Fin Maverick
Foundations VocabularyAccounting & ReportingEconomics & MacroQuant Methods & ProgrammingBusiness & Company AnalysisCorporate Finance & ValuationBehavioural Finance
Banking & Market InfrastructureFixed Income & RatesDerivatives & Structured ProductsPublic EquitiesTransactions & DealsPortfolio ConstructionFunds & AMCs
Private Markets & AlternativesRisk, Treasury & ControlAI & Digital FinanceStochastic Calculus & PricingWealth & Personal FinanceIndian Markets & RegulationProfessional Practice
CalculatorComparison
Frameworks
Explore Bootcamps
Equity ResearchPortfolio ManagementMutual Fund MasteryFinancial LiteracyInvestment Banking Analyst
Private Equity AnalystHedge Funds AnalystBreaking Into VCBreaking Into QuantsAI For Finance
Financial Analyst ProgramRisk Management ProgramPrivate Wealth ManagementDebt Capital MarketsDerivatives Foundation
Explore Internships
Equity Research InternMutual Fund Intern
Portfolio Management InternFinancial Literacy Intern
Explore Micro Courses

Equity Research6

Writing an Investment ThesisBuilding a Discounted Cash FlowReading an Annual Report FastReading a Sector Before a CompanySpotting Quality of Earnings Red FlagsBuilding a Revenue Forecast From Drivers

Portfolio Management3

Rebalancing: When, Why and What It CostsStrategic and Tactical Asset AllocationMeasuring Risk in a Portfolio

Mutual Fund Mastery3

Comparing Funds Without Being FooledHow a NAV Is Struck and Which Day You GetReading a Fund Factsheet Properly

Derivatives Unlocked4

Hedging a Real ExposureThe Greeks, PracticallyFutures, the Basis and What Moves ItReading an Option Payoff

AI For Finance2

Retrieval and Grounding for FinanceDocument Extraction in Finance

Breaking Into Quants4

Backtesting a StrategyHypothesis TestingCleaning Financial DataRegression for Finance

Breaking Into VC3

Sizing a MarketReading a Term Sheet as a FounderHow a Venture Round Actually Works

Financial Analyst Program4

Common Size and Trend AnalysisReading a Cash Flow StatementRatio Analysis That Says SomethingBuilding a Working Capital Schedule

Risk Management Program2

Credit Exposure and How It Is ReducedValue at Risk and What It Hides

Investment Banking Analyst3

Precedent Transactions and Why They DifferReading a Term Sheet StructurallyBuilding a Comparable Companies Table

Private Wealth Management3

Tax Aware Portfolio DecisionsBuilding a Client Risk ProfileGoal Based Planning Arithmetic

Debt Capital Markets3

Analysing an Issuer's CreditDuration and What It Does Not Tell YouBond Pricing and Yield Mechanics

Private Equity Analyst2

Fund Waterfalls and CarryThe LBO in Structure

Hedge Funds Analyst2

Short Selling MechanicsLong Short Mechanics
Courses
Explore Career Roadmaps
Investment Banking AnalystEquity Research AnalystVC AnalystPrivate Equity AnalystHedge Funds Analyst
Quant AnalystAI For FinanceFinancial Analyst ProgramPrivate Wealth ManagementDebt Capital Markets
Risk Management ProgramDerivatives FoundationPortfolio ManagementMutual Fund Mastery
PartnershipsShowdown
Log inSign up
Derivatives, Hedging & Structured Products
1Derivative Fundamentals
DerivativesLong PositionMark to MarketThe UnderlyingThe Derivative ContractHow Derivatives Transfer Financial…
2Forwards and Futures
The Futures ContractLong and Short PositionsThe Spot PriceThe Forward ContractSpot Price vs Forward PriceThe Futures PriceForward and Futures PositionForward vs FuturesHow to Read Futures Margin and Mark-to-MarketHow Futures Margin and Mark-to-Market WorkDeliveryRolloverOpen InterestOpen-Interest ChangeBasis vs Basis RiskHedge Ratio vs Hedge Effectiveness
3Options
OptionsThe Call OptionThe Strike PriceThe Put OptionOption DeltaOption Buyer and Option WriterCollar and Protective PutCall and Put OptionsHow to Map What…How to Take an…Exercise Price and Strike PriceOption Price DriversThe Expiration DateIntrinsic Value and Time Value
4Option Strategies and Payoffs
Option SpreadsOption PayoffVertical and Calendar SpreadsHow to Map an Option PayoffMaximum GainThe Iron CondorThe Covered CallMaximum LossStraddle and Strangle
5Volatility and the Greeks
The Implied Volatility SurfaceThe Option GreeksHow an Option Payoff…What an Implied Volatility…How Delta, Gamma, Theta…How Option Volatility Surfaces…Delta HedgingTime DecayHistorical VolatilityImplied Volatility vs Historical Volatility
6Swaps and Rate Derivatives
The Interest Rate SwapSwap Rate and Forward RateThe SwapThe Currency SwapInterest Rate Swap and Currency SwapThe Payment DateThe Reset DateThe Swap CurveThe Swap Payment CalculatorHow to Map a…Cross-Currency BasisDay Count ConventionsDerivative and UnderlyingExchange Traded and Over the CounterFixed Leg and Floating LegHow to Read a Derivative ContractHow to Map a Derivative ExposureHow to Read Derivatives Market DataHow to Map Derivative…How to Write a Derivative Research NoteHow to Run a…How to Maintain a Derivatives Decision Log
7Hedging Application
The HedgeHedge RatioHedge or SpeculationFraming a Hedge ObjectiveExposureOffsetBasis RiskHedge Risk or Counterparty RiskThe Hedged Item
8Structured Products
What a Structured Product IsStructured Product and Mutual FundHow to Take a…Participation RatePrincipal Protection and Capital Guarantee
9Clearing, Margin and Settlement
The Settlement PriceThe Three MarginsInitial, Variation and Clearing MarginPhysical and Cash SettlementHow a Position Moves…Market SurveillanceCounterparty RiskNettingNetting and SettlementPosition LimitsPosition Limits and MarginMarket ManipulationHow Corporate Actions Can…
10Derivatives Discipline and Cases
Derivative ResearchOpen Interest DataPost-Mortem and Performance Marketing,…Market Observation and Trade SignalScenario Analysis and ForecastReading Derivatives Data When…What a Derivatives Post-Mortem…

