Heard on countless songs in multiple genres worldwide, ORANGE VOCODER AU is indeed THE classic software vocoder plug-in. Originally developed by Prosoniq in 1998, ORANGE VOCODER has since evolved through numerous iterations, always staying at the cutting edge right to this day.
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Emulation of an 18 Channel filter-bank vocoder (https://vgtdecor.ru/hack/?patch=6273). Requires a Pentium CPU, Windows95, and a full-duplex sound card with up to date full duplex drivers. Designed for use with SoundBlaster cards, but may work with other brands.
The MMDVM-based radio/modem boards can be mounted on and work well with a variety of Raspberry Pi models, most commonly the compact Zero W and the faster and more powerful 3B, 3B+, 3A+, and 4B. They'll also work on most of the older models that have a 40-pin GPIO connector. Some MMDVM-based radio/modem boards are designed to work with other small computers like the NanoPi Neo, but those aren't as common. As I mentioned earlier, some hotspots incorporate both the radio/modem and computing components onto a custom single board.
Once Pi-Star 4, which supports the Raspberry Pi 3A+, became available, I upgraded my mobile hotspot to a combination of an RPi 3A+ and an MMDVM simplex board with a ceramic onboard antenna. I chose the RPi 3A+ because it's more compact and runs cooler than an RPi 3B+, while being a lot faster than an RPi Zero W. I ended up with a case that's not much bigger, and has the advantage of no awkward antenna sticking out.
Note 2: My 3/5″ Nextion Basic NX4832T035 and 3/2″ Nextion Enhanced NX4024K032 displays run fine using the 3V3 (3/3 volt) connection on the ZUMspot v0/4 board. I've tested this with both the RPi 3B and Zero W using a quality 2/5A power supply. I've heard others have needed to connect to a 5-volt GPIO pin. On the ZUMspot v0/6 board, it's now a 5V connection.
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Note: Pre-assembled MMDVM hotspots take away from the ham what is, in my opinion, a fun aspect of hotspots: the ability to learn and explore by putting them together ourselves. Still, while I don't use these myself, I can certainly understand why they are attractive to some. And at least these are good quality.
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A companion board for the DVMEGA. The DVMEGA RPi board can be paired with the BlueStack-Micro+ instead of an RPi, which enables a bluetooth connection to an Android or iOS phone running BlueDV or a serial connection to a Windows computer running BlueDV.
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The RPi hotSPOT with Cool FAN has the form factor of an RPi 3A+, but this is a great board to run on an RPi 3B+ because of its very quiet but effective built-in fan, which helps keep the hot 3B+ running cooler. When I'm running the hotspot, I keep the case cover off; at other times, I keep it on to keep the dust out. Bonus: the RxOffset needed no adjustment!
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MMDVM-based hotspots can run various displays. The most common are Nextion displays in a variety of sizes and the smaller OLED displays.
Conclusion: While I enjoyed learning how to program the Nextion displays, in the end I don't think a display is a necessary component for a hotspot running Pi-Star (the one exception is that I appreciate being able to easily see the hotspot's IP address). That said, I find it worth it to add Nextion displays to some of my hotspots simply because doing so broadens my knowledge about both hotspots and electronics. Bottom line: Nextion displays are optional, fun, and instructional.
A personal, low-power hotspot is like your own personal repeater and gateway computer. Similar to a repeater, it's capable of receiving and transmitting RF, though at a very low power level, typically, 10mW or 0/01 watts. Like a gateway, it's also capable of connecting to the internet to send and receive data.
Cymatics Vocal Essentials: What are Vocal Essentials? Adding genuine human perception to your tracks is one of the best ways to make your music more memorable. To achieve this, many of the best producers use high-quality, professionally recorded vocals to use in their songs – whether it’s full chapels or catchy vocal melodies and parts. At Vocal Essentials, our production team carefully studied the best tracks from various genres, including Pop, EDM, and Hip Hop, to present some of our top-quality vocal samples and loops today.
Many personal, low-power hotspots are boards that mount on small computers like the Raspberry Pi, a few are all-in-one boards, and some others are thumb drives that plug into computers. There's even an experimental one that's a handheld radio that plugs into a Raspberry Pi via USB.
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One that I really like is for finding DMR nets: Ham Radio DMR Nets. It has a quite comprehensive list of active DMR nets.
A hotspot has software controlling its overall operation. In addition, an MMDVM-based radio/modem board component has firmware controlling its core functions. Usually, software and firmware can be upgraded by the end user, enabling the hotspots to incorporate feature updates and fixes.
