Deterministic
Same input, same output. No threshold tuning, no calibration parameters, no noise-floor assumptions, no random seeds in the critical path.
We replace heuristics, buffers, and timeouts with closed-form mathematics — engineered to work in real systems despite the noise, speed, and compromises engineers were told to accept. One mathematical engine. Twelve products. Defense, power, and data infrastructure.
The mathematical engine itself is proprietary. For our headline products — SHE Designer, Antenna Array Designer Pro, and the TSD DOA Engine — the outputs reproduce against established external comparators (MATLAB fsolve, MATLAB Phased Array Toolbox, MUSIC, ESPRIT, and the Cramér-Rao Lower Bound), so the proprietariness of the engine is operationally irrelevant. For the rest of the portfolio, evaluate the breadth and consistency of what one engine can deliver.
Same input, same output. No threshold tuning, no calibration parameters, no noise-floor assumptions, no random seeds in the critical path.
One engine powers products across passive RF, phased-array synthesis, power electronics, data integrity, and software infrastructure.
Every headline number reproduces against an independent comparator — MATLAB fsolve, MATLAB Phased Array Toolbox, MUSIC, ESPRIT, the Cramér-Rao Lower Bound.
Solutions are computed directly, not searched for. No iterative convergence loops, no stochastic optimizers, no learned heuristics in the critical path.
No model weights to ship. No retraining when a domain changes. Zero dependence on dataset provenance or label quality. Air-gap-deployable by default.
Bit-for-bit reproducible from a fixed master seed. The same binary on different hardware produces identical outputs to the last decimal place.
The same proprietary mathematical core that produces machine-precision beamforming nulls also eliminates power-converter harmonics, locates corrupted fields in tabular data, isolates the first edge that broke in a multi-stage pipeline, and meters HTTP traffic against a third-party rate budget. Different products. Different verticals. Same engine.
Most signal-processing, power-electronics, and infrastructure pipelines are stitched together with the same three concessions: heuristics that approximate, buffers that absorb the noise nobody can characterize, and timeouts that paper over contention nobody can predict. We replace those concessions with closed-form mathematics that holds up against the noise, speed, and compromise real systems force on real engineers. The result is the same product engineers already know they need — without the buffer, the retry, or the silent-failure mode.
Every featured product ships with a verification protocol and an external comparator. You don't have to trust the numbers — you can reproduce them.
The first deterministic Selective Harmonic Elimination solver that finds every viable solution in the design space and ranks them across five physical optimization objectives — THD, weighted THD, torque ripple, DC-link RMS stress, and flux-trajectory circularity.
Every certified solution is independently reproducible against the textbook SHE equations. Solver outputs are checked by computing Fourier coefficients at the targeted harmonic orders.
External comparator: MATLAB fsolveSee SHE Designer's full potential in action — beyond harmonic elimination, applied to a hyperscale UPS use case.
Watch Live DemoA certified phased-array synthesis workstation that delivers deep nulls and optimized sidelobes simultaneously. Engineers receive a ranked menu of certified solutions and re-prioritize by deepest nulls, lowest SLL, maximum directivity, or balanced performance — without resolving.
Every export ships with a verification script that reproduces the result against the universal array factor equation. Seven-method baseline comparison runs on every solve.
External comparator: MATLAB Phased Array ToolboxA deterministic direction-of-arrival estimator that approaches the theoretical accuracy floor across array sizes and SNR conditions — without threshold tuning, without snapshot averaging assumptions, and without iterative convergence loops.
Independently benchmarked on a public CC0 dataset of 1,518,000 labeled IQ frames. Bit-for-bit reproducible from a fixed master seed. RMSE, bias, and CRB-efficiency all computed alongside classical baselines.
External comparator: MUSIC + ESPRIT + CRBThree featured deep-dives above. Nine additional products below — drop-in deliverables, compact SDKs, and integration-ready binaries spanning defense, power electronics, data integrity, and software infrastructure.
End-to-end passive emitter detection, geolocation, tracking, and cognitive EW state management. 97% Pd at −10 dB SNR. Sub-millisecond pipeline.
Pre-computed switching-angle table for online double-conversion UPS inverters. 80 operating points. Validated in MATLAB / Simulink.
951-point switching-angle table covering the full modulation range of 2-level VFDs. Compatible with FOC, V/f, and sensorless vector control.
Software-only payload-layer error correction. Turns ≈86% of CRC retries into in-place corrections. Zero false corrections in validation. Standards-compliant on the wire.
Field-level data integrity that detects modification, identifies the exact field affected, and auto-corrects single-byte errors. 3 bytes per field. Air-gap-deployable.
Pipeline-stage integrity verification that finds the first edge that broke and emits a structured proof artifact. 1 ms detection, 91 ms end-to-end on real data.
Adaptive HTTP rate-control library that delivers 100% success rates and zero throttle events across GitHub-style, Shopify-style, and graph-style API archetypes. Drop-in for requests, aiohttp, and fetch.
Self-tuning cache controller with anti-oscillation guarantees. +8% hit ratio, −25% origin load, −60% cache thrashing in live testing. Drop-in API integration.
Shadow-mode rollout proof for progressive delivery. Reads Datadog and LaunchDarkly read-only and emits a fully-evidenced log of every advance, hold, and would-have-rolled-back decision. 15-minute setup. Zero production risk.
For every featured product, the headline numbers reproduce against an established external comparator. The proprietary engine remains proprietary. The outputs are checkable.
Every certified switching-angle solution is reproducible against textbook SHE equations using MATLAB fsolve. Quarter-wave symmetry residuals close to machine precision (≤ 1e-13).
Every Antenna Array Designer Pro export ships with a verification script that reproduces the result against the universal array factor equation. Seven-method baseline runs on every solve.
Independently benchmarked on a public CC0 dataset of 1,518,000 labeled IQ frames. RMSE, bias, and Cramér-Rao Lower Bound efficiency computed alongside classical baselines.
Every benchmark run is bit-for-bit reproducible from a fixed master seed. The same binary on different hardware produces identical outputs to the last decimal place.
Live demonstrations, API / SDK / binary integration, lookup-table deliverables, and hardware validation partnerships under NDA.
contact@newleaftoolsllc.comResponse within one business day. NDA available on request.