Option Payoff: What an Assembly Pays at the End Date

An option payoff calculator takes each leg of an assembly as a sign, a call or a put, a level and an end date, takes one price for the reference asset at that date, and returns what each leg pays and what the assembly pays in total. A payoff ignores what was paid to put the assembly on. The calculator prices nothing.

Compute it

Build the assembly, then settle it at a chosen price

With the legs copied off a contract note, the number of contracts and the units a contract covers set, and a price named for the reference asset at the end date, the panel works each leg on its own and adds them. The panel opens on the two-leg assembly used throughout this guide. Every figure below is an illustration of arithmetic. None of it is a quotation, a price or a prediction.

LegBought or writtenCall or putLevelPremium a unitContracts
One
Two
Three
Four
  • Bought or written. Contract note, the buy or sell column on that row. A leg set to nil contracts is switched off and drops out of every figure below.
  • Call or put, and the level. Contract note, the instrument description on that row.
  • End date. Contract note, the expiry printed on that row. Every leg in this panel runs to the same end date, one year out, so no box asks for it. A payoff is drawn at one date, and legs finishing on different dates are worked separately.
  • Premium a unit. Contract note, the rate column, before brokerage and every other charge. The box stays empty where no premium is available.
  • Contracts. Position statement, the quantity column for that row.
Rs 1,400.00/-Drag to settle the assembly anywhereRs 2,900.00/-

The build-up, leg by leg

.
Assembly payoff
.
Net premium
.
Carried to the end date
.
Assembly profit
.
Where the drawn line meets nil
.

Each leg drawn against nil, and the three totals under it

The assembly across every price, redrawn as the inputs change

.

The same number, read two ways

Educational illustration, and not a quotation of any price. On screen: one year to the end date; financing at 6.50 per cent for the year, applied only to premiums that have been supplied; the reference asset pays nothing while it is held. With the units a contract covers left at one, every figure here is a figure a unit. With a real quantity in that box, every figure becomes a figure on a position, and that quantity is set by SEBI at sebi.gov.in.

The calculator is a smaller machine than most people expect, and the smallness is the point. There is no market feed inside it and no view about where the reference asset is going. Given rows and one price, it hands back arithmetic. Everything difficult about options sits outside that boundary, and this guide is mostly about where the boundary runs and what happens to a reader who forgets it is there.

Two formulas and a sign do the whole job. A call pays the price less its level wherever that difference is above nil, and nothing otherwise. A put pays its level less the price on the same terms. A written leg pays the negative of whatever the same leg bought would have paid. Applied leg by leg and added together, those three rules give the assembly. The three rules are why the output of a calculator like this is exact, and they are also why the same calculator can say nothing whatever about what any of it is worth.

What does an option payoff calculator actually compute?

The calculator computes one number for one named price: what each legOne contract sitting inside a larger position. A leg is complete on its own and keeps its own obligation however many other contracts are held beside it. pays at that price, and what the assembly pays in total. Name a different price and it computes a different number. The calculator is not solving for anything and not deciding anything: it is evaluating an expression that already existed the moment the contracts were written.

