Double Tone IQ-Generator Crack 🤘

Easy to use Double Tone IQ-Generator for testing direct conversion SSB-transmitters based on phase method etc. Two independent IQ-DDS running from 0 to 24 kHz with independent adjustable volume.
Because of different time delays between right and left channel depending on sound card and PC the time delay between the channels can be adjusted in a range of -/-20µs (by 0.1µs step size).

 

 

 

 

 

 

Double Tone IQ-Generator Full Product Key Free

Concept

Double Tone IQ Generator is an easy to use dual channel Dual Tone
Generator which is provided with a special encoder. The encoder reads the
two internal IQ-signals and creates a third signal by using the difference
of the two input signals. This can be used with a mixer or just an output
filter to go to a stereo amplifier or loudspeaker or to a test system. The
output of the encoder can be configured to be either positive or negative
and one channel can be either positive or negative depending on the clock
source.

Use Double Tone IQ Generator for

• Testing or comparing the performance of the SSB-transmitter with the
intended receiver

• Testing the signal path between SSB-transmitter and receiver

• Mixing two different SSB-transmitters and measuring the signal
path (e.g. between two SSB-transmitters)

• Reproducing the signal path between SSB-transmitter and receiver

• Compensating phase offset between the transmitter and the receiver

• Comparison of SSB-transmitters with several different parameters (e.g.
filter)

• Comparing two of more channel SSB-transmitters

• Installing a test version of software to the transmitter side to
test e.g. a new radio, a new software update of the transmitter or a
frequency planning of the transmitter

Example

The typical example of Double Tone IQ Generator is depicted below and is
configured by default to generate two sine carriers with a ratio of 3:1
(e.g. 300.0 Hz and 600.0 Hz respectively). During some measurements or
simulations, it can be useful to have a different ratio of the two sine
carriers.

Measurement Example:

Prior to the measurements and calculations, the sine waves can be
created using one of the following methods:

1. Using “RealTime” Software

The actual configuration of the values can also be achieved using the software “RealTime” (realtimeIQ) which can be downloaded from RealTime Software website
under “IQ-Generator/Background”.

2. Using “math” Software

If only the software “math” is available, then the following calculation
can be applied:

Input signal =

Double Tone IQ-Generator Crack (April-2022)

IQ-Generator for testing direct conversion transmitters.
Double Tone IQ-Generator can send two different signals to a VFO through two different ways and if they are the same signal then it will be the same on both channels.
Automatic termination can be programmed by 50, 75 or 100Hz.
Four different oscillator outputs can be used: Direct, 1st 0-100% VFO, 2nd 0-100% VFO and PSK 0-100%.
The two signals are mixed down and output through single-driver output stages.
Double Tone IQ-Generator Volume control:
Volume control is common for all two outputs.
Clock signal for logic to and timers is generated through a 13.56MHz clock from the PC’s sound card (default).
Delay between two channels can be adjusted in range from -/-20µs (0.1µs step size).
Delay time can be automatically set (0.1 to 1000ms range) or manual override with in 0.1ms steps.
Connections:
A/D 1 for the left channel
A/D 2 for the right channel
Oscillator 1 for the left channel
Oscillator 2 for the right channel
OSC1 Input
OSC2 Input
Two outputs
Two line inputs
Through the digital head phone jack
Power Supply:
Power supply for DC/DC Converter is from VCC to -20V pf.
RS and Gate can be connected to VCC also. But RS line is optional.
Automatic Termination:
By 50Hz, 75Hz or 100Hz.
Oscillator Clock:
Oscillator clock can be generated from the PC sound card, default is 13.56MHz.
Delay Time:
Delay time can be manually set (0.1 to 1000ms range) or automatic with in 0.1ms.
Motor Control:
Motor control is software driven. By using the Logic Digital head phone jack it can be connected directly to the VFO.
Readings control:
Can be read from Logic to display reading
Can be send to external USB or serial.
Programmer control:
12-bit, 20ms per second control is possible.
Data can be received from the serial port (default) or USB port with 16bit, 30ms per second.
Data block can be displayed on the screen.
Logic works like a normal astable
b7e8fdf5c8

