FreePeptideCalc

How Many Units Is 15 mg?

Between 50 and 600 units, depending entirely on how concentrated your vial is — and that is something you decided when you chose your water volume. Enter your own vial below for the exact figure.

Written by , who builds and maintains this site and is not a clinician. Every figure links to its primary source.

Calculator inputs

Convert from your concentration

Units only mean something after the vial and water volume are known.

At 5 mg/mL

15 mg = 300 units3 mL

On a U-100 syringe, where 100 units = 1 mL.

Why there is no single answer

A syringe unit measures volume, not mass: one unit is 1/100 of a millilitre. So at 15 mg lands on a different mark at every concentration. Find the row matching the vial and water volume you actually used.

ConcentrationExample vial + water15 mg is
1 mg/mL2 mg in 2 mL1500 units
2 mg/mL4 mg in 2 mL750 units
2.5 mg/mL5 mg in 2 mL600 units
5 mg/mL10 mg in 2 mL300 units
10 mg/mL20 mg in 2 mL150 units
20 mg/mL40 mg in 2 mL75 units

15 mg at every concentration

ISO 8537 fixes the U-100 scale, so 100 units is 1 mL on every insulin syringe sold for human use and the conversion is a division rather than a lookup. The divisor is your concentration. Each row below is a vial you might plausibly be holding rather than an abstract mg/mL figure, because nobody owns “12.5 mg/mL” — they own a 25 mg vial and a syringe of water.

ConcentrationA vial that gives itDrawUnits (U-100)Reading it
2.5 mg/mL5 mg vial + 2 mL6 mL600Over 100 units — more than one U-100 barrel holds
5 mg/mL10 mg vial + 2 mL3 mL300Over 100 units — more than one U-100 barrel holds
6.67 mg/mL10 mg vial + 1.5 mL2.25 mL225Over 100 units — more than one U-100 barrel holds
10 mg/mL30 mg vial + 3 mL1.5 mL150Over 100 units — more than one U-100 barrel holds
12.5 mg/mL25 mg vial + 2 mL1.2 mL120Over 100 units — more than one U-100 barrel holds
15 mg/mL30 mg vial + 2 mL1 mL100Printed mark on every U-100 barrel
20 mg/mL60 mg vial + 3 mL0.75 mL75Printed on 0.3 and 0.5 mL barrels; between marks on a 1 mL
30 mg/mL60 mg vial + 2 mL0.5 mL50Printed mark on every U-100 barrel

The dose is fixed across that table and the volume moves. Doubling the concentration halves the units — which is the practical reason to care about water volume at all: it is the only lever you have over how readable the mark is. Note that at 2.5 mg/mL, 5 mg/mL, 6.67 mg/mL, 10 mg/mL, and 12.5 mg/mL this dose exceeds 100 units, so it does not fit in a single 1 mL U-100 barrel.

Does any approved label use 15 mg?

Yes — one approved schedule has a 15 mg step. The table places the figure on every one of those ladders, because the useful question is not only whether a label uses it but how far it is from one that does: a figure that lands on a step came from something checkable, one that falls between steps or above every maximum came from somewhere else.

ScheduleStarts atMaximum15 mg on this ladder
TirzepatideZepbound (weight management)2.5 mg15 mgLabelled stepmaximum recommended dose, the highest dose on this label
SemaglutideWegovy (weight management)0.25 mg7.2 mgAbove the 7.2 mg maximum — 2.1× the highest labelled dose
LiraglutideSaxenda (weight management)0.6 mg3 mgAbove the 3 mg maximum — 5× the highest labelled dose

A match is a statement about the number, not about you: each of those schedules also fixes a starting dose, a minimum interval between increases and a maximum, and a syringe enforces none of them. The step it matches is the one to read on the label, not the one to draw.

The water volume that puts 15 mg on a round mark

Most people meet this question the other way round: they know the dose, they own a vial, and they want the syringe to read something they can stop the plunger on. Water is the only lever. For each vial size sold as a lyophilised powder, this is the volume that lands 15 mg exactly on 10, 20, 25 or 50 units, and how many draws of 15 mg the vial physically holds.

VialDraws of 15 mg10 units20 units25 units50 units
5 mgless than one0.03 mLtoo little to measure0.07 mLtoo little to measure0.08 mLtoo little to measure0.17 mLtoo little to measure
10 mgless than one0.07 mLtoo little to measure0.13 mLtoo little to measure0.17 mLtoo little to measure0.33 mL
15 mg10.1 mLtoo little to measure0.2 mLtoo little to measure0.25 mLtoo little to measure0.5 mL
20 mg10.13 mLtoo little to measure0.27 mLtoo little to measure0.33 mL0.67 mL
30 mg20.2 mLtoo little to measure0.4 mL0.5 mL1 mL
40 mg20.27 mLtoo little to measure0.53 mL0.67 mL1.33 mL
60 mg40.4 mL0.8 mL1 mL2 mL

Greyed cells are volumes a standard vial will not hold or a syringe cannot measure. Between 20 and 50 units is where the published work on low-dose accuracy finds error smallest, so where two cells both fit, the one further right measures better. The draw count is arithmetic about a container — 4 draws of 15 mg from a 60 mg vial — and says nothing about whether 15 mg is anybody’s dose. That question belongs to the label and to whoever prescribed it, and the ladder table above tells you whether a label has an answer.