The word for what it returns is a payoffA gross amount, not a result. It cannot be negative for a leg that was bought, and it can be nil.: what the assembly pays at the end, before anything anybody paid for it is counted. The word for the other thing, the one this tool mostly refuses, is a profitA net amount, arrived at once money leaving at the start and money arriving at the end stand on one date.: that same payoff after every premium has been counted and moved to the same date. Two words, two numbers, and the label between them is the whole reason this guide exists.

A tariff card at a metered utility works the same way. The card states exactly what three hundred units cost and exactly what four hundred cost, and the arithmetic is beyond argument in both cases. The card cannot state how many units a household will use next month. A payoff calculator is that tariff card. The calculator converts a supplied price into an obligation with complete precision, and it holds no opinion at all about which price arrives.

One leg, written as one expression
$$ \pi_i(S_T) \;=\; \varepsilon_i \cdot \max\!\big(\phi_i\,(S_T - K_i),\; 0\big) $$
πi(ST)the payoff of leg i at the end date, in rupees a unit
εithe sign of leg i: plus one where the leg was bought, minus one where it was written
φithe type of leg i: plus one for a call, minus one for a put
STthe price of the reference asset at the end date, the one figure the reader supplies
Kithe level written into leg i, read off the contract
What it says in wordsTake the price at the end date less the level for a call, or the level less the price for a put, keep it if it is above nil and use nil if it is not, then flip the sign if the leg was written rather than bought. Every leg on every assembly in this sequence is that single expression with different letters filled in.

What does the form take, field by field?

Four fields on each leg and one price for the whole assembly. The panel above carries two more on each row. The premium changes nothing about the payoff, and the number of contracts only scales it. A reader who has met a pricing screen before will notice at once how much is missing from all of it.

The first field is the sign. Plus for a leg that was bought, minus for one that was written, read off the contract note rather than off the name anybody has given the pair. A row carrying the wrong sign does not describe a smaller version of the same obligation, it describes the opposite one. A bought call paying Rs 200.00/- becomes, with one setting changed, a written call costing Rs 200.00/-. The arithmetic stays correct, so every figure downstream inherits the error silently.

The second field is the type: call or put. The third is the levelSome markets call it the strike. It is a term of the contract, not a price and not a forecast., the figure written into that contract which the payoff is measured against. The fourth is the end dateThe date on which a leg finishes and its payoff is fixed. Before that date a contract has a value; on it, a contract has a payoff., on which that leg finishes and its payoff stops being a question. Then, once for the whole assembly rather than once a leg, the price of the reference asset at that date.

Beside each leg there is one optional box: the premium, where one is available. The panel above opens with one of the two filled and the other empty. The working notes behind this guide leave them in that state. Most of the honesty of this tool lives in what that box does and does not do, and the premium box has a section of its own below.

The whole form: four fields on each leg, one price for the assembly, one optional box a leg. SIGN CALL OR PUT LEVEL END DATE PREMIUM, OPTIONAL plus one call Rs 2,000.00/- one year Rs 180.00/- minus one call Rs 2,200.00/- one year left empty PRICE OF THE REFERENCE ASSET AT THE END DATE Rs 2,130.00/- One price for the whole assembly, chosen by the reader. WHAT DOES NOT GO IN No box for how far the reference asset might move, and none for how likely a move is. The one box for what a contract covers opens at one unit, so a figure returned is a figure a unit.
The form asks four fields of each leg and one price of the whole assembly, and there is no box anywhere on it for a figure that would have to be estimated.
Risk Management Program Bootcamp — Fin Maverick

Where does each number on the form come from?

A field note is not a definition. A field note says where to find the number, not what the number means, and here the answers divide into two piles.

The first pile is the contract itself. The sign, the type, the level and the end date are terms of it, printed on the note or the position statement. The four fields are not worked out; they are copied. A statement showing a level and a date but no sign has supplied three fields of four, and the fourth is fetched rather than inferred from the name of the position.

The second pile is set by an authority and is deliberately not printed here. Which levels exist and how far apart they sit, the dates contracts run to, and the quantity one contract covers are all set by SEBI at sebi.gov.in. The panel above has a box for that last one and it opens at one unit, a placeholder rather than a value: until the real quantity goes in, every figure this tool returns is a payoff a unit of the reference asset rather than a payoff on a position.

The four levels drawn with here, Rs 1,600.00/-, Rs 1,800.00/-, Rs 2,200.00/- and Rs 2,400.00/-, are declared levelsA level chosen here to draw a shape, sitting at a stated distance from the spot price. It carries no premium, and it is not a level read off any venue.: placed at ten and twenty per cent either side of the spot price of Rs 2,000.00/-, standing in for nothing real. The one level carrying a premium here is Rs 2,000.00/-. The level equals the spot price because the pair struck there is struck at the money, and that is what at the money means.

Every assembly here is made of two shapes, so both are worth holding on to. A bought call is flat at nil and turns upward at its level, rising rupee for rupee with the price. A bought put is its mirror. Written legs are those two shapes reflected in the horizontal axis. Reflecting a picture is what a minus sign does to it.

