Novation Mininova . Not only was Novation's previous synth, the Ultranova, a powerful stand- alone instrument, it also fitted comfortably into a DAW setup, thanks to its editor plug- in. Like a studio Swiss Army Knife, the Ultranova could be your USB audio interface and Automap- equipped controller too. If it had any shortcomings, they were its lack of multitimbrality and perhaps its size. Despite being just three octaves long, the Ultranova occupied a sizeable chunk of desktop real- estate. Realising that some of us don't need another audio interface or MIDI controller, and that more studio space and cash are always welcome, Novation have pruned and trimmed. The result is the new, far- smaller- than- ultra- Nova, or Mininova. Scaled down as it is, the Mininova still manages to retain the Ultranova's synthesis goodies. It even introduces one of its own, a built- in vocal tuner that's not a million miles from Antares. So, with apologies for the ongoing abuse of astronomical terms, let's see if this little nova is also a star.. It's difficult not to mouth the word 'Microkorg' as you extract the Mininova from its convenient carry- box, but I doubt the physical similarity will lead to any long- term trauma. Novation's light plastic synth feels more substantial than a first glance would suggest, and its knobs are particularly good for a budget instrument, especially the large one dedicated to filter cutoff frequency. Presumably for reasons of fashion, there are wood grain- patterns on the end cheeks and optionally glowing pitch and mod wheels. Even more eye- catching are the multi- coloured transpose keys and pads placed above the keyboard. This, you'll see right away, is a three- octave (3. Conheça o novo microKORG XL+ Durante muitos anos o microKORG foi o sintetizador mais vendido em todo o mundo. Agora, o novo microKORG XL+ se junta à família KORG. Kong's Cubase Midi Device Panels Homepage. O MicroKORG S vem agora com o sistema de altofalantes 2+1, garantindo um som rico e completo em qualquer volume dentro desse corpo compacto do MicroKORG S, foram. See reviews and prices for the Korg MicroKORG Synthesizer/Vocoder, as used by Feed Me, Flying Lotus, Calvin Harris and 129 others. Occupying the middle ground in Korg's MMT lineup between the flagship Radias and the ultra-portable microKorg XL, the R3 delivers sophisticated virtual analog power. Digital Pianos / Home Products. Digital Recorders. I found its action pretty springy, with a fair amount of resistance compared to that of the Korg Microkorg XL, for example. By contrast, the pitch- bender isn't quite springy enough — at least, not if fast and twangy returns are important to you. The four performance knobs handle well — I actually prefer their smooth- sweeping action to the steppy versions of the Ultranova — but the plastic selector switch felt clunky at first. News; Tech; 29 of the best affordable hardware synthesizers in the world today; 29 of the best affordable hardware synthesizers in the world today. By The MusicRadar team. The microKORG XL+ analog modeling synthesizer delivers a fresh update to the sounds and look of the microKORG XL, making it your ideal compact keyboard. However, I warmed to it after only a short time because, although it's mechanical and workmanlike, it feels solid and positive in use. Thanks to an LED, you can always see your position in the front- panel editing matrix — well, except when it's dark, when you appreciate the clunkiness of the switch afresh. A PC or Mac editor similar to that of the Ultranova was still under construction at the time of writing, but it is possible to perform patch editing — even in- depth editing — without it. However, even though the display is clear enough and reasonably proportioned, this is simply too deep a synth engine to enjoy servicing through a crack in the bonnet. For performance purposes, the matrix of front- panel options should carry you through most eventualities. We'll look more closely at that shortly. Spinning the synth around in your lap is no problem, since it weighs just 2. Tons of Midi Solutions & Pro Audio Gear Family run, passionate musician staff! MIDI-Store.com is a family business run by a dedicated, all-musician staff. Alternatives. The obvious alternatives to the Mininova come from Korg. Their earlier Microkorg was superseded by the Microkorg XL, which itself was recently updated. The Yamaha DX7 is an FM synthesis-based digital synthesizer manufactured by the Yamaha Corporation from 1983 to 1989. It was the first commercially successful digital. I was pleasantly surprised to find a sustain pedal socket, plus an audio input that, when used, overrides the main panel's dynamic mic input (XLR). Vocoding and vocal processing are high on the agenda, so it's good that Novation supply a gooseneck microphone to get those vocal cords moving right away. As well as the stereo output jacks and a headphone socket, there's a USB port — your friendly way to connect to a PC or Mac. You can choose either the supplied adaptor or USB for power, but sadly there's no battery option. At the back of the Mininova are an input for the external power supply, an on/off switch, a USB port, MIDI I/O ports, and, all on quarter- inch jack sockets, a sustain pedal, a headphone output, stereo audio outputs and an