Project Roadmap
Current and near-term builds ordered by dependency and impact. Each phase represents a coherent batch of work that unlocks the next. Skipped or collapsed tiers from the skill tree are noted.
DS1052E repair done. Running continuously on both channels at 50MHz. Staying at 50MHz — no unlock needed for current work.
Parts list shows 19.5V laptop bricks on hand. That's your LM317/337 input — no purchase needed. This unblocks all op-amp work.
HC14 drone is breadboarded. Two fixes needed before moving on. 555 VCO is unblocked as a parallel track.
AD9833 + amplitude/offset stages breadboarded and powered. Signal chain fault somewhere after AD9833 output — under active debug. Most likely cause: TL072 single-rail biasing. Fix: add ICL7660 split supply to breadboard first.
Pico audio scope + Pi FFT is the highest-ratio DIY instrumentation available to you. MCP3202 + ST7789V already on the way.
Underrated build. AD9833 excitation + bridge + TL072 detector hits 1% accuracy for ~$20 and competes with $80–200 commercial units. Directly useful for synth component selection.
Best DIY ratio of any instrument. TCXO-referenced Pico PIO counter hits 7–8 digit accuracy for ~$10–15 and competes with $200–400 commercial units.
Requires Phase 1 PSU + Phase 0 scope. The main signal chain build. Expo converter → VCO → VCF → VCA.
After breadboard validation of each instrument, consolidate to fabricated PCBs. Scope PCB unlocks the high-frequency ADC path. Synth PCB is the final deliverable.
PSU T0 (USB only) + T1 (ICL7660): ICL7660 split supply already working. Collapse into: go straight to LM317/337 with owned 19.5V bricks.
MM T0–T1 (Uno ADC, LM4040 basic): DT-926 covers basic DC voltage. Skip to the 12-bit MCP3202 DVM once MCP3202 arrives.
WF Gen T0 (raw AD9833 only): You've already proven the DDS concept. The output stage is the next real step.
Synth T0 → T1 (HC14 → 555): Keep HC14 drone as a parallel exploration but don't treat it as a prerequisite gate for 555 VCO work.