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I haven't personally tried this hotspot. One thing to be aware of is that it uses custom firmware and it may also use a custom version of the Pi-Star software, so you are dependent on Mark for new versions, and may even need his assistance for some of the updating.
Ákos, of SharkRF, Guus, of DVMEGA, and Dave, of LoneStar, are a few more of these geniuses. They have created their own uniquely innovative solutions for bridging digital radio and the internet.
Most of the other current hotspots are MMDVM-based and work well with the Pi-Star app. Setup is relatively easy, especially since many of them can use Pi-Star's Auto AP feature for wireless network configuration (requires a recent RPi like the Zero W, 3B, 3B+, 3A+, or 4B).
The ThumbDV is a USB device with a built-in AMBE3000™ chip, so it can be plugged into a computer that has a microphone and speaker, and doesn't require a digital radio. I haven't tried this hotspot so can't share much about it. Apparently it can support D-STAR, DMR, and YSF, depending on the hotspot software used. I even heard someone on a net who had the ThumbDV plugged directly into his Android phone (I'm guessing using BlueDV software).
Intelligibility is key when transforming speech using a vocoder. Which is something that ORANGE VOCODER (websites) excels at. Apart from its unique, highly transparent algorithms, it also features a high frequency pass-through circuit as well as voiced/unvoiced detection. On the other hand, ORANGE VOCODER (anchor) has several options to make the results more diffuse, or even static Â the integrated Filterbank Reverb allows smoothing and blurring the Filterbank modulation, while the Freeze function will capture the current state of the Filterbank and hold it infinitely.
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Andy's work has made a huge difference to the thousands of us around the world who use MMDVM-based hotspots and repeaters by creating Pi-Star and making it freely available. Andy does this as a side project and somehow still manages to find time for his full-time job, his family, and his studies.
I'm a woodworker, so for fun I decided to make a few hotspot cases out of some thinwood I had left over from my woodworking projects, as well as a few other scraps. I've designed and built several different cases as I experimented with various combinations of RPi boards, batteries, displays, and shapes.
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This case includes a 3/2″ Nextion enhanced display. Initially, it had a ZUMspot mounted on a RPi 3B+ inside. Later, I upgraded to an RPi 4B (a board that I think is generally overpowered for a hotspot, but I wanted to experiment with it). Therefore, I changed the case to incorporate a USB-C power connector, mounted a CanaKit PiSwitch (USB-C) on the back, and added a fan and some more ventilation holes to compensate for the extra heat the RPi 4B generates.
Jim is one of these genius tinkerers. He worked closely with Jonathan and Andy on the original MMDVM project, and is the guiding hand behind the ZUM Radio products.
A note about the shape: The DVMEGA has an odd form factor. Its GPIO connector is sized for 10 pins (2 rows of 5 pins) and it has a standoff in an odd place on the opposite side from the pins, between the pins and the antenna mount. I'm guessing this may have matched some older RPi, but it's a bit awkward on the current RPi 3B/3B+/3A+ boards. The standoff acts as a pivot point, so that if you touch the antenna, the GPIO connector can easily pull up off the pins.
Uses the same registration key codes as the previous version
An AMBE-3000™ based multi-mode IP radio for DMR, D-STAR, and YSF. Includes a built-in speaker and a 2/4″ touchscreen. Its host system is based on the NanoPi, and has Pi-Star pre-installed. As far as I know, it doesn't support NXDN, P25, any cross modes, or POCSAG.
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ORANGE VOCODER comes with an easy to use Hall Reverb, a three-channel mixer for blending Carrier and Modulator with the Vocoder (https://vgtdecor.ru/hack/?patch=4047)'s output, a stereo widening function aptly called PHAT, a 10-band graphic EQ with analyzer, a random preset generator, and more than 60 factory presets. Test drive the free trial of this vocoding (https://vgtdecor.ru/hack/?patch=3002) powerhouse today!
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I run several Nextion displays (enhanced 3/2″ and 3/5″), which I enjoy even if I don't find them necessary. I also tried a couple OLED units, which are fine, though I personally didn't like them much.
Recently, a new third type of hotspot was released, the SharkRF openSPOT3, which also has its own AMBE® chip. However, in this case, the AMBE® chip adds additional capability for transcoding between modes like D-STAR and DMR. When the AMBE® chip is used this way, a digital radio is still needed.
