Difference between revisions of "QRP Labs High Performance SDR Receiver"

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[[file:rx_bpf_poly.jpg]]
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[[file:QRP-Labs_P1956-720px.jpg]]
  
 
== Features ==
 
== Features ==
  
* Three modules mount together
+
* Three modules
** Radio Module
+
** [http://qrp-labs.com/receiver QRP Labs High Performance Receiver Module]
*** High performance receiver module uses a Quadrature Sampling Detector (QSD), also known as a Tayloe Detector
+
*** Direct Conversion Receiver
*** Mixer is arranged as a double-balanced mixer for maximum performance
+
*** Uses a Quadrature Sampling Detector (QSD), also known as a Tayloe Detector
*** There is a transmit/receive switch onboard. Low noise LM4562 op-amps are used in instrumentation amplifier configuration to provide excellent common mode noise rejection
+
*** [https://www.onsemi.com/pdf/datasheet/fst3253-d.pdf FST3253] Mixer is arranged as a double-balanced mixer for maximum performance
 +
*** Circuit to mute receiver during transmit
 +
*** [https://www.ti.com/lit/ds/symlink/lm4562.pdf Low noise LM4562 op-amps] are used in instrumentation amplifier configuration to provide excellent common mode noise rejection
 
*** The audio output of the module is isolated using two 600:600-ohm transformers to reduce or eliminate the ground loop problems which can easily occur in SDR systems
 
*** The audio output of the module is isolated using two 600:600-ohm transformers to reduce or eliminate the ground loop problems which can easily occur in SDR systems
*** The module is designed to directly drive a stereo input sound-card
+
*** The module is designed to directly drive a stereo input sound-card or with a polyphase filter card
 
*** Receiver board has a socket for the standard QRP Labs Band Pass Filter kit which can be routed to an external bandpass filter switch card
 
*** Receiver board has a socket for the standard QRP Labs Band Pass Filter kit which can be routed to an external bandpass filter switch card
*** The module is sized 80 x 37mm
+
*** The receiver requires a local oscillator (LO) input at 4x the receive frequency
** Band Pass Filter
+
*** [http://qrp-labs.com/images/receiver/receiver2.pdf Receiver Build instructions]
*** Can be used with a switched Bandpass filter board for multiband operation
+
** [[RF Band Pass Filters|QRP Labs Band Pass Filter]]
** Polyphase filter
+
*** [http://qrp-labs.com/bpfkit.html 10/15/20/40/80M QRP Labs Band Pass Filter Kits]
*** Polyphase network plug-in module kit which cancels the unwanted sideband and produces a single sideband (SSB) output
+
*** [https://qrp-labs.com/images/bpfkit/bpf2.pdf Band Pass Filter Build instructions]
 +
*** Can be used with a [https://qrp-labs.com/ultimatelpf.html Switched Bandpass filter board] for multiband operation
 +
**** Look for "Using the Rev. 5 relay-switched LPF kit to switch Band Pass Filters" for jumpers and I/O connections
 +
**** [https://www.qrp-labs.com/images/ultimatelpf/assembly_ulpf.pdf Relay Switched Kit Build Instructions]
 +
**** [https://www.qrp-labs.com/ultimatelpf/relaydriver Relay driver for Relay Switched Kit]
 +
***** [[6 Channel Relay Driver Card]]
 +
**** Use bypass filter card on receiver when using Switched Bandpass filter, filters get installed in the switch card
 +
** [https://qrp-labs.com/polyphase QRP Labs Polyphase filter]
 +
*** Polyphase network plug-in module kit cancels the unwanted sideband and produces a single sideband (SSB) output
 +
*** [http://qrp-labs.com/images/polyphase/polyphase2a.pdf Polyphase Filter Build instructions]
 +
* Band Pass Filter and Polyphase filter mount on Receiver Module
 +
* Current draw - measured total 70 mA (5V regulator
 +
* The receiver module is sized 80 x 37mm
 +
 
