Valuation methodology.
Show the machinery.
IntrinsicIQ routes each company to one sector-appropriate primary intrinsic model, which carries 100% of the headline value. Available zero-weight cross-checks and market benchmarks are shown beside it—not blended into it. This document makes that machinery inspectable.
Overview — Primary Model + Independent Checks
No single valuation method fits every business. IntrinsicIQ selects one primary intrinsic model from the company's sector, industry, dividend profile, and available financial data. That primary model carries 100% of the headline intrinsic value.
Secondary intrinsic methods may still run at zero weight to expose model divergence, while relative multiples remain separate market benchmarks. Neither changes the headline value. The output sits alongside a Bull/Base/Bear scenario range and, where supported, a Monte Carlo P10–P90 distribution that quantifies assumption sensitivity.
Core principle: A market-anchored multiple can challenge an intrinsic estimate, but it cannot determine that estimate without making the result circular. Cross-checks stay visible and independent.
| Business route | Headline intrinsic model | Independent check / benchmark | Headline weight |
|---|---|---|---|
| DCF-routed operating companies | DCF / FCFF | EV/EBITDA market-multiple benchmark | DCF 100% |
| Eligible dividend payers | Dividend Discount Model | P/B + ROE intrinsic cross-check | DDM 100% · check 0% |
| Banks and bank-like financials | Excess Returns / Residual Income | P/B + ROE intrinsic cross-check | ER 100% · check 0% |
| Equity REITs | FFO-anchored DDM | P/FFO market-multiple check | REIT DDM 100% · check 0% |
| Alternative asset managers | Fee-Related Earnings DCF | Distributable Earnings DDM cross-check | FRE-DCF 100% · check 0% |
Real Estate distinction: Financial Modeling Prep groups both REITs and fee-based real estate services under the Real Estate sector. The engine therefore reads the accompanying industry classification: tickers whose industry contains "REIT" are routed to the FFO-anchored REIT model, while other real estate companies (e.g. CBRE, JLL) are routed to DCF. Dividend routes also apply yield and industry guards; companies that do not fit the dividend model's premise fall back to a more appropriate route.
Primary Model — Discounted Cash Flow (DCF / FCFF)
Reinvestmentt = NOPATt × Reinvestment Ratet
FCFFt = NOPATt − Reinvestmentt
FCFF = NOPAT + D&A − CapEx − ΔNWC.
Pre-revenue abstention: if reported revenue is zero or negative, IntrinsicIQ does not run the operating DCF and reports no intrinsic value or upside. Projecting from a zero revenue base would not provide a reliable operating anchor, while adding net cash afterward would mislabel cash runway as enterprise value. Pipeline assets and clinical probabilities require a separate, domain-specific framework.
ERP = configured IntrinsicIQ U.S. equity risk premium (currently 5.5%).
β = industry unlevered beta re-levered at market D/E for operating companies.
CRP = country-risk exposure informed 50% by domicile and 50% by mapped revenue geography when available. The country table refreshes daily from FMP's market-risk-premium endpoint, falls back to the versioned January 2026 Damodaran snapshot, and is normalised relative to the U.S. country component already represented in the U.S. ERP.
Kd = Kdpre-tax × (1 − Effective Tax Rate)
FCFF∞ = NOPATn × (1 + g) × (1 − Reinvestment Rate∞)
TV = FCFF∞ / (WACC − g)
Equity Value = EV − Net Debt − Minority Interest − Preferred Stock
IVPS = Equity Value / Diluted Shares Outstanding
Market Benchmark — EV/EBITDA
The EV/EBITDA check applies a sector benchmark multiple to the company's current-year EBITDA to derive a market-implied enterprise value. Because the multiple is anchored to observed market pricing, this is a relative benchmark—not an intrinsic model—and carries no weight in the headline value.
EV = EBITDA × Target Multiple
Implied value per share = (EV − Net Debt − Minority Interest − Preferred Stock) / Shares Outstanding
Primary Model — Dividend Discount Model (DDM)
The DDM is the 100%-weighted primary for companies routed to the dividend framework, including qualifying Consumer Defensive and Utility businesses. Dividends are projected over a 10-year explicit forecast period, discounted at the cost of equity, and a Gordon Growth terminal value is added. REITs use a separate FFO-anchored DDM with dividend-coverage guards.
DPSt = EPSt × Payout Ratio
Analyst EPS anchors are used for the covered near-term years when available; a user-supplied staged dividend-growth schedule can override the mechanical sustainable-growth path year by year.
IVPS = Σ DPSt / (1 + Ke)t + TV / (1 + Ke)n
Key insight — ROE vs. Cost of Equity: Growth creates value only if ROE > Ke. A company with ROE < Ke that pays out more earnings (higher payout ratio) is actually worth more under this model — the market is better served by returning capital than reinvesting at below-hurdle returns.
Cross-Check — Justified P/B Ratio (P/B + ROE)
The justified P/B model derives the fair price-to-book multiple from the spread between return on equity, cost of equity, and sustainable growth. It is displayed at zero weight beside DDM and bank Excess Returns routes, providing an independent balance-sheet cross-check without changing the headline intrinsic value.
If ROE = Ke, P/B justified = 1.0 → the stock is worth exactly book value.