external audio input. After a moment's contemplation of the serious dark blue panel, the fun can begin. The second of the two large knobs is a 1. The Mininova ships with an impressive 2. These can be overwritten any time you like, but there's no hurry because an additional bank awaits, empty and ready to fill with your own creations. Patches can be selected by Type or Genre. Turning the rotary switch picks suitable starting points, such as Pad/String, Bass and so on, or genres including Rock/Pop, Dubstep or House/Techno. Take the 'All' option if you prefer to scroll through the entire selection one by one. In that case you'll appreciate the switch that sorts the patches numerically or alphabetically. It's slick and fast, even if personally I could have lived without the inclusion of genres. That said, it isn't a huge overhead; Genres simply mean an extra step when saving patches. So what of the factory patches? I'm happy to report that they're a well- constructed and usable bunch, a blend of contemporary dance material and more traditional synth fare. For example, in the Classic Synth category, I was impressed by the quality of the leads and strings, especially when you make a few tweaks and reduce the often excessive reverb. A spin of the Type knob to Bass conjures a squadron of aggressive, hard- edged basses, followed by some pleasingly squelchy examples ripe for filter knob action. It's unmistakeably a digital synth, but the Mininova is no slouch in the bass department. Turn the knob to select Vocoder/Vocal Tune and be prepared to experience something new. Not only is this a well- stocked vocoder, primed with typical examples from the outset, but the vocal tuner component is way, way more fun than an evening singing karaoke to Simon Cowell. Automatic tuning effects are often derided, but they don't have to be annoying and clich. Ironically, the one category that didn't move me was labelled Arp/Movement. Like the early episodes of the latest Dr Who series, you get the sense that its patches are trying a bit too hard to impress, but I'm confident that there are contexts in which they'll work fine. Incidentally, when you discover a patch you like, it can be stored as one of eight Favorites (sic). While you explore the supplied sounds, various combinations of the eight rubber pads light up in a pleasant blend of purple and magenta. When any 'Animate' pad is pressed, it switches to a solid blue colour, indicating that an Animation is engaged. Above the pads, a small Hold button allows you to keep one or more of these Animations active until released. With all eight buttons in play, you therefore have 2. Each pad can control any function or functions that have been programmed into the modulation matrix, including the sophisticated trick of manually triggering envelopes that wowed me on the Ultranova. The buttons are close enough to the keyboard so that you can reach them with the same hand you're playing with, perhaps to slap in some transformations while casually sustaining a chord. If a pad is allocated no role, it remains dark. Naturally, I tested out recording of these expressive extras into a sequencer and although they are transmitted and received (as NRPNs), the synth doesn't show any indication that this has happened. The Mininova is considerably more compact than its Ultranova forebear, measuring just 5. Supplementing the trusty cutoff knob are 2. I alluded to earlier. At the top of the matrix are two rows of 'tweaks', eight user- assigned options for the parameters you'd most like access to; effects or modulation depths are often good candidates. Underneath is a row dedicated to filter regulars such as resonance, key tracking, filter type and drive. Then there are a couple of rows allocated to the filter and volume envelopes, before you reach the last row, its controls cherry- picked from two oscillators. Understandably, this doesn't form a complete picture. There are lots of oscillator parameters and with three oscillators to play with, there's no way to represent more than a whiff of them and still have meaningful performance control. I mentioned that deeper editing can be performed: simply press the Menu button and dive in. The pages are logically arranged and even if they're no replacement for a panel full of knobs or an on- screen editor, I was able to successfully remove the reverb from the factory patches that way. The biggest hurdle was finding which effect slot, or slots, contained reverb in the first place! At this stage, I'd suggest reading through the Ultranova review (/sos/feb. Up to 1. 