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MINI MWC飞行管制局和DSM2兼容的接收机ACC /陀螺仪/气压/ MAG

MINI MWC飞行管制局和DSM2兼容的接收机ACC /陀螺仪/气压/ MAG

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SKU:
9154000006-0
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新一代MINI MWC飞控板是在MWC平台的进步和别出心裁的里程碑。结合ATMEGA328P的功率与加速度计,陀螺仪,气压计和指南针的数字与一个板上7通道DSM2兼容接收器(带板载绑定按钮!)。所有包装质量双铜PCB与金涂层连接和占地面积比一个大硬币大不了多少!迷你多功能型转子的世界只是赶上了他们的大哥哥的。

在MWC平台提供的功能一箩筐,并配备等;自动稳定,高度保持,简单模式等等,并与现有的GPS选项中设定的位置,甚至游荡并返回家园的选择!你甚至可以选择安装选购的OLED屏,方便编程和反馈!

特征:
•7CH DSM2兼容的接收机(PPM SUM)
•自电压检测
•FTD1保护
•ATMEGA328P微控制器
•加速度计MPU6050陀螺仪和
•BMP085数字气压传感器
•HMC5883L数字压力计/罗盘
•C8051F330 MCU
•CYRF69103电台
•双端口IIC
•UART
•GPS端口(GPS不包括在内)
•OLED屏幕端口(不包括OLED)

以下功能可通过MINI MWC飞控板上实现:
- 自动稳定
-Stabilize高度
- 固定课程标题
在一个确定的位置-Hovering(由GPS需要12C-GPS转换板和支架)
-return自动飞行(由GPS需要12C-GPS转换板和支架)
-和更多

MINI MWC飞行板支持的模式:
-GIMBAL个体云台稳定
-SINGLECOPTER-VTOL单轴
-BICOPTER-BICOPTER头像
-Tricopter
-FLYING WING
-VTAIL
- 固定机翼飞机
-4轴(QUADX,QUADP,Y4)
-cradle /万向头稳定
-6轴(Y6,HEX6,HEX6X)

不包括选项:(股票即将推出)
-MX-FTDI编程棒工具
-OLED显示屏,可直接安装在MINI MWC飞控板
-IIC至UART的转换板,它是用于改变的GPS的UART信号到IIC信号
-GPS模块

眼镜:
尺寸:47.7X23.5X11mm
重量:7.8克
工作电压:5-8.4V

*变送器MINI MWC飞控板需要支持DSM2及4路以上(我们建议6CH或以上)

  • SKU 9154000006-0
  • Brand -
  • 容量(mAh) -
  • 重量 16.0000
  • 长度 50.00
  • Packaging Width 10.00
  • 高度 25.00

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This is a great little 250 racer controller. I had a heck of a time getting the channel order correct for my OrangeRX T6. I loaded it with MultiiWii 2.3
and modded the config.h file a lot. The channel order is odd being PITCH,YAW,THROTTLE,ROLL in the ppm_sum setting. Also, I was able to get the buzzer and VBAT working great. I will try to post my config.h file and hardware mods to the files section.

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This is a great little 250 racer controller. I had a heck of a time getting the channel order correct for my OrangeRX T6. I loaded it with MultiiWii 2.3
and modded the config.h file a lot. The channel order is odd being PITCH,YAW,THROTTLE,ROLL in the ppm_sum setting. Also, I was able to get the buzzer and VBAT working great. I will try to post my config.h file and hardware mods to the files section.

This is actually a lovely little board, it's just that it's NOT a plug and play kind of thing. If you're good with microcontrollers and electronics, then you're gonna do just fine. You need to get the little JST connectors and hook it up to an FTDI board and at the very least re-program it with the latest MultiWii software. Since the board lacks a DTR pin to automatically reset the CPU (for activating the bootloader) it's imperative that once you click "UPLOAD" on Arduino that you time it such that you power up the board (by plugging the serial adapter in to the board) such that it comes to live a second or so before the code starts to push out of the FTDI. Obviously, you can't do this by plugging the USB in to and out of the computer, as Arduino would have to re-enumerate the ports, etc etc, so make and break the connection between the FTDI and flight controller. You also have to upload the right setup of firmware. See (and set up) the config.h file in the Arduino firmware. Download it directly from Multiwii. The how-to and particulars of the code are out of scope of what I feel like talking about right now. Sorry. You're smart, you can figure it out. I will say this... It likes to fly backwards, so keep that in mind.

But yeah, all the nay-sayers, give it another chance. This board is fine, you just don't know what you're doing.

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This is actually a lovely little board, it's just that it's NOT a plug and play kind of thing. If you're good with microcontrollers and electronics, then you're gonna do just fine. You need to get the little JST connectors and hook it up to an FTDI board and at the very least re-program it with the latest MultiWii software. Since the board lacks a DTR pin to automatically reset the CPU (for activating the bootloader) it's imperative that once you click "UPLOAD" on Arduino that you time it such that you power up the board (by plugging the serial adapter in to the board) such that it comes to live a second or so before the code starts to push out of the FTDI. Obviously, you can't do this by plugging the USB in to and out of the computer, as Arduino would have to re-enumerate the ports, etc etc, so make and break the connection between the FTDI and flight controller. You also have to upload the right setup of firmware. See (and set up) the config.h file in the Arduino firmware. Download it directly from Multiwii. The how-to and particulars of the code are out of scope of what I feel like talking about right now. Sorry. You're smart, you can figure it out. I will say this... It likes to fly backwards, so keep that in mind.