Value above book is created only by sustained excess returns on equity (ROE > Ke).
Primary Model — Excess Returns (Banks & Financials)
For financial institutions, free cash flow to the firm (FCFF) is ill-defined because debt is an operational input, not just a financing choice. IntrinsicIQ therefore uses a pure Excess Returns (Residual Income) model anchored to tangible book value per share and the spread between ROTCE and cost of equity.
The Excess Returns model carries 100% of the headline value for the bank route. P/B+ROE is surfaced independently at zero weight as a balance-sheet cross-check.
Phase 2 (years 4–10): ROTCE fades linearly toward the Phase-2 target
Terminal period: terminal ROTCE cannot exceed Phase-2 ROTCE
Retained Earningst = EPSt × Retention Rate
TBVPSt = TBVPSt−1 + Retained Earningst
ERt = (ROTCEt − Ke) × TBVPSt−1
TBVPS11 = TBVPS10 × (1 + g)
TVER = (ROTCEterminal − Ke) × TBVPS11 / (Ke − g)
Why tangible book: The primary model values returns on the tangible equity base that can support banking operations. When tangible and total book are not economically comparable, the P/B+ROE check may be omitted rather than allowed to imply false agreement.
Growth Assumptions Framework
Revenue growth is the most sensitive driver of DCF value. IntrinsicIQ stores a full 10-year schedule, summarised in three editable stage bands while retaining per-year control in Projection Detail:
- Years 1–3 (Near term): The first stage control moves the near-term band. Defaults use analyst revenue estimates where credible and available, with normalised historical growth as a fallback and reference.
- Years 4–7 (Transition): The middle stage control covers the hand-off from explicit expectations to a mature growth profile. Analyst anchors may continue through Year 5; later years begin the fade.
- Years 8–10 (Mature): The final stage control governs the mature band as growth converges toward the terminal rate.
- Projection Detail: Every forecast year remains individually editable, so the three stage controls are a concise interface—not a limit on the underlying schedule.
- Terminal (Perpetuity): Gordon Growth terminal value. Default 3.0%; the DCF clamps the rate as needed to preserve a 2.0 percentage-point spread below WACC.
The historical CAGR reference is computed geometrically across available reporting years rather than as a simple point-to-point change, reducing distortion from cyclical peaks and troughs.
Data Freshness — TTM from Quarterly Statements
Statement and market inputs are sourced primarily through Financial Modeling Prep (FMP). Key income statement and cash flow inputs prefer Trailing Twelve Months (TTM) calculated from the four most recent quarterly filings, falling back to the latest annual filing when quarterly data is unavailable. This keeps the model closer to current business conditions than a prior-year annual report alone.
| Input | Method |
|---|---|
| Revenue | Sum of 4 most recent quarterly periods |
| EBITDA | Sum of quarterly EBITDA; latest annual FMP statement when quarterly data is unavailable |
| Depreciation & Amortisation | TTM sum from quarterly cash flow statement |
| Capital Expenditure | TTM sum from quarterly cash flow statement |
| Tax rate | Reported effective rate when usable; domicile statutory rate fallback, then 21% default |
| Interest expense | TTM sum from quarterly income statement |
| Minority interest / Preferred stock | Most recent quarterly balance sheet |
Monte Carlo Simulation
The Monte Carlo module runs 1,000 trials against the company's routed valuation method. Sampled drivers are model-specific: DCF varies discount rate, terminal growth, margin, and revenue growth; DDM varies cost of equity, dividend growth, payout, and terminal growth; bank, REIT, and alternative- manager routes perturb their own economic levers. Each successful trial records the resulting IVPS to form a probability distribution.
| DCF example driver | Distribution | Standard Deviation |
|---|---|---|
| WACC | Correlated normal, centred on base WACC | max(WACC × 15%, 1.0%) |
| Terminal Growth Rate | Correlated normal, centred on base TGR | 0.40% |
| EBIT Margin | Normal, centred on base margin | max(Margin × 15%, 2.0%) |
| Revenue Growth Y1–Y5 | Normal perturbations with uncertainty decaying by year | Y1 σ = max(Growth × 25%, 2.5%); × 1.0 / .8 / .6 / .4 / .2 |
DCF WACC and terminal growth share a rate factor by default rather than being
sampled independently. Draws are clipped to model bounds; where the discount
rate–growth relationship applies, terminal growth is clamped below the sampled
discount rate instead of discarding narrow-spread trials. Non-finite, negative,
failed, or million-dollar-plus outputs are excluded. The result reports P10,
P25, P50, P75, P90, mean, standard deviation, and
prob_undervalued—the fraction of valid trials
whose IVPS exceeds the current market price.
On Model Uncertainty
Model outputs are probabilistic estimates, not predictions. Intrinsic value is not an observable quantity. It is a model-dependent estimate that changes when assumptions change. The P50 Monte Carlo output is not "the answer" — it is the median of a distribution of possible answers under a specific set of distributional assumptions.
The purpose of IntrinsicIQ is not to produce a verdict. It is to make the structure of a valuation argument transparent enough to be challenged, adjusted, and improved. An analyst who understands why their WACC assumption is 9% rather than 10% has learned something. One who accepts a number from a model has not.