Working it out yourself

Divide the milligrams of peptide in the vial by the millilitres of water you added. That is your concentration in mg/mL. Then divide 15 mg by that concentration to get the volume in millilitres, and multiply by 100 to turn millilitres into units on a U-100 syringe. Worked through at 10 mg/mL: 15 ÷ 10 = 1.5 mL, × 100 = 150 units. Two figures, one division, one multiplication. Every calculator doing this — including this one — is doing nothing more than that.

One honest caveat about the first step: the lyophilised cake occupies volume of its own, so the finished solution is marginally more than the water you added and the true concentration marginally lower than the division suggests. Measured displacement for lyophilised powders runs about 0.66 to 0.70 mL per gram of total solids, so a milligram-scale peptide vial displaces a few microlitres — well under one unit on a U-100 barrel, and finer than the barrel can be read. FDA labels state the nominal concentration without correcting for it either. The exception is a vial carrying a heavy bulking agent, where displacement can reach several percent.

Where this particular conversion goes wrong

  • The syringe is not U-100. A U-40 veterinary barrel is fixed at 40 units per mL by 21 CFR 522.1160 and is still sold for animal insulin, which is labelled at that strength. The 150 unit mark you want holds 1.5 mL on a U-100 barrel and 3.75 mL on a U-40 one. Two and a half times the volume, from a barrel that looks the same. Both over- and under-dosing from exactly this substitution are documented in the published case literature.
  • At 2.5 mg/mL and 5 mg/mL and 6.67 mg/mL and 10 mg/mL and 12.5 mg/mL it does not fit. 600 and 300 and 225 and 150 and 120 units is more than a 1 mL U-100 barrel holds. Splitting one dose across two injections to get around that is a choice about administration, not about arithmetic, and nothing on this page endorses it — the ordinary fix is to reconstitute with less water.
  • One mark either way. At 10 mg/mL this dose is 150 units. Stopping one printed mark early or late is a 1% error on a 0.3 or 0.5 mL barrel and a 1% error on a 1 mL barrel printed in 2-unit steps — the same slip, twice the consequence, because the coarser barrel moves twice the volume per mark.
  • Reading "15" as millilitres. 15 mg is 6 mL at the weakest concentration in the table and 0.5 mL at the strongest. The number never means millilitres on its own.
  • Assuming the vial holds what the label says. Every figure here starts from the milligrams stated on your vial. For an FDA-approved product that figure is verified; for a compounded or grey-market vial nobody has checked it, and no calculator can. The arithmetic is exact — its input may not be.

Common questions

Sources

Every number on this page comes from one of the documents below. Where no reliable source exists, the page says so instead of filling the gap.

  1. FDA labelFDA / DailyMed· 2026-08
    MOUNJARO (tirzepatide) injection — FDA prescribing information
  2. FDA labelFDA· 2026-03
    WEGOVY (semaglutide) injection and tablets — FDA prescribing information
  3. GuidelineInternational Organization for Standardization· 2016-03
    ISO 8537:2016 — Sterile single-use syringes, with or without needle, for insulin (scope and requirements; full text not public)
  4. RegulatorFDA / Federal Register· 1998-05-13
    Removal of Regulations Regarding Certification of Drugs Composed Wholly or Partly of Insulin — 63 FR 26694 (the repealed insulin colour scheme, and U-40 no longer marketed)
  5. RegulatorUS Code of Federal Regulations / FDA
    21 CFR 522.1160 — Insulin (animal drugs): 40 international units (IU) per millilitre
  6. Published studyCase Reports in Endocrinology 2019;2019:7916435· 2019
    Barrera F, Murvelashvili N. Poorly controlled type 3c diabetes due to use of veterinarian insulin syringes
  7. Published studyDiabetology International 2024;15(3):544–549· 2024-05
    Kondo M, Saji R, Yamada Y, et al. Analysis of factors affecting the accuracy of low-dose insulin dosage using syringes and vials
  8. Published studyClinical Pediatrics 2004;43(1):69–74· 2004-01
    Keith K, Nicholson D, Rogers D. Accuracy and precision of low-dose insulin administration using syringes, pen injectors, and a pump
  9. Published studyBMJ Paediatrics Open· 2023
    Zheng L-Y et al. Displacement volume of reconstituted powder injections and its effect on dosing accuracy