But yeah, all the nay-sayers, give it another chance. This board is fine, you just don't know what you're doing.

This board is absolute garbage. I have spent months researching and tuning this board to perfection....there is NO vibrations, even used the low pass filter. ESC's calibrated 20 times, eprom's wiped, etc. ,etc... after a minute, it will just DROP from the sky. There is nothing I can do to fix it. I have read EVERY thred, EVERY post, and EVERY review. (yes leocopter too) And this board WILL NOT fly reliably. At some point during flight it will just DROP to the left and crash. GARBAGE!!! Multiwii is also a dieing trend. Sure it has a lot of features (that no one seems to ever get working right) operating systems like open pilot, and other easy to use interfaces. So put it like this, you can buy a small toy quad (hubsan) for about the same $, and it flies AWESOMELY!! You put this board in anything, you are looking at LONG hours becoming a computer programmer just to never get it to work right. I know many other boards have great reviews...but NOT this one!! GARBAGE!

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This board is absolute garbage. I have spent months researching and tuning this board to perfection....there is NO vibrations, even used the low pass filter. ESC's calibrated 20 times, eprom's wiped, etc. ,etc... after a minute, it will just DROP from the sky. There is nothing I can do to fix it. I have read EVERY thred, EVERY post, and EVERY review. (yes leocopter too) And this board WILL NOT fly reliably. At some point during flight it will just DROP to the left and crash. GARBAGE!!! Multiwii is also a dieing trend. Sure it has a lot of features (that no one seems to ever get working right) operating systems like open pilot, and other easy to use interfaces. So put it like this, you can buy a small toy quad (hubsan) for about the same $, and it flies AWESOMELY!! You put this board in anything, you are looking at LONG hours becoming a computer programmer just to never get it to work right. I know many other boards have great reviews...but NOT this one!! GARBAGE!

This is a very good FC. Not easy to set up, but well worth the effort if you want the ultimate tiny MultiWii board !
This is how I set up my Mini MWC boards (after a lot of tinkering ...):
1- Building an interface between your FTDI usb board and the flight controler is quite simple : solder the 4 leeds of the 'mini micro 4 pin 1.25 T-1 JST connector' cable (the same one used on the Neo 6-M GPS module - SKU: 387000004) to a 6 pin header (GND, 5V, Rx, Tx). Solder an extra wire to GND. On the other end of the wire, solder a probe (I my case a 1 pin header with heatshrink tubing). You will need this probe to put the 328P in programming mode. Make sure Rx goes to TX and vice versa.
2- Plug you new interface cable to the board (or power the board via the output headers - D3 to D11) while pushing the bind button (the one on the top circuit board where the antenna is soldered). The red LED will blink rapidly. You are now in binding mode. Turn on your DSM2 compatible transmitter while pressing on its bind button (if you have a ORX orange DSM2 module). The LED on the Mini MWC will stop blinking then will stay on. It is now binded to your Tx.
3- In Arduino load the MultiWii shetch and select the HK_MultiWii_SE_V2 board. Its is fully compatible with the Mini MWC (you get the correct sensor orientation). Also make sure you uncomment #define SERIAL_SUM_PPM. If you plan to use an OLED display

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This is a very good FC. Not easy to set up, but well worth the effort if you want the ultimate tiny MultiWii board !
This is how I set up my Mini MWC boards (after a lot of tinkering ...):
1- Building an interface between your FTDI usb board and the flight controler is quite simple : solder the 4 leeds of the 'mini micro 4 pin 1.25 T-1 JST connector' cable (the same one used on the Neo 6-M GPS module - SKU: 387000004) to a 6 pin header (GND, 5V, Rx, Tx). Solder an extra wire to GND. On the other end of the wire, solder a probe (I my case a 1 pin header with heatshrink tubing). You will need this probe to put the 328P in programming mode. Make sure Rx goes to TX and vice versa.
2- Plug you new interface cable to the board (or power the board via the output headers - D3 to D11) while pushing the bind button (the one on the top circuit board where the antenna is soldered). The red LED will blink rapidly. You are now in binding mode. Turn on your DSM2 compatible transmitter while pressing on its bind button (if you have a ORX orange DSM2 module). The LED on the Mini MWC will stop blinking then will stay on. It is now binded to your Tx.
3- In Arduino load the MultiWii shetch and select the HK_MultiWii_SE_V2 board. Its is fully compatible with the Mini MWC (you get the correct sensor orientation). Also make sure you uncomment #define SERIAL_SUM_PPM. If you plan to use an OLED display

No File Name Download [2082]
No File Name Download [1597]
Initial config - simple and detailed Download [2096]
No File Name Download [2546]
instructions and updating Download [1446]
What is This ? Download [906]
No File Name Download [58]
EdAmps Hardware Mods Download [134]
LeoCopter's Guide Download [1464]
No File Name Download [1727]
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