Ive been playing around with the remote controller options in Cubase 12 pro. I added one, but it is for a different version of my MIDI controller (mine is Arturia Keylab 61, there is only a template for Keylab essential). So I want to delete it. How on earth can this be done ?? I cant see anyway to remove it.

That removes the script file, not the instance of the controller. This is insane, I now have a midi controller that isnt setup correctly (Its completely the wrong one) I cant use it, the controls are all mapped incorrectly meaning I cant use my controller in this project and there is no way to delete it !


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Just created a brand new project, and the midi remote that I setup in my previous project has been imported into this project ! How the hell can I get rid of it ? I can no longer use my midi keyboard in any projects, this is a showstopper, can anyone help ?

The FC-W is a wireless remote control designed to activate up to four CHAUVET fog machines independently (separate receivers for additional foggers are required). Two LED indicators display whether the machine is ready or heating.

i tried fly today but have a error - controller invalid remote controller mode

if you recently updated your firmware check (multiple flight mode) is on in DJI go i go dji go and the flight mode is on i have a phantom 3 pro can you help me please

I have had exactly the same problem with my Mavic Pro. I was not able to resolve it with DD. I unloaded and reloaded DD, and I had updated all of the software. I have not worked on it for several weeks as I have been flying a different drone. If it still persists, I will try a full reset of both the controller and the drone.

Important troubleshooting - if you are running VirtualBox on the same host/desktop where the controller is running, and trying to start the virtual network on Mininet VM produces this error: "Unable to contact the remote controller at ...", then the following resolves the problem:

Search for the interface as in item 1 (vboxnet0 in our example) Take the ip address specified there (most probably 192.168.56.1 - default), and that is the correct remote controller ip address to use when starting a virtual network in mininet vm as stated in the example above (--controller=remote,ip=192.168.56.1) .

In electronics, a remote control (also known as a remote or clicker[1]) is an electronic device used to operate another device from a distance, usually wirelessly. In consumer electronics, a remote control can be used to operate devices such as a television set, DVD player or other digital home media appliance. A remote control can allow operation of devices that are out of convenient reach for direct operation of controls. They function best when used from a short distance. This is primarily a convenience feature for the user. In some cases, remote controls allow a person to operate a device that they otherwise would not be able to reach, as when a garage door opener is triggered from outside.

By the late 1930s, several radio manufacturers offered remote controls for some of their higher-end models.[13] Most of these were connected to the set being controlled by wires, but the Philco Mystery Control (1939) was a battery-operated low-frequency radio transmitter,[14] thus making it the first wireless remote control for a consumer electronics device. Using pulse-count modulation, this also was the first digital wireless remote control.

The first remote intended to control a television was developed by Zenith Radio Corporation in 1950. The remote, called Lazy Bones,[15] was connected to the television by a wire. A wireless remote control, the Flashmatic,[15][16] was developed in 1955 by Eugene Polley. It worked by shining a beam of light onto one of four photoelectric cells,[17] but the cell did not distinguish between light from the remote and light from other sources.[18] The Flashmatic also had to be pointed very precisely at one of the sensors in order to work.[18][19]

In 1956, Robert Adler developed Zenith Space Command, a wireless remote.[15][20][21] It was mechanical and used ultrasound to change the channel and volume.[22][21] When the user pushed a button on the remote control, it struck a bar and clicked, hence they were commonly called "clickers", and the mechanics were similar to a pluck.[21][23] Each of the four bars emitted a different fundamental frequency with ultrasonic harmonics, and circuits in the television detected these sounds and interpreted them as channel-up, channel-down, sound-on/off, and power-on/off.[24]

Later, the rapid decrease in price of transistors made possible cheaper electronic remotes that contained a piezoelectric crystal that was fed by an oscillating electric current at a frequency near or above the upper threshold of human hearing, though still audible to dogs. The receiver contained a microphone attached to a circuit that was tuned to the same frequency. Some problems with this method were that the receiver could be triggered accidentally by naturally occurring noises or deliberately by metal against glass, for example, and some people could hear the lower ultrasonic harmonics.