The two shapes everything else in this guide is built out of. A CALL BOUGHT A PUT BOUGHT 400 nil Rs 1,600.00/- Rs 2,400.00/- level pays the price less its level, and never less than nil 400 nil Rs 1,600.00/- Rs 2,400.00/- level pays its level less the price, and never less than nil
A bought call pays nothing until the price passes its level and then climbs rupee for rupee, and a bought put does the mirror of that below its own level.
Try it out

The tool returns Rs 200.00/- for an assembly. What further figure is needed before that becomes an amount of money, and where does it come from?

Where does the price at the end date come from?

From the reader. The complete answer is that short, and the field is the one readers misunderstand most often. A box that accepts a number looks as though the machine behind it knows something about which number belongs there.

It does not. A price at the end date has to be named rather than derived. The arithmetic carries no distribution, no probability and no run of past prices to draw one from. The reference asset sits at a spot price of Rs 2,000.00/- and pays nothing while it is held. A payout during the holding period would change other arithmetic in this subject area, so the second half of that sentence matters.

The question being put to it is a conditional one, and it answers exactly that and nothing wider: if the price ends here, the assembly pays this. Asked about Rs 1,600.00/- it answers. Asked about Rs 2,600.00/- it answers too, with the same confidence. The confidence belongs to the arithmetic rather than to the price.

Try it out

What does the tool require before it will return anything at all about what an assembly will pay?

Try it out

A leg is written rather than bought, and at the end date the price sits well above its level. Before reading on, what sign does that leg's payoff carry?

What does the tool return once it runs?

Three things, and it is worth naming them separately because readers tend to look at the third and skip the first two.

First, each leg's payoff at the price supplied, one figure a leg. Second, the assembly's payoff: those figures added with their signs and nothing more elaborate. Third, a redrawn diagram with a marker at that price, so the number can be seen against every other number it could have been.

The total is the payoff of the assembly, and a payoff ignores what was paid to put the assembly on, so it is neither money made nor money lost. It is what the contracts oblige at that price. Whether it leaves anybody better off is a different calculation, and it needs the premiums.

Notice what the addition leaves alone: it does not merge the legs. Each is evaluated against its own level, with its own sign, and only then are the results added. Averaging two levels and evaluating once invents a third contract that nobody wrote, and it disagrees with the truth at almost every price.

Each leg on its own, then added with signs. That is the whole computation. AT A PRICE OF Rs 2,130.00/- leg one, on its own plus one call at Rs 2,000.00/- pays Rs 130.00/- leg two, on its own minus one call at Rs 2,200.00/- owes Rs 0.00/- added with their signs Rs 130.00/- plus Rs 0.00/- assembly pays Rs 130.00/- AT A PRICE OF Rs 2,400.00/- leg one, on its own plus one call at Rs 2,000.00/- pays Rs 400.00/- leg two, on its own minus one call at Rs 2,200.00/- owes Rs 200.00/- added with their signs Rs 400.00/- less Rs 200.00/- assembly pays Rs 200.00/- The same two steps run for any number of legs, and no step ever merges two rows into one.
Every leg is worked on its own first and the results are then added with their signs, which is the entire computation at whatever price is named.
The assembly, which is the sum and nothing else
$$ \Pi(S_T) \;=\; \sum_{i=1}^{n} \pi_i(S_T) $$
Π(ST)the payoff of the whole assembly at the end date, in rupees a unit
πi(ST)the payoff of leg i, from the expression above, with its sign already applied
nthe number of legs in the assembly, two on the worked default here
What it says in wordsThe assembly pays the sum of what its legs pay, each leg evaluated separately at the same price and on the same date, with a written leg entering the sum as a negative. There is no interaction term, no adjustment and no netting rule beyond ordinary addition.
Hedge Funds Analyst Bootcamp — Fin Maverick

Why is there a premium field, and why can it be left empty?

Because the reader may have the premiums and this calculator does not.

The calculator does not price a leg, and the refusal is structural rather than a matter of taste. Producing a premium needs a figure for how far the reference asset might move over the life of the contract, and no such figure exists in the working notes this guide is built on. Exactly two are available, both at one level and one end date: a call at Rs 180.00/- and a put at Rs 57.93/-, given rather than derived. For any other level, the declared Rs 2,200.00/- included, there is no premium and no honest way to manufacture one.

So the box sits empty, waiting for a reader with their own contract note. The rule is one line: with a premium supplied for every leg the tool draws a profit line, and with any one missing it draws the payoff and stops. A blank is a fact about what is known. A plausible number in the same box is a fact about nothing at all, and the two look identical once typed.