 +
=== Build / Assembly ===
 +
 
 +
* Power supply + 12V in
 +
** Distribute 12V using [[TinyGrid85]] card with caps
 +
** Needs 5V supply
 +
*** Partly populated [[TinyGrid85]] card with caps and 5V regulator (no ATTiny85 chip)
 +
** Opamps can be powered from 5V or 12-14V (for higher dynamic range)
 +
* [[AudioAmp386|Audio Amplifier]]
 
* The receiver requires a local oscillator (LO) input at 4x the receive frequency
 
* The receiver requires a local oscillator (LO) input at 4x the receive frequency
 +
** Using [[VFO-003]] with [https://github.com/land-boards/lb-Arduino-Code/tree/master/LBCards/VFO-003_4X 4x output option software]
 +
*** [https://github.com/etherkit/Si5351Arduino/tree/master/src Si5351 Driver]
 +
** CLK0 = VCO clock
 +
*** 14MHz
 +
*** 4x
 +
** CLK1 - RF test signal
 +
*** 60 dB attenuator into RF input
 +
*** 60+40 dB = 100 dB attenuator into RF input
 +
** CLK2 turned off
 +
* [[SMA-HDRS]] board to feed LO into card
 +
** Mount 1x3 female flat to board
 +
* Used right angle SMT for RF in connector - works well
 +
 +
== Silkscreen / Pinout ==
 +
 +
[[file:IQ_RX_PCB.PNG]]
 +
 +
=== Pins ===
 +
 +
* IQ pins
 +
* I, GND, Q outputs
 +
* Power pins
 +
* GND, +5V, +5V or +12V to +14V
 +
* Tx Mute Input
 +
** 5V mutes inputs
 +
* LO input
 +
** 3.3V from Si5351A oscillators
 +
* IF input
 +
** From external Bandpass Filter Switch
 +
 +
== Receiver Module ==
 +
 +
[[file:QRP-Labs_Receiver-Base_P1969-720px.jpg]]
 +
 +
== Polyphase Module ==
 +
 +
*  Important to observe part outlines
 +
** Adjacent resistors can be incorrectly installed "sideways"
 +
 +
[[file:QRP-Labs_Polyphase-Filter_P1966-500px.jpg]] [[file:Polyphase-pcb.PNG]]
 +
 +
[[file:Polyphase-pcb-2.png]]
 +
 +
[[file:Polyphase-Schematic.PNG]]
 +
 +
* USB/LSB select jumpers
 +
** Set to USB in the above picture
 +
 +
[[file:Polyphase_LSB-USB-Jumpers.PNG]]
  
== Radio Links ==
+
== Bandpass Module ==
  
* [http://qrp-labs.com/receiver High performance SDR receiver module]
+
* [[RF_Band_Pass_Filters#QRP_Labs_Bandpass_Filter|Bandpass Filter module]]
** [http://qrp-labs.com/images/receiver/receiver2.pdf Build instructions]
+
* 20M - 14 MHz Filter
* [http://qrp-labs.com/polyphase Polyphase network module] - QRP Labs
 
** [http://qrp-labs.com/images/polyphase/polyphase2a.pdf Build instructions]
 
* [[RF_Band_Pass_Filters]]
 
** [http://qrp-labs.com/bpfkit.html 10/15/20/40/80M QRP Labs Band Pass Filter Kits]
 
* [[VFO-003|Clocks Generator]]
 
  
== Silkscreen ==
+
[[file:QRP-Labs_BandPass-Filter_P1963-720px.jpg]]
  
