╔══════════════════════════════════════════════════════════════╗ ║ SPHINX CHANNEL ║ ║ Signal Verification Report - v1.0.1 ║ ╠══════════════════════════════════════════════════════════════╣ ║ Report: Configuration Verification ║ ║ Generated: 2026-08-29 05:45 UTC ║ ║ Platform: macOS - Apple Silicon - TrueRail ║ ║ Standard: -6 dBFS operating level - 64-bit internal ║ ╚══════════════════════════════════════════════════════════════╝ ======================================================= SPHINX CHANNEL CONFIGURATION MATRIX REPORT Timestamp: 2026-08-29 05:45:10 UTC Configurations tested: 91 Signal: -6 dBFS 1 kHz sine + level sweeps -24..0 dBFS ======================================================= === Module Isolation - Per-Module Gain (dB) === Signal: -6.0 dBFS 1 kHz sine Module SLL Nevy Amok Target ----------------------------------------------- INPUT (Drive) +0.0 -0.0 +0.0 ±2.5 INPUT TX -0.1 +0.0 +0.0 ±0.5 WIDTH +0.0 +0.0 -0.0 ±0.3 OUTPUT +0.0 +0.0 +0.0 ±0.1 Full chain -0.6 -0.4 -1.0 ±0.5 === Cumulative Chain Build-Up - SLL Circuit === Signal: -6.0 dBFS 1 kHz sine Step Modules Enabled Output dB Delta In LED Out LED -------------------------------------------------------------------- 0 (none - master bypass) -6.5 - 11 11 1 + INPUT (drive) -6.5 -0.0 11 11 2 + INPUT TX -6.6 -0.1 11 11 3 + WIDTH -6.6 +0.0 11 11 4 + OUTPUT (gain @ 0 dB) -6.6 +0.0 11 11 === Cumulative Chain Build-Up - Nevy Circuit === Signal: -6.0 dBFS 1 kHz sine Step Modules Enabled Output dB Delta In LED Out LED -------------------------------------------------------------------- 0 (none - master bypass) -6.4 - 11 11 1 + INPUT (drive) -6.4 +0.0 11 11 2 + INPUT TX -6.4 +0.0 11 11 3 + WIDTH -6.4 -0.0 11 11 4 + OUTPUT (gain @ 0 dB) -6.4 +0.0 11 11 === Cumulative Chain Build-Up - Amok Circuit === Signal: -6.0 dBFS 1 kHz sine Step Modules Enabled Output dB Delta In LED Out LED -------------------------------------------------------------------- 0 (none - master bypass) -7.0 - 11 11 1 + INPUT (drive) -7.0 -0.0 11 11 2 + INPUT TX -7.0 +0.0 11 11 3 + WIDTH -7.0 +0.0 11 11 4 + OUTPUT (gain @ 0 dB) -7.0 +0.0 11 11 === Circuit Model Sweep - INPUT TX === Signal: -6.0 dBFS, all modules ON, Amok main Model Output dB ------------------- M1166 -7.0 C9049 -6.9 K1166 -6.9 L1544 -6.5 === Level Sensitivity - SLL === Sine 1 kHz, all modules ON (peak; LF noise floor masks signal at ≤ -18 dBFS) Input dBFS Output dBFS Throughput Clip LEDs Active ------------------------------------------------------- -24.0 -24.6 -0.6 none -18.0 -18.6 -0.6 none -12.0 -12.6 -0.6 none -6.0 -6.6 -0.6 none -3.0 -3.6 -0.6 INPUT TX, WIDTH +0.0 -0.5 -0.5 INPUT TX, WIDTH === Level Sensitivity - Nevy === Sine 1 kHz, all modules ON (peak; LF noise floor masks signal at ≤ -18 dBFS) Input dBFS Output dBFS Throughput Clip LEDs Active ------------------------------------------------------- -24.0 -24.4 -0.4 none -18.0 -18.4 -0.4 none -12.0 -12.4 -0.4 none -6.0 -6.4 -0.4 none -3.0 -3.4 -0.4 INPUT TX, WIDTH +0.0 -0.4 -0.4 INPUT TX, WIDTH === Level Sensitivity - Amok === Sine 1 kHz, all modules ON (peak; LF noise floor masks signal at ≤ -18 dBFS) Input dBFS Output dBFS Throughput Clip LEDs Active ------------------------------------------------------- -24.0 -25.2 -1.2 none -18.0 -19.1 -1.1 none -12.0 -13.1 -1.1 none -6.0 -7.0 -1.0 none -3.0 -3.9 -0.9 INPUT TX, WIDTH +0.0 -0.9 -0.9 INPUT TX, WIDTH === Frequency Sensitivity - Full Chain (PD cross-check) === Sine -6 dBFS, all modules ON - internal must match Plugin Doctor at the same Hz Hz SLL dB Nevy dB Amok dB SLL Δ Nevy Δ Amok Δ ------------------------------------------------------------ 100 -6.7 -6.2 -7.0 -0.7 -0.2 -1.0 200 -6.6 -6.2 -7.0 -0.6 -0.2 -1.0 400 -6.6 -6.4 -7.0 -0.6 -0.4 -1.0 1000 -6.6 -6.4 -7.0 -0.6 -0.4 -1.0 2000 -6.6 -6.4 -7.0 -0.6 -0.4 -1.0 5000 -6.8 -6.6 -7.2 -0.8 -0.6 -1.2 === Metering Consistency - Input vs Output === Signal: -6.0 dBFS sine, Amok main State Actual Out (buffer) Out LED # Out VU Match? In LED dB In OK? ---------------------------------------------------------------------------------------------- All disabled (master off) -7.0 11 +3.0 OK -6.0 OK INPUT only (drive on) -7.0 11 +3.0 OK -6.0 OK INPUT + INPUT TX -7.0 11 +3.0 OK -6.0 OK Full chain -7.0 11 +3.0 OK -6.0 OK === Transformer Model Comparison === Signal: -6.0 dBFS 1 kHz sine, Amok main, only TX module enabled Position Model Output dB RMS Out dB ----------------------------------------- INPUT TX M1166 -7.0 -10.3 INPUT TX C9049 -6.9 -10.2 INPUT TX K1166 -6.9 -10.2 INPUT TX L1544 -6.6 -9.9 === TrueRail A/B/C Variation === Signal: -6.0 dBFS 1 kHz sine, all modules ON Circuit Tier Output dB Throughput dB ------------------------------------------- SLL A -6.6 -0.6 SLL B -6.6 -0.6 SLL C -6.6 -0.6 Nevy A -6.4 -0.4 Nevy B -6.4 -0.4 Nevy C -6.4 -0.4 Amok A -7.0 -1.0 Amok B -6.9 -0.9 Amok C -6.9 -0.9 === Acceptance: WIDTH Range === 1 kHz -6 dBFS mono input - verify the knob produces a finite, sane output across its range Knob Setting Output dB Status ------------------------------------ WIDTH -100 % -6.9 OK WIDTH 0 % -7.0 OK WIDTH 100 % -6.9 OK === Acceptance: Module Bypass Behavior === 1 kHz -6 dBFS, baseline = all on; disable each module in turn Module Output dB Δ vs all-on Tol Persist? ------------------------------------------------------------------------------ (baseline all on) -7.0 0.00 dB - ref INPUT TX -7.0 -0.0 ±1.0 needs linear-shell pass WIDTH -7.0 -0.0 ±0.3 yes (default M-S matrix) === CONFIGURATION MATRIX SUMMARY === Per-Module Unity Gain: OK INPUT (Drive) - +0.0 to +0.0 across personalities (target ±2.5) OK INPUT TX - -0.1 to +0.0 across personalities (target ±0.5) OK WIDTH - +0.0 to +0.0 across personalities (target ±0.3) OK OUTPUT - +0.0 to +0.0 across personalities (target ±0.1) Metering Accuracy: OK Output metering matches actual buffer level - 4/4 states within 1 dB OK INPUT meter is tapped pre-chain (FC3 invariant) - 4/4 states within ±0.5 dB of the host signal level TX Model Comparison: OK INPUT TX models distinct - spread across 4 models: 0.41 dB OK Amok TrueRail A≠B≠C (variation present) - spread A-C: 0.064 dB OK Amok TrueRail spread is subtle (factory-tolerance class) - spread A-C: 0.064 dB (target ≤ 2.0 dB) OK Nevy TrueRail A≠B≠C (variation present) - spread A-C: 0.007 dB OK Nevy TrueRail spread is subtle (factory-tolerance class) - spread A-C: 0.007 dB (target ≤ 1.0 dB) OK SLL TrueRail A≠B≠C (variation present) - spread A-C: 0.002 dB OK SLL TrueRail spread is subtle (factory-tolerance class) - spread A-C: 0.002 dB (target ≤ 1.0 dB) OK TrueRail A→B→C→A returns to initial A (idempotency) - initial A: -6.6 | returned A: -6.6 | drift: 0.002 dB Acceptance Coverage: OK WIDTH produces finite output across full sweep - 3/3 sample points within (-90 dBFS, +6 dBFS) at 1 kHz mono input OK All toggleable modules bypass cleanly (no silence, no NaN) - 2/2 modules produced finite output with single-bypass OK Module bypass paths are level-matched (Ω2.4) - 2/2 modules within per-module tolerance ISSUES FOUND: 0 PASSING: 17/17 checks ══════════════════════════════════════════════════════════════ Sphinx Channel v1.0.1 Component-Level Analog Modeling with TrueRail Technology 17 measurements - 0 failures - 0 warnings All measurements passed - signal integrity verified. analogrealism.com - support@analogrealism.com Made in Finland ══════════════════════════════════════════════════════════════