The empty box has a visible effect on the assembly the panel opens with. Leg one sits at a level carrying a premium and leg two does not, so no profit line appears, and the panel names leg two rather than leaving the reader to wonder whether it is broken. With leg two set to nil contracts every leg still in play has a premium beside it, so the line appears at once.

One condition decides whether a profit line exists at all. HAS A PREMIUM BEEN SUPPLIED FOR EVERY LEG, NOT SOME? YES NO BOTH LINES ARE DRAWN The payoff line, from levels and signs. The profit line under it, lower by the premiums carried to the end date at 6.50 per cent for the year. ONE LINE, AND A REASON The payoff line only. A note naming the leg whose premium is absent, so the blank reads as a blank rather than as a fault. The assembly this calculator opens with takes the right hand branch, because Rs 2,200.00/- is a declared level and carries no premium.
Whether a profit line appears turns on a single test, and that test is whether a premium was supplied for every leg rather than for some of them.
Try it out

Why is the premium box optional rather than required?

How is the output read without turning it into money made?

Take the simplest possible case, one leg, and watch two numbers separate that a careless reading would treat as one.

The leg is plus one call at Rs 2,000.00/- for one year. The price at the end date is Rs 1,600.00/-. The price finished below the level, so the expression returns nil rather than a negative and the tool returns a payoff of Rs 0.00/-. Nothing is owed by anybody. Rs 0.00/- is the complete payoff answer.

Now suppose the contract note shows the premium actually paid. In this invented example the premium is Rs 180.00/-. The premium left at the start of the year and the payoff arrives at the end of it, so the two cannot be compared until they stand on one date. Carry Rs 180.00/- forward one year at 6.50 per cent for the year and it becomes Rs 191.70/-, so the profit on the same leg at the same price is a loss of Rs 191.70/-. The Rs 11.70/- of difference is the financing on the premium, and nothing more.

Two numbers, one leg, one price: a payoff of Rs 0.00/- and a profit of minus Rs 191.70/-. The only thing separating them is the label, and a reader who copies the payoff into a row headed profit has made no arithmetic error that checking the arithmetic will ever catch.

Run the same leg at Rs 2,400.00/- and the separation stays the same width: payoff Rs 400.00/-, carried premium still Rs 191.70/-, profit Rs 208.30/-. At Rs 2,130.00/- the payoff is Rs 130.00/- and the profit is a loss of Rs 61.70/-. The loss of Rs 61.70/- is the put premium of Rs 57.93/- carried at the same rate, agreeing to the paisa rather than exactly because the put figure is rounded. The put premium comes from a relationship settled separately, and is quoted only as a check that can be run independently.

One bought call at Rs 2,000.00/-, price at the end Rs 1,600.00/-: payoff to profit. nil Rs 0.00/- minus Rs 180.00/- minus Rs 11.70/- minus Rs 191.70/- the payoff the premium paid carried one year the profit
At a price of Rs 1,600.00/- the same bought call reads nil as a payoff and minus Rs 191.70/- as a profit, and the distance between them is the premium carried for the year.
The profit, which needs one thing the payoff does not
$$ P(S_T) \;=\; \Pi(S_T) \;-\; (1+r)\sum_{i=1}^{n} \varepsilon_i\, c_i $$
P(ST)the profit of the assembly at the end date, in rupees a unit
Π(ST)the payoff of the assembly, from the sum above
cithe premium of leg i, supplied by the reader, never produced here
εithe sign of leg i, so a premium received on a written leg enters as a negative
rthe financing cost, 6.50 per cent for the year
What it says in wordsThe profit is the payoff less every premium, netted across the legs with their signs and carried forward to the end date so that money paid at the start and money arriving at the end are compared at one moment. Remove any single premium from that sum and the whole expression stops being computable, which is why one missing figure takes the entire profit line away rather than part of it.
Try it out

Plus one call at Rs 2,000.00/-, with a supplied premium of Rs 180.00/-, and a price at the end date of Rs 1,600.00/-. What are the payoff and the profit?

Try it out

With every premium box cleared and the price control moved, does a profit line appear on the diagram?

Play with it

Drive the tool: one price in, every leg's payoff out

One control moves: the price of the reference asset at the end date. Every leg's line, the assembly's line, the marker and the level markers redraw together. The two buttons swap the assembly between the two worked defaults in this guide, and the premium boxes decide whether a profit line can be drawn at all.

Rs 1,400.00/-Price at the end date: Rs 2,130.00/-Rs 2,600.00/-

Both ends of this control are declared settings, placed at thirty per cent either side of the spot price of Rs 2,000.00/-, and neither is a limit on anything a price could do.