[[file:IQ_RX_PCB.PNG]]
+
[[file:Bandpass_Filter_Schematic.PNG]]
 +
 
 +
* NanoVNA
 +
** 12-16 MHz
 +
 
 +
[[FILE:14MHz_12-16MHz_Band_Pass_Filter-2.png]]
 +
 
 +
* Data
 +
 
 +
[[FILE:14MHz_12-16MHz_Band_Pass_Filter-Data.png]]
 +
 
 +
[[FILE:  14MHz_12-16MHz_Band_Pass_Filter-Analysis.png]]
 +
 
 +
== Build Issues ==
 +
 
 +
* Transformers don't fit well and crowd parts around them
 +
** 3.5mm jack crowded
 +
** C1/C2 footprints overlap
 +
* QRP Labs polyphase module pics are for older revision card before 47 ohm resistors were added
 +
* One of the two variable caps on the Bandpass filter was very hard to turn even after the first turn
 +
 
 +
== Reference Documents ==
 +
 
 +
* [https://wparc.us/presentations/SDR-2-19-2013/Tayloe_mixer_x3a.pdf Ultra Low Noise, High Performance, Zero IF Quadrature Product Detector and Preamplifier]
 +
* [http://antennoloog.nl/data/documents/Understanding_and_designing_Polyphase_networks_V4.0.pdf Understanding and Designing Sequence Asymmetric Polyphase Networks]
 +
* [https://www.robkalmeijer.nl/techniek/electronica/radiotechniek/hambladen/qst/1991/12/page29/ The double-tuned Circuit: An experimenter's tutorial]
 +
* [http://hanssummers.com/polyphase 40/80m CW/SSB receiver]
 +
* [http://hanssummers.com/images/stories/polyphase/polyphase.pdf Experimental Polyphase Receiver]
 +
* [http://www.arrl.org/files/file/Technology/tis/info/pdf/030304qex020.pdf A Software Defined Radio for the Masses]
 +
* [http://norcalqrp.org/files/AustinNC2030Presentation.pdf Very High Performance Image Rejecting Direct Conversion Receivers] - NC2030 Radio

Latest revision as of 17:10, 28 January 2022

QRP-Labs P1956-720px.jpg

Features

Build / Assembly

  • Power supply + 12V in
    • Distribute 12V using TinyGrid85 card with caps
    • Needs 5V supply
      • Partly populated TinyGrid85 card with caps and 5V regulator (no ATTiny85 chip)
    • Opamps can be powered from 5V or 12-14V (for higher dynamic range)
  • Audio Amplifier
  • The receiver requires a local oscillator (LO) input at 4x the receive frequency
  • SMA-HDRS board to feed LO into card
    • Mount 1x3 female flat to board
  • Used right angle SMT for RF in connector - works well

Silkscreen / Pinout

IQ RX PCB.PNG

Pins

  • IQ pins
  • I, GND, Q outputs
  • Power pins
  • GND, +5V, +5V or +12V to +14V
  • Tx Mute Input
    • 5V mutes inputs
  • LO input
    • 3.3V from Si5351A oscillators
  • IF input
    • From external Bandpass Filter Switch

Receiver Module

QRP-Labs Receiver-Base P1969-720px.jpg

Polyphase Module

  • Important to observe part outlines
    • Adjacent resistors can be incorrectly installed "sideways"

QRP-Labs Polyphase-Filter P1966-500px.jpg Polyphase-pcb.PNG

Polyphase-pcb-2.png

Polyphase-Schematic.PNG

  • USB/LSB select jumpers
    • Set to USB in the above picture

Polyphase LSB-USB-Jumpers.PNG

Bandpass Module

QRP-Labs BandPass-Filter P1963-720px.jpg

Bandpass Filter Schematic.PNG

  • NanoVNA
    • 12-16 MHz

14MHz 12-16MHz Band Pass Filter-2.png

  • Data

14MHz 12-16MHz Band Pass Filter-Data.png

14MHz 12-16MHz Band Pass Filter-Analysis.png

Build Issues

  • Transformers don't fit well and crowd parts around them
    • 3.5mm jack crowded
    • C1/C2 footprints overlap
  • QRP Labs polyphase module pics are for older revision card before 47 ohm resistors were added
  • One of the two variable caps on the Bandpass filter was very hard to turn even after the first turn

Reference Documents