8 notes of polyphony, three oscillators and twin filters in a variety of configurations add up to an intimidating amount of synth squeezed into a tiny keyboard. There are five effects slots to fill, the only (small) limitation being that only two reverbs and two delays can be used at once. However, this is more than sufficient for a monotimbral synth! There are also twin ring modulators (for those times when just one isn't enough), six envelope generators, three LFOs, and wavetables and digital waveforms to keep the virtual analogue stalwarts company. I think it's safe to say that if you relish detailed programming, the Mininova promises many happy hours of tinkering. The arpeggiator has a tempo knob and dedicated buttons for activation and hold (Latch). I confess I'm not sure about the value of a tempo knob compared to, say, a tap tempo button. Tap tempo tends to be easier if you need to match a rhythm by ear (say, in a band) while if you're sync'ed to an external MIDI clock, the knob's going to sit there looking pretty but untouched. However, when you're not worried about sync'ing to anything else, a knob is the way to go. Flip the Animate/Arpeggiate switch downwards and the pads turn red, indicating that each one now represents a step of the arpeggiator. If you want rests, just press a pad. With only eight pads, Mininova patterns are limited to eight steps (compared to the Ultranova's 3. These longer patterns were created on the Ultranova, but they play back correctly because the two synths are fully patch- compatible. Incidentally, this means that Mininova owners can avail themselves of the free Ultranova sound packs on Novation's web site.
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Download and see for yourself why MikroElektronika’s industry-grade C compilers are winning hearts and brains of embedded professionals and enthusiasts for the past. To get your list of Atmel and third party contacts, please use the filters below to select your geographical location and type of contact. Then press the Submit. In this blog post, I will describe some work I did a little while back about implementing HID- class serial communication for AVR microcontrollers using the V- USB library. Introduction. First, let me explain what I am trying to do. As you probably know, V- USB is a very useful software- only implementation of low- speed USB device for AVR microcontrollers. It adds USB functionality for almost any AVR, particularly for those without hardware USB functionality. With this, it’s possible to make a very low- cost standalone Arduino with USB port and without having to use an FTDI chip. I know there is the Arduino Leonardo, which is based on ATmega. USB functionality. But mega. 32u. 4 only exists in SMT package, and it’s more expensive than mega. Besides, I am fully embracing the ? Mostly for two reasons. One is to flash a program to the microcontroller, so it needs a USB- based bootloader. For this, there is a very nice open- source project called USnoobie, which can bootload mega. USBasp programmer. This way you can flash a program through the USB port directly, without using a serial cable or an external AVRISP programmer. So this is all good. The second reason to have USB is for serial communication — the ability to transfer data (e. This is useful especially for debugging (i. There are some related projects. For example, I came across the AVR- CDC project, which turns a mega. CDC- class USB- serial converter. But there seem to be some limitations of using V- USB to implement CDC (i. I would like to make a HID- class USB device which does not require driver installation. So overall I didn’t find any available resource that I can use directly. Circuit Design and V- USBNow I’ve explained the motivation, let’s see how to go about implementing it. The first step is to learn to use V- USB. I started with the Easy. Logger project downloaded from the V- USB website. It is based on the tiny. The program reads a sensor (e. This is an excellent starting point for me because USB keyboard is a standard HID- class device, and the project is simple enough that I can easily learn and make modifications. To adapt it to mega. I first made a circuit based on USnoobie. Here is the schematic and my build of the circuit on a breadboard: It’s a pretty standard V- USB setup. I assigned digital pin PD2 (INT0) to USB D+, pin PD7 to USB D- , and PD4 to a pushbutton. The pushbutton is used to enter bootloading mode. Specifically, if the button is pressed when the circuit is powered up, the bootloader is activated and the mcu will appear as a USBasp programmer. Different from USnoobie, I’ve decoupled this button from the D- line, so that I can use the button for general- purpose input (otherwise pressing the button will trigger the D- line). This requires changing the USnoobie code slightly to use pin PD4 for bootloading condition. Finally, I’ve also added a MCP9. ADC0 for testing later. The next step is to modify the source code. First, change usbconfig. D+ and D- pin settings, specifically the following three macro defines: #define USB. This step is pretty technical and tedious. It mainly involves changing register names to match mega. Also, the calibrate. Oscillator(); function can be removed as the mega. MHz clock. I also modified the Makefile in order to compile and flash the code for mega. After a few tweaks here and there, the Easy. Logger started working on my mega. It can successfully output numerical values to a text editor through the USB port. This is very encouraging. If these steps don’t make much sense, you can take a look at the code below, and give it a try yourself. Learning HIDHID stands for Human Interface Device. It’s a USB class designed primarily for keyboard, mice, joystick, and similar human interface devices. The nice thing about HID is that it’s supported on all operating systems. For example, on Windows, the system uses built- in HID driver to handle USB requests, so no driver installation is required. This is why when