In 1980, the most popular remote control was the Starcom Cable TV Converter[27] (from Jerrold Electronics, a division of General Instrument)[15] which used 40-kHz sound to change channels. Then, a Canadian company, Viewstar, Inc., was formed by engineer Paul Hrivnak and started producing a cable TV converter with an infrared remote control. The product was sold through Philips for approximately $190 CAD. The Viewstar converter was an immediate success, the millionth converter being sold on March 21, 1985, with 1.6 million sold by 1989.[28][29]

The Blab-off was a wired remote control created in 1952 that turned a TV's (television) sound on or off so that viewers could avoid hearing commercials.[30] In the 1980s Steve Wozniak of Apple started a company named CL 9. The purpose of this company was to create a remote control that could operate multiple electronic devices. The CORE unit (Controller Of Remote Equipment) was introduced in the fall of 1987. The advantage to this remote controller was that it could "learn" remote signals from different devices. It had the ability to perform specific or multiple functions at various times with its built-in clock. It was the first remote control that could be linked to a computer and loaded with updated software code as needed. The CORE unit never made a huge impact on the market. It was much too cumbersome for the average user to program, but it received rave reviews from those who could.[citation needed] These obstacles eventually led to the demise of CL 9, but two of its employees continued the business under the name Celadon. This was one of the first computer-controlled learning remote controls on the market.[31]

In the 1990s, cars were increasingly sold with electronic remote control door locks. These remotes transmit a signal to the car which locks or unlocks the door locks or unlocks the trunk. An aftermarket device sold in some countries is the remote starter. This enables a car owner to remotely start their car. This feature is most associated with countries with winter climates, where users may wish to run the car for several minutes before they intend to use it, so that the car heater and defrost systems can remove ice and snow from the windows.

By the early 2000s, the number of consumer electronic devices in most homes greatly increased, along with the number of remotes to control those devices. According to the Consumer Electronics Association, an average US home has four remotes.[citation needed] To operate a home theater as many as five or six remotes may be required, including one for cable or satellite receiver, VCR or digital video recorder (DVR/PVR), DVD player, TV and audio amplifier. Several of these remotes may need to be used sequentially for some programs or services to work properly. However, as there are no accepted interface guidelines, the process is increasingly cumbersome. One solution used to reduce the number of remotes that have to be used is the universal remote, a remote control that is programmed with the operation codes for most major brands of TVs, DVD players, etc. In the early 2010s, many smartphone manufacturers began incorporating infrared emitters into their devices, thereby enabling their use as universal remotes via an included or downloadable app.[32]

The main technology used in home remote controls is infrared (IR) light. The signal between a remote control handset and the device it controls consists of pulses of infrared light, which is invisible to the human eye but can be seen through a digital camera, video camera or phone camera. The transmitter in the remote control handset sends out a stream of pulses of infrared light when the user presses a button on the handset. A transmitter is often a light emitting diode (LED) which is built into the pointing end of the remote control handset. The infrared light pulses form a pattern unique to that button. The receiver in the device recognizes the pattern and causes the device to respond accordingly.[33]

Most remote controls for electronic appliances use a near infrared diode to emit a beam of light that reaches the device. A 940 nm wavelength LED is typical.[34] This infrared light is not visible to the human eye but picked up by sensors on the receiving device. Video cameras see the diode as if it produces visible purple light. With a single channel (single-function, one-button) remote control the presence of a carrier signal can be used to trigger a function. For multi-channel (normal multi-function) remote controls more sophisticated procedures are necessary: one consists of modulating the carrier with signals of different frequencies. After the receiver demodulates the received signal, it applies the appropriate frequency filters to separate the respective signals. One can often hear the signals being modulated on the infrared carrier by operating a remote control in very close proximity to an AM radio not tuned to a station. Today, IR remote controls almost always use a pulse width modulated code, encoded and decoded by a digital computer: a command from a remote control consists of a short train of pulses of carrier-present and carrier-not-present of varying widths. 006ab0faaa

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