trim buttons for easy channel trimming External Module Bay compatible with RadioMaster Nano-size modules and TBS Nano Crossfire/Nano Tracer. 2 Stylish Colors of Charcoal & Transparent version and optional case colors in Blue, Pink, Green, and Orange to suit your style
Specification Item: Pocket Radio Physical dimensions : 156.6*65.1*125.3mm (Folded size) /156.6*73.1*154.8mm (Unfold size) Weight: 288 grams Operating frequency: 2.400GHz-2.480GHz Internal RF Options: ELRS 2.4GHz Supported protocols: Module dependent Operational voltage: 6.6-8.4v DC Operating system: EdgeTX Control channels: Maximum 16 (Receiver dependent) Display: 128*64 Monochrome LCD Battery: 2pcs 18650 batteries (Not included) Charging: Built in USB-C QC3 Charging Upgradable Firmware: Via USB or the included SD card Gimbal: Hall-effect Module bay: Nano size (Compatible with RadioMaster Nano-size modules, TBS Nano Crossfire / Nano Tracer)
Available with ExpressLRS and CC2500 Version - CC2500 (standard) Version supports all CC2500 protocols - ELRS (standard) is pre-installed with ExpressLRS ISM FW (Max power is hardware dependent)
About LBT version - CC2500 LBT Version (Europe) is limited to LBT compliant protocols FrSKY X/X2 LBT & HoTT LBT - ELRS LBT (Europe) Version is pre-installed with ExpressLRS CE EU domain LBT FW (Limited to 100mw power output)
BETAFPV Nano receiver is based on the ExpressLRS project, an open-source RC link for RC applications.
ExpressLRS aims to achieve the best possible link performance in both speeds, latency, and range.
This makes ExpressLRS one of the fastest RC links available while still offering long-range performance.
Specification Weight : 0.7g (receiver only) Size : 12mm*19mm Telemetry power : 20dbm (100mW, 2.4G Version) Frequency bands (Nano receiver 2.4G version) : 2.4GHz ISM Frequency bands (Nano receiver 915MHz/868MHz version) : 915MHz FCC/868MHz EU Input voltage : 5V Antenna connector : IPEX MHF
BETAFPV ExpressLRS Receivers Choosing a suitable receiver to fly quadcopter or other RC models is very important. BETAFPV ExpressLRS Receivers including ELRS Lite, Nano, Micro, and the newest SuperD, greatly fulfill pilots' requirements for FPV flying.
Diagram Nano receiver 2.4G version diagram as shown below. Nano receiver 868MHz/915MHz version diagram as shown below.Note : Now the firmware version of the Nano receiver and module manufactured by our company is ELRS 3.3.0.; ELRS Innovative team has officially released version 1.0.0, based on the version, we have some updates:
2.4G Nano TX Module supports 500Hz refresh rate£»
Short press the button on the Nano module 3 times to get into the binding status.
We suggest our customers upgrade their modules and receivers' ELRS version to 3.3.0. Significantly, the module and receiver have to be in the same ELRS version, otherwise, the frequency cannot match successfully.
Know More About ExpressLRS ExpressLRS is an open-source RC link for RC applications. Everyone could find this project on Github or join the discussion in Facebook Group.
ExpressLRS is based on Semtech Lora SX127x or SX1280 hardware for RX and TX respectively. it aims to achieve the best possible link performance in both speeds, latency, and range. At 900 MHz a maximum of 200 Hz packet rate is supported. At 2.4 GHz a blistering 500Hz is currently supported with a custom OpenTX build. This makes ExpressLRS one of the fastest RC links available while still offering long-range performance.
More and more vendors start to support the ExpressLRS radio protocol in different parts, like radio transmitter with ELRS in stock, drone with built-in ELRS receiver, ELRS TX module for JR bay, or Nano bay. BETAFPV team take part in this project and provide a series of ExpressLRS components.
Configuration & Bind ExpressLRS uses the Crossfire serial protocol (AKA CRSF protocol) to communicate between the receiver and the flight controller board. So make sure your flight controller board supports the CRSF serial protocol. Next, we use the flight controller with Betaflight firmware to show how to set up the CRSF protocol.
The connection between the ELRS Nano receiver and the FC board is shown below. Enable the corresponding UART (e.g. UART3 below) as a Serial Rx on Betaflight Configurator "Ports" tab.
On the "Configuration" tab, select "Serial-based receiver" on the "Receiver" panel, and select "CRSF" as the protocol. Telemetry is optional here and will reduce your stick update rate due to those transmit slots being used for telemetry. Nano receiver could enter binding status by power on/off three times.
Plugin and unplug nano receiver three times;
Make sure the LED is doing a quick double blink, which indicates the receiver is in bind mode;
Make sure the RF TX module or radio transmitter enter binding status, which sends out a binding pulse;
If the receiver has a solid light, it's bound.
Note: Binding once and the receiver will store the binding information. Re-power and the connect successfully auto.