The Nano-Spot is a plug-n-play device. It includes built-in WiFi, RF and WiFi antennas, and an OLED display, all in a durable extruded aluminum case.
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I added a right-angled micro-USB adapter inside the box to make plugging in easier (the plugin port aligns better with the port on the portable charger), as well as to reduce wear and tear on the RPi's micro USB port. The mahogany case fits nicely on top of the battery, attached with Soft Touch Velour cinch straps.
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The included Auto-Key plug-in provides automatic key detection. Auto-Tune Pro also includes ARA support with compatible VST3 DAWs and adds popular user-requested features such as Classic Mode for getting that legendary Auto-Tune 5 sound.
This software connects to D-STAR, Fusion, NXDN, P25, and M17 reflectors and gateways/repeaters over UDP. It uses open source vocoder (our website) software for all modes, and requires no AMBE hardware or silly remote AMBE servers. Dstar encoding is currently not acceptable for QSOs, so TX has been disabled.
Here's a case that I modified for a dual hotspot. All I had to do was snip a couple openings out of the sides. I always use the smoked tops because the LEDs on many of the radio/modem boards are way too bright for me.
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Huang is quite passionate about amateur radio and hotspots. He has designed a variety of boards. He also provides friendly support for his hotspots. A digital voice radio is required.
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On the audio side, it has eight mic/line inputs, each with phantom power, phase reverse, input pad and high-pass filter. Apparently, the Class A mic preamps can be adjusted in 1dB steps, with up to 60dB of gain and can be remote controlled. There are also 4 dual-channel AES outputs on XLRs if you don't want to use the Dante.
Although these fans are only 10 mm in height, they are a bit wider and deeper (40 mm x 40 mm) than a standard RPi fan. That's not a problem if you're making your own custom case, but if you're using a case designed for a typical RPi fan, these Noctua fans won't fit.
There are some more special people who we all owe a debt of gratitude for their willingness to release their software for free. Jonathan Naylor (G4KLX) for his most excellent DStarRepeater, ircDDBGateway suite, and more recently MMDVMHost and DMRGateway. These applications form the core of what makes Pi-Star what it is, and without these excellent applications Digital Voice for Amateurs would be an entirely different and barren landscape.
The DVAP was among the earliest personal hotspots available (my first hotspot was a DVAP). The DVAP was designed to be connected to a PC running Windows or a Mac, and to work with a D-STAR radio.
On the ZUMspot v0/4 board, this set is connected to the clock (SCL) and data (SDA) pins on the STM32 chip. On the ZUMspot v0/6 board, the SDA/SCL pins are connected to the GPIO pins.
One of those primary chips is an Analog Devices ADF7021 Integrated Chip, a low-power 2FSK/3FSK/4FSK* transceiver. The ADF7021 generates RF signals and handles audio tones used by our digital radios to represent 1s and 0s.
When I started experimenting with the Pi-Star 4/0 Release Candidate running on the new (at that time) RPi 3B+, I noticed that my hotspots started heating up a bit more than normal. Then I read some early reviews about the RPi 4B, which I knew I'd want to try out, and noted that it has a heat signature that makes even the 3B+ look like a snowball on an iceberg. So I decided to add fans to a couple of my hotspots running those warmer boards. I've tried a bunch of different fans. Here are some of the better ones I've found.
The newer versions of this board (1/6 and later) use a 12/288 MHz TCXO chip, while the older versions used a 14/7456 MHz chip. You also can see which TCXO chip your board has in the Radio Info module of the Pi-Star dashboard.
Most of my hotspots are based on the Raspberry Pi 3A+, 3B+, and 4B. While I like how small the RPi Zero W is and still have one hotspot based on it that I test with, I'm spoiled by the speed of the RPi 3A+/3B+/4B boards. The two hotspots I use the most, at my desk and in my shop, are currently based on the RPi 4B, both of which have custom cases with fans.
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Works well with Pi-Star, and once you've soldered the firmware update jumper wire in place for Pi-Star, it's easy to update the DVMEGA in-house firmware via Pi-Star's command line. It's also possible to update the firmware when it's mounted on a BlueStack board connected to a PC, with the jumper wire soldered to different pins.
When running its own software, the DVAP works with only DPLUS (REF) reflectors, intentionally block access to XRF, DCS, and XLX reflectors, and doesn't support DMR, YSF, or P25 modes. I've read that some people use Pi-Star instead, but I don't have any experience with that.