Double Tone IQ-Generator With Product Key

This double tone IQ-generator can be used for testing two SSB transmitters (based on phase method) or two receivers based on phase correction in order to check equal phase for CW and SSB signals. In addition, the double tone IQ-generator can be used for testing DDS-Deltas or other frequency modulation schemes.
The input signal is generated from a sound card or from a microphone connected to the sound card. A volume level is chosen for the signal to be tested. The frequency of the input signal can be adjusted by the DDS frequency generator.
Because of different time delays between right and left channel depending on sound card and PC the time delay between the channels can be adjusted in a range of -/+ 20µs (by 0.1µs step size).
Output level can be adjusted with adjustable attenuator.
A double tone can be generated from the input of the sound card (by audio input selection). This double tone is then fed into the test input of the double tone IQ-generator. The amplitude of the double tone is set by the output of the audio driver.
Additionally, a trigger signal, i.e. sound card trigger, can be triggered from the PC and trigger the output of the double tone generator.

Overview

The double tone IQ-generator can be used for testing two SSB transmitters (based on phase method) or two receivers based on phase correction in order to check equal phase for CW and SSB signals. In addition, the double tone IQ-generator can be used for testing DDS-Deltas or other frequency modulation schemes.
The input signal is generated from a sound card or from a microphone connected to the sound card. A volume level is chosen for the signal to be tested. The frequency of the input signal can be adjusted by the DDS frequency generator.
Because of different time delays between right and left channel depending on sound card and PC the time delay between the channels can be adjusted in a range of -/+ 20µs (by 0.1µs step size).
Output level can be adjusted with adjustable attenuator.
A double tone can be generated from the input of the sound card (by audio input selection). This double tone is then fed into the test input of the double tone IQ-generator. The amplitude of the double tone is set by the output of the audio driver.
Additionally, a trigger signal, i.e. sound

What’s New in the?

This is a new version of my popular IQ-Generator (IQ-Generator with correction, output phase-lock etc.).
In this version I implemented two independent DDS-1 and DDS-2 (Double Density Sampling-1 and-2 )
Very easy to use and very stable.
You can now use external audio-input for the left channel and output the stereo-sound over HDMI for both channels (via analog-output-connector/HDMI). The external audio-input can be used for testing over audio or microphone connection.
You can use the two faders for adjusting the left and right sound-level.
The single-tone-outputs are channel-locked so the sound-quality is excellent.
The sound-cards are setup for discrete audio-streaming
You have two different outputs depending on the audio-card you use. (SHP of ATI-Audio-Cards or IEC958 of most common sound-cards with ADC).

Transformer The sound-system is based on a 5W Sony Chip that is connected to DAC. The DSP-Processing is based on FPGA (Field Programmable Gate Array) and the result is transferred to the CPU (Digital Signal Processor), which controls the the DSP and Envelope Generator. The DAC chip is also used for the analog output over HDMI. It is also possible to output the stereo-sound to a line-level-output. The DSP contains an Intrinsic-FIR-Filter that is used for high-pass- and low-pass-filtering. A fixed high-pass and a variable low-pass-filter are applied in 2nd order. A Frequency-and-phase-counter of each channel is applied for the correction. For the correction we use a central bit-table and for the encoding we use a non-central multiplier.

More info about the DSP-Processing of the Mainboard can be found here.

Tube Envelope Generator The speaker used (in my case the FE535, Sensable):
The Tubes is based on a 5Amp output and a 28Volt (16Ohm) speaker.
The tubes are individually turned on by a 6-bit digital signal that contains the current envelope value.
I also used an Analog-to-Digital-converter, because the digital output can not be used for stereo output.
The ADC is based on a Hammer

System Requirements For Double Tone IQ-Generator:

Minimum Requirements:
Windows
Mac OS
Linux
Mobile:
Android
iOS
Minimum Graphical Requirements:
Nvidia GTX 750 Ti or AMD Radeon HD7750
CPU: Intel Core i3
RAM: 4 GB
Supported:
C-Media proprietary drivers, and Pinnacle supports C-Media drivers. Other audio device drivers may be supported.
CPU: Intel Core i5
C-Media proprietary drivers, and Pinnacle supports C

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