SIDE-BY-SIDE FIELD NOTES
SFV OG
vs Tahoe OG
Leafly catalog summary values, not laboratory results for a specific sample. A displayed 0% is a rounded source value, not proof of absence. Unlisted cannabinoids remain unknown. Report totals are not per-effect sample sizes.
SFV OG source ↗Tahoe OG source ↗
| Profile | ![]() | ![]() |
|---|---|---|
| Classification | hybrid | hybrid |
| Breeder | Not verified | Not verified |
| THC · catalog reference | 20% | 21% |
| CBD · catalog reference | 0% | Not reported |
| CBG · catalog reference | Not reported | 1% |
| Dominant terpene | Not verified | Myrcene |
| Terpenes | Myrcene, Limonene, Caryophyllene | Myrcene, Limonene, Caryophyllene |
| Aroma | Earthy / herbal, Citrus, Pepper / spice | Earthy / herbal, Citrus, Pepper / spice |
| Flavor | ||
| Reported effects | ||
| Reported negative effects | ||
| Reported parents | Not verified | Not verified |
| Lineage status | Ancestry documented | Phenotype selection |
| Ancestry components | OG Kush (Ancestry component) | Not verified |
| Selected from | Not verified | OG Kush (Phenotype selection) |
| Lineage notes | SFV OG takes its name from California’s San Fernando Valley and is associated with Cali Connection. It belongs to the OG Kush family and differs from the later Afghani-crossed SFV OG Kush. This is a source-reported identity, not a genetically authenticated pedigree. | Tahoe OG is described as a phenotype of OG Kush rather than a separately documented two-parent cross. Tahoe OG Kush is another name for the same catalog profile. This is a source-reported identity, not a genetically authenticated pedigree. |
| Source reports · whole profile | 987 | 1,534 |
Explore SFV OG family ↗Explore Tahoe OG family ↗
Similarities
Shared documented terpenes: Myrcene, Limonene, Caryophyllene.
Main differences
The catalog lists THC at 20% for SFV OG and 21% for Tahoe OG. These reference points do not establish a sample range or an individual product's potency.
Keep the context
Reported attributes are subjective. Classification and chemical similarity do not establish equivalent effects.