you plug in a keyboard or mice, you never have to install a driver (imagine how annoying it would be if you had to!). To implement HID, you first will need to construct a HID descriptor, which describes the number of reports, and the size, meaning, and (optionally) value range of each report. For example, these reports can be the ASCII code of the pressed key, the x and y offsets, and button presses of the mouse. There are also more general- purpose reports like a buffer of bytes. This is what I will be using to transfer bytes in and out between the device and host. To be honest, the whole USB descriptor thing was very obscure to me in the beginning. I didn’t know if there is one correct way to define it, or it can be flexible. As it turns out, Linux is pretty forgiving about it, but Windows is not. After many trials and errors, I finally settled with this HID descriptor: PROGMEM constcharusb. Hid. Report. Descriptor. As I said above, Linux is pretty flexible about the descriptor — you can change it in many ways and it still works. Windows, however, is very strict — if you are not careful, it will simply refuse to recognize the device. The next step is to write functions to handle the USB requests. For transferring data out, I used the usb. Set. Interrupt function, which allows sending data spontaneously to the host (i. So everything gets compiled in the Arduino software. You can certainly use avr- gcc to compile the code as well). I made HIDSerial an inherited class from Arduino’s Print class, so I can make use of the many available print functions (e. For transferring data in, I implemented the usb. Function. Write function, as described in the V- USB Document Wiki. Now, before I can test and debug the code, I need to have some minimal host software to communicate with the device. That’s what I will be describing next. Write Host Software using Processing. Going the HID route means the device will not appear as a standard serial COM port, so you can’t use the standard serial monitor to send and receive values. Instead, I will have to write host software myself. I can certainly do this in C or Java. But since I want to make the host software cross- platform, I have chosen to implement it in Processing, which allows me to easily export the program as standalone applications on all platforms. Long story short, to do this, I used HIDAPI library. It has all the goodies to handle communications with HID devices, such as finding a device, opening the device, reading from the device, and sending feature report to the device. Also, using the G4. P library, you can easily build a GUI with buttons and text fields, and make the interface just like a standard serial monitor. Once the software is finalized, I can simply click on ! Below are two screenshots of the HID serial monitor: Source Code. The source code of this project is available for download on my Git. Hub repository: You can either do a git clone, or directly download the project as a zip file (see the Download . The folder contains circuit schematic, part list, Arduino library (HIDSerial), host software (HID serial monitor), and bootloader (optional, but recommended as it allows you to re- flash the microcontroller through USB, without any external programmer). The Arduino library consists of several starting examples, which are also demonstrated in the video above. I am sure there are bugs and issues with the code, but please feel free to leave comments and feedback below, in order for me to improve the code. Limitations and Issues. The biggest limitation of this implementation is the data transfer speed — it’s much slower compared to a standard USB- serial converter. This will be an issue if you need to pump out data as fast as possible. But I figured that for the purpose of debugging, the transfer speed is usually not that critical. The software works pretty reliably in Linux, but I’ve found that on Windows, the host software starts to lose data after running for a while, so not all data get transferred correctly. Resetting the microcontroller and restarting the host software seem to get it back to work. I am still investigating the cause of this issue. It may still have to do with Windows being very strict with USB communication protocols. Perhaps the USB experts can take a look at the code and point me in the right direction. Adapting the Code to Other AVRs. It’s relatively easy to adapt the code to other AVRs. For example, ATtiny. V- USB platform, since it’s small, cheap, and has internal oscillator that can run at 1. MHz, which meets the USB standard (so it saves a crystal and frees up two pins). By changing a couple of pin assignments in the source code, I was able to get the HID serial functions to work on tiny. I really should do it on tiny. KB flash space (even a simple demo would take more than 3. K flash space). Here is a picture of the tiny. You can even program tiny. Arduino software by following the descriptions here. Thanks for reading the post. Feedback, comments, and questions are welcome. Request Rejected. The requested URL was rejected. Please consult with your administrator. Your support ID is: 8. ECO cannot be held responsible for any incorrect information in the EFIS system. Ready, Set, Dive. 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