Crippie D

Crippie D

Crippie D

Hybrid AI Generated

Also known as: Crippy D, Crippie Diesel

Overview

Crippie D is a sativa-leaning hybrid strain created by Katsu Seeds through the crossbreeding of Tampa Crippie and Sour Diesel. This cultivar represents a modern interpretation of the legendary Florida Crippie genetics, which originated in Hawaii in the 1980s and became a Florida staple throughout the 1990s. Tampa Crippie, the mother plant, is believed to be a cross between Chem 91 and Pakistani genetics, carrying forward the distinctive characteristics that made the original Crippie strains famous throughout South Florida. Crippie D combines the vintage East Coast funk of Tampa Crippie with the sharp citrus-fuel intensity of Sour Diesel, creating a nostalgic yet contemporary strain that appeals to both terp chasers and extract artists. The strain exhibits a medium-tall growth structure with vigorous branching and produces dense, resin-heavy flowers that finish in 9-10 weeks. This hybrid preserves the legendary potency and distinctive aromatic profile of its Florida heritage while incorporating the energetic characteristics of its Diesel lineage.

Effects

Reported Medical Uses

  • Users report relief from anxiety
  • May help with stress
  • Often used for pain management
  • Reported to aid with PTSD symptoms
  • May assist with appetite stimulation

This is not medical advice. Consult a healthcare professional.

Possible Negative Effects

Growing Information

Crippie D grows with a medium-tall structure and vigorous branching pattern. The strain finishes flowering in 9-10 weeks and produces dense, greasy flowers that are resin-heavy and sticky. Best suited for indoor or greenhouse cultivation with experienced growers due to its specific requirements. The plant exhibits excellent resin production making it ideal for solventless hash or hydrocarbon extraction. Growers report substantial yields with some phenotypes producing up to half a pound per plant with proper cultivation techniques. The strain requires adequate support due to heavy, dense cola formation.

Genetics

Parent Strains

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