Move the price. Every leg redraws, and the assembly is their sum at each point. levels in this assembly 2,000 2,200 600 400 200 nil -200 -400 Rs 2,130.00/- 1,400 1,600 1,800 2,000 2,200 2,400 2,600 price of the reference asset at the end date, in rupees a unit leg one payoff leg two payoff, dotted assembly payoff profit line: not drawn, because a premium is missing
Price at the end date
Rs 2,130.00/-
Leg one payoff
Rs 130.00/-
Leg two payoff
Rs 0.00/-
Assembly payoff
Rs 130.00/-
Premiums supplied
none of two
Assembly profit
not available

At a price of Rs 2,130.00/- at the end date, leg one pays a payoff of Rs 130.00/-, leg two owes a payoff of Rs 0.00/-, and the assembly pays a payoff of Rs 130.00/-. The profit is not shown, because a premium is missing for leg two.

Educational illustration. Not a quotation, not a price, and not a prediction of any price. Assumptions on screen: one year to the end date; financing at 6.50 per cent for the year, used only where a premium has been supplied; the reference asset pays nothing while it is held; what one contract covers is set by SEBI at sebi.gov.in, so every figure is a figure a unit rather than a figure on a position; the level of Rs 2,200.00/- is declared for drawing and carries no premium.

Slide it from the left and watch the order things happen in. Both legs return nil below Rs 2,000.00/-, so nothing moves until then. From there to Rs 2,200.00/- only leg one is working, so the assembly climbs as fast as the price does. Above Rs 2,200.00/- leg two owes at the rate leg one pays, the leg lines fan apart, and the assembly line between them goes flat. The flat stretch is the first place a reader learns to distrust the leg they were looking at.

Derivatives Foundation Bootcamp — Fin Maverick Building a Revenue Forecast From Drivers — free micro-course from Fin Maverick

What does the tool open on, and what do those readings say?

Both instruments open on the same two-leg assembly: plus one call at Rs 2,000.00/- for one year, minus one call at Rs 2,200.00/- for one year, one contract on each leg, the units a contract covers left at one, and the price at the end date set to Rs 2,130.00/-. Three readings come back. Leg one pays Rs 130.00/-, leg two pays nothing, and the assembly's payoff is Rs 130.00/-. The premium of Rs 180.00/- on leg one is shown as paid. Leg two has no premium beside it, so no net premium and no profit are struck at all.

Every one of those figures is arithmetic rather than a quotation. Leg one pays Rs 2,130.00/- less Rs 2,000.00/-, or Rs 130.00/-. Leg two is written at Rs 2,200.00/-, the price finished below that level, so the expression returns nil and the sign has nothing to flip. Add them and the assembly pays Rs 130.00/-. Why no profit appears is printed beside it: Rs 2,200.00/- is a declared level and no premium exists for it here.

Here is the same assembly at six stated prices, written out so that this table survives with the tool switched off entirely.

Price at the end dateLeg one paysLeg two owesAssembly payoff
Rs 1,600.00/-Rs 0.00/-Rs 0.00/-Rs 0.00/-
Rs 2,000.00/-Rs 0.00/-Rs 0.00/-Rs 0.00/-
Rs 2,130.00/-Rs 130.00/-Rs 0.00/-Rs 130.00/-
Rs 2,200.00/-Rs 200.00/-Rs 0.00/-Rs 200.00/-
Rs 2,400.00/-Rs 400.00/-Rs 200.00/-Rs 200.00/-
Rs 2,600.00/-Rs 600.00/-Rs 400.00/-Rs 200.00/-

The second worked case separates the two words this guide keeps insisting are different, and it is the one place a profit can honestly be shown: one leg, plus one call at Rs 2,000.00/-, with the Rs 180.00/- premium this record does carry. With leg two set to nil contracts, the panel above reproduces the table below row for row. Across the payoff and profit columns side by side, the gap never changes.

Price at the end datePayoffPremium carried to the endProfit
Rs 1,600.00/-Rs 0.00/-Rs 191.70/-minus Rs 191.70/-
Rs 2,000.00/-Rs 0.00/-Rs 191.70/-minus Rs 191.70/-
Rs 2,130.00/-Rs 130.00/-Rs 191.70/-minus Rs 61.70/-
Rs 2,400.00/-Rs 400.00/-Rs 191.70/-Rs 208.30/-

One detail in that second table is worth pausing on. The spot price of Rs 2,000.00/-, the level of Rs 2,000.00/- and the exposureThe value of the reference asset a contract is written against. Nobody has paid it and nobody is holding it. It is the base the payoff is measured from, not an amount at stake. of Rs 2,000.00/- a unit are three different quantities that happen to be the same number, for two separate reasons rather than one: the level matches the spot because this pair is struck at the money, and the exposure matches the spot because the contract is written against one unit at its spot price. Nobody has paid Rs 2,000.00/-, and reading the third as an outlay is the error the coincidence invites.

Try it out

On the two-leg default at a price of Rs 2,400.00/- the tool prints Rs 400.00/- against leg one and Rs 200.00/- against leg two. What is the assembly's payoff?

