Prevent higher frequency output spike when sweep starts at DC
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@ -1,5 +1,5 @@
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2F62501ED4689FB349E356AB974DBE57=EF826FD321FB312AEADE4DB74B81458C
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2F62501ED4689FB349E356AB974DBE57=6F84FD31C089E822CF61FFCABCD0B7D1
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66BE74F758C12D739921AEA421D593D3=2
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8DF89ED150041C4CBC7CB9A9CAA90856=EF826FD321FB312AEADE4DB74B81458C
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8DF89ED150041C4CBC7CB9A9CAA90856=6F84FD31C089E822CF61FFCABCD0B7D1
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DC22A860405A8BF2F2C095E5B6529F12=6E2D4146EA2709ED1E4A1764BC291F57
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eclipse.preferences.version=1
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@ -404,12 +404,18 @@ void VNA::SweepHalted() {
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}
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// need the Si5351 as Source
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Si5351.SetCLK(SiChannel::LowbandSource, frequency, Si5351C::PLL::B, driveStrength);
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bool freqSuccess = Si5351.SetCLK(SiChannel::LowbandSource, frequency, Si5351C::PLL::B, driveStrength);
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static bool lowbandDisabled = false;
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if (pointCnt == 0) {
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// First point in sweep, enable CLK
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Si5351.Enable(SiChannel::LowbandSource);
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// First point in sweep, switch to correct source
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FPGA::Disable(FPGA::Periphery::SourceRF);
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lowbandDisabled = true;
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}
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if(lowbandDisabled && freqSuccess) {
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// frequency is valid, can enable lowband source now
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Si5351.Enable(SiChannel::LowbandSource);
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Delay::us(1300);
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lowbandDisabled = false;
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}
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// At low frequencies the 1.LO feedthrough mixes with the 2.LO in the second mixer.
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