Convert Teragrays to Rads
Teragray (TGy) to Rad (rd) absorbed radiation dose conversion — enter any value below to get an instant result, or use the table for common values.
Results from this calculator are estimates provided for general informational purposes only, based on formulas, rates, and standards commonly accepted as of 2026. Figures may differ slightly from other calculators or professional sources due to rounding methods, differing assumptions, or regional regulations, and rules may change over time. Always consult a qualified professional — such as a financial advisor, healthcare provider, or other relevant specialist — before making decisions based on these results.
Result
1 TGy = 1E+14 rd
1 Teragray = 1E+14 Rads
1 Rad = 1E-14 Teragrays
1 TGy in every supported unit
Conversion chart: Teragray to Rads
Conversion table
| Teragray (TGy) | Rad (rd) |
|---|---|
| 0.01 TGy | 1E+12 rd |
| 0.1 TGy | 1E+13 rd |
| 1 TGy | 1E+14 rd |
| 2 TGy | 2E+14 rd |
| 3 TGy | 3E+14 rd |
| 5 TGy | 5E+14 rd |
| 10 TGy | 1E+15 rd |
| 20 TGy | 2E+15 rd |
| 50 TGy | 5E+15 rd |
| 100 TGy | 1E+16 rd |
| 1000 TGy | 1E+17 rd |
Teragray (TGy)
Definition: An SI-prefixed multiple equal to one trillion gray of absorbed dose, well beyond any dose delivered or measured in practice.
History: A standard SI submultiple applied to gray the same way tera- is applied across every other coherent derived unit.
Current use: Included only for completeness across the full SI-prefix range.
Rad (rd)
Definition: The older CGS-derived unit of absorbed dose ("radiation absorbed dose"), equal to 0.01 gray — 100 erg of energy absorbed per gram of matter.
History: Defined in the mid-20th century as the standard unit of absorbed dose before the gray existed, the rad was the primary unit used in US medical and industrial radiation records for decades.
Current use: Still common in older US medical records, legacy radiotherapy equipment, and some regulatory documents that have not fully converted to SI units.
Supported Units
| Unit | Symbol | In Gy |
|---|---|---|
| Rad | rd | 0.01 Gy |
| Millirad | mrd | 1E-05 Gy |
| Joule/Kilogram | J/kg | 1 Gy |
| Joule/Gram | J/g | 1000 Gy |
| Joule/Centigram | J/cg | 100000 Gy |
| Joule/Milligram | J/mg | 1000000 Gy |
| Gray | Gy | 1 Gy |
| Exagray | EGy | 1E+18 Gy |
| Petagray | PGy | 1E+15 Gy |
| Teragray | TGy | 1E+12 Gy |
| Gigagray | GGy | 1E+09 Gy |
| Megagray | MGy | 1000000 Gy |
| Kilogray | kGy | 1000 Gy |
| Hectogray | hGy | 100 Gy |
| Dekagray | daGy | 10 Gy |
| Decigray | dGy | 0.1 Gy |
| Centigray | cGy | 0.01 Gy |
| Milligray | mGy | 0.001 Gy |
| Microgray | µGy | 1E-06 Gy |
| Nanogray | nGy | 1E-07 Gy |
| Picogray | pGy | 1E-10 Gy |
| Femtogray | fGy | 1E-13 Gy |
| Attogray | aGy | 1E-16 Gy |
About These Parameters
- Value
- The absorbed dose amount you want to convert, expressed in the "From" unit. Accepts decimals, and can represent anything from a diagnostic imaging patient dose in milligray to an industrial sterilization total dose in kilogray.
- From Unit
- The unit your absorbed-dose figure is currently measured in — a radiotherapy plan's centigray prescription, an older medical record's rad figure, or a physics calculation's raw joule/kilogram.
- To Unit
- The unit you want the result converted into. Use the swap button to flip From and To instantly, which is handy when translating an older US rad-based medical record into the modern SI gray or vice versa.
How Absorbed-Dose Conversion Works
The Formula
Every unit here is defined by a fixed multiplier relative to the gray. To convert a value from one unit to another:
result = value × (factor of "From" unit ÷ factor of "To" unit)
For Teragray → Rad: multiply by 1E+14. For example, 1 TGy × 1E+14 = 1E+14 rd.
From the Rad to the Gray
The rad was the standard US unit of absorbed dose for most of the 20th century, defined as 100 erg of absorbed energy per gram of matter. When the SI adopted the gray in 1975 — defined instead as one joule per kilogram, a cleaner fit with the rest of the SI system — the conversion worked out to exactly 100 rad per gray, a nicer relationship than many CGS-to-SI conversions manage. Older US medical records, some legacy radiotherapy equipment, and a handful of regulatory documents still use rad, which is why this converter keeps it alongside the modern gray.
Joule-per-Mass Units Are All the Same Formula
Joule/kilogram, joule/gram, joule/centigram, and joule/milligram aren't four different physical concepts — they're the gray's own defining ratio (energy absorbed ÷ mass) simply re-expressed for whichever mass unit a calculation already has in hand. A physics or dosimetry calculation that starts with energy in joules and a sample mass in grams doesn't need to convert the mass to kilograms first; it can read the result straight off the joule/gram scale, which is exactly 1,000 times the joule/kilogram (gray) value for the same absorbed energy and mass.
Example
An absorbed dose of 1 TGy equals 1E+14 rd. For scale, a single chest CT scan delivers roughly 7 milligray to the patient, a full course of external-beam radiotherapy for a solid tumor commonly totals 60-80 gray delivered over several weeks in small daily fractions, and industrial sterilization of medical devices typically requires a cumulative dose of 25-40 kilogray.
Frequently Asked Questions
How many Rads are in 1 Teragray?
1 Teragray (TGy) equals exactly 1E+14 Rads (rd).
What's the difference between gray and gray/second?
Gray (this converter) is a cumulative total — the full amount of energy absorbed per kilogram, with no time component. Gray/second (covered by the separate Radiation Converter) is a rate — how fast that absorbed energy is arriving right now. Multiply a gray/second dose rate by the exposure duration in seconds to get the total absorbed dose in gray.
How many rad are in a gray?
Exactly 100 rad equal 1 gray, since the rad is defined as 0.01 gray. This clean 100-to-1 relationship is one of the tidier CGS-to-SI conversions in radiation physics.
Is absorbed dose in gray the same as biological harm?
Not directly — gray measures physical energy absorbed per kilogram, with no adjustment for how damaging a given radiation type is to living tissue. The sievert (covered alongside sievert/second in the Radiation Converter) applies a biological weighting factor on top of the gray to estimate actual biological risk, which is why radiation-protection dose limits are typically expressed in sievert rather than gray.
Why does radiotherapy use centigray instead of gray or rad?
Centigray happens to equal the older rad numerically (both are 0.01 gray), so switching radiotherapy prescriptions from rad to centigray let clinics adopt the SI-compatible unit without changing any of the actual numbers on existing treatment protocols — a typical daily fraction of "200 rad" simply became "200 centigray," with no recalculation needed.