The error that gets made: reading a figure a unit as a figure on a position

The tool returns Rs 200.00/-, and the reader writes Rs 200.00/- into a column headed amount at stake. Rs 200.00/- is neither an amount nor at stake. The figure is what the assembly pays for a unitPer single unit of the reference asset, rather than per contract. A contract covers some quantity of units, and that quantity is a term set by an authority rather than by the reader. of the reference asset, and what one contract covers is set by SEBI at sebi.gov.in and moves.

A caterer quotes a rate a plate for a wedding. The rate is exact, and it is not the bill. The bill needs the number of plates, that number comes from somebody else entirely, and nobody has ever mistaken a rate card for an invoice at a wedding because the two arrive on different sheets of paper. On a screen they arrive on the same one.

Who makes it: anybody who met payoff diagrams before they met contract specifications. Meeting the diagrams first is the ordinary order of learning, and almost every diagram they have ever seen was drawn a unit while almost none of them said so. What it costs: a position sized off a figure that is wrong by whatever one contract covers, in whichever direction. The reader has no way of noticing. The arithmetic on the screen is entirely correct, and the check they would run confirms it.

The fix is one habit. Read every figure this tool returns as a payoff a unit, and go to SEBI at sebi.gov.in for the quantity before multiplying anything by anything.

The panel at the top has a box for that quantity, and it opens at one unit. With a real quantity in it, every figure on the screen moves by exactly that factor while the figure a unit stays where it was. The whole of the error is produced in one keystroke.

The same figure, copied one column to the right, becomes a different claim. WHAT THE TOOL PRINTED Leg one payoff Rs 400.00/- Leg two payoff minus Rs 200.00/- Assembly payoff, a unit Rs 200.00/- WHAT WAS WRITTEN DOWN Amount at stake Rs 200.00/- The words changed. The number did not, and nothing on the screen objected. WHAT THE FIGURE IS What the assembly pays for one unit of the reference asset, at one price, on one date. WHAT IT IS NOT A figure on a position. What one contract covers turns one into the other, and that quantity is set by SEBI at sebi.gov.in.
A payoff of Rs 200.00/- out of this tool is a figure a unit, and the quantity that would turn it into an amount of money is not printed anywhere here.
Try it out

In the panel at the top, with every leg left alone and the units one contract covers raised from one to fifty, what happens to the assembly payoff?

India

What is set by an authority rather than written here?

Four things this tool leans on are set by an authority, and the name and the site stand in place of every value. The four are what one contract covers and in what quantity, the figure that turns a payoff a unit into a payoff on a position; the levels at which contracts are made available and their spacing; whether a contract settles in cash or by delivery; and the dates a contract runs between. All four sit with SEBI at sebi.gov.in. Where the reference is a rate or a currency rather than an asset, the equivalent arrangements sit with the Reserve Bank of India at rbi.org.in.

Each of those rows is set by the authority named inside it, and each moves, so the value belongs at the source rather than in a fixed account of it. The four levels drawn here are declared geometry, and the levels actually made available sit with that authority instead. Every one is confirmed at the source before any figure from this guide touches a real position.

Four rows this tool depends on, drawn with the authority in and the values out. What one contract covers, and in what quantity. The row a reader most wants filled, and it stays empty. SEBI, sebi.gov.in The levels at which contracts are made available, and the spacing between them. SEBI, sebi.gov.in Whether a contract settles in cash or by delivery. SEBI, sebi.gov.in The dates a contract runs to. SEBI, sebi.gov.in Every value cell is dashed and empty on purpose: the shape of the row teaches, and the figures move.
Each requirement this tool leans on is drawn as a row that names the authority and leaves the value blank, and the quantity row is the one most readers want filled.
The tool opens on a payoff, not money made. See what the reading says.

What does a payoff out of this tool not establish?

A reader who has driven the controls a few times arrives at a reasonable question: is this assembly worth holding? The calculator does not answer that question.

Here is what the tool has actually produced. A conditional arithmetic statement about one price: if the reference asset finishes at Rs 2,130.00/-, this assembly pays Rs 130.00/- a unit. Turning that into a decision would need three things, and not one of them is available here.

The first is a view on how far the reference asset might move and how likely each move is; the arithmetic behind it holds no distribution, no probability and no run of past prices, so there is no honest route to one. The second is the reader's own circumstances. No calculator can see them and none would be entitled to reason about them. The third is what the assembly costs to place, to hold and to unwind. Costing that needs the premium at the second level, and no such premium is available.

A calculator returning a decision instead of a payoff would be pretending to hold all three. Pretending is a far more damaging thing to build than a tool that stops early and says why. Signed primitivesA leg written out as a plus or a minus against one call or one put at one level and one end date. The word primitive means the row cannot be broken down any further. and two formulas can be checked by anybody with a pen. A recommendation cannot be checked by anybody at all.

Try it out

The tool shows a payoff of Rs 200.00/- at the price entered. What has it established about whether to hold the assembly?

How does somebody work through a payoff on a position statement?

Four habits, each of them a consequence of something above rather than general caution. The most useful thing anybody does with a payoff figure is decide which of the four words it is, price, premium, payoff or profit, before writing it into any row at all.

  1. Copy the four fields off the contract, and go back for any one that is missingSign, call or put, level, end date, on every leg. A statement showing a name and two levels has supplied three fields on each row and left out the sign, and reconstructing the sign from the name of the position is guessing dressed as reading.
  2. Work each leg on its own before adding anythingOne expression a leg, evaluated at the price in question. Averaging two levels and evaluating once invents a contract that nobody wrote, and it will disagree with the truth at almost every price while looking neat at one or two.
  3. Label the answer a payoff, and leave the profit row empty until every premium is in handA payoff worked off the rows is exact. A profit needs every premium in the assembly carried to the end date, and one missing premium takes the whole profit line away rather than a part of it. A household that budgets around a figure it invented is in exactly the position of a position sheet doing the same thing, and both discover it at the same moment.
  4. Get the quantity before multiplying, and get it from the authorityEvery figure here is a payoff a unit. What one contract covers is set by SEBI at sebi.gov.in and moves, so the multiplication happens after that lookup rather than before it. This is the step people skip, because the figure on screen already looks like money.

Notice what none of those four steps is. None is a view about the price, and none ranks one assembly against another. A person can execute all four perfectly and still be no closer to knowing what to do. The method is being honest about which question it answers.

Why can a payoff be exact while a price stays out of reach?

The two halves of this guide stand on completely different footings. A payoff is arithmetic on terms already written down: the level and the sign are in the contract, and the price at the end date is a named number, so the answer is exact for the same reason that adding up a bill is exact.

A premium is not that. A premium is a figure about what might happen between now and the end date, and producing one needs an input describing how far the reference asset might move. The input is unavailable at every level, so the two premiums available are given rather than derived and no third can be conjured out of them.

Three things follow. A payoff can be computed at every price for every assembly here. A profit can be computed only where every premium is in hand. And filling the gap with a plausible figure would produce the most convincing wrong number in the whole subject. The invented figure would sit in a column of exact ones and be indistinguishable from them.

This guide settles what a payoff calculator computes, what each of its fields is for and how to read what it returns. What a payoff means, and why it is not a profit, is covered separately and assumed here. How several legs are read as one obligation, and how each leg is written down, is covered separately. How a premium is arrived at is covered separately. The ceiling on what an assembly can pay is covered separately, and so is the floor and whether one exists. How a position is collateralised day by day, how far a reference asset might move and how a premium responds to the things around it are each worked through separately. What one contract covers and in what quantity, the levels at which contracts are made available and the spacing between them, whether a contract settles in cash or by delivery, and the dates a contract runs to belong to SEBI at sebi.gov.in, with the Reserve Bank of India at rbi.org.in where the reference is a rate or a currency, and their names and sites stand in place of the values.

References

SourceDocumentWhere
Securities and Exchange Board of IndiaFramework for what one contract covers and in what quantity, which is the figure that turns a payoff a unit into a payoff on a position and is the row a reader most wants filled; for the levels at which contracts are made available and the spacing between them; for whether a contract settles in cash or by delivery; and for the dates a contract runs tosebi.gov.in
Reserve Bank of IndiaThe equivalent arrangements where the reference is a rate or a currency rather than an assetrbi.org.in
International Organization of Securities CommissionsThe place cross-border conduct principles sitiosco.org
arXiv Quantitative FinancePreprint repository for the standard statement of payoff expressions and for the separation between a payoff and a profitarxiv.org
Social Science Research NetworkWorking paper repository for the same material, for notation and structuressrn.com

The reference asset, its spot price of Rs 2,000.00/-, the financing cost of 6.50 per cent for the year, the level of Rs 2,000.00/- and the declared levels of Rs 1,600.00/-, Rs 1,800.00/-, Rs 2,200.00/- and Rs 2,400.00/- are invented.
Educational material. Not advice on any investment, tax, budget or market position.

← PreviousNext →
Fin Maverick Micro CoursesExplore Micro Courses
Fin Maverick BootcampsExplore Bootcamps
Fin Maverick

Finance education that ends in a job, not a certificate that gathers dust. Built for young India.

LEARN
CalculatorsFrameworksComparisonsCareersShowdown
RESOURCES
All CoursesMicro CoursesBootcampsInternships
COMPANY
AboutJob openingPartnership
LEGAL
Privacy PolicyTerms & ConditionsContent LicenseReturn & Refund Policy
© 2026 FIN MAVERICK / BUILT FOR INDIA.DO FINANCE, DO NOT JUST READ ABOUT IT.