Gretsch G6136T PLAYERS EDITION WHITE FALCON HOLLOW BODY WITH STRING-THRU BIGSBY
GRETSCH
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Gretsch G6136T-RR Rich Robinson Signature Falcon Hollowbody Guitar
Embrace your inner Rich Robinson with this iconic Gretsch signature guitar. Inspired by the Black Crowes guitarist's distinctive dark blue instrument, the Gretsch G6136T-RR Rich Robinson Signature Falcon boasts authentic Southern rock aesthetics and a powerful tone to match. This hollowbody guitar features a solid spruce top, TV Jones humbucking pickups, and a genuine Bigsby B3 vibrato tailpiece. Additional custom appointments include an ebony fingerboard and bridge, 1959 trestle bracing, and a custom Magpie-adorned pickguard logo. Perfect for Rich Robinson and Black Crowes fans, this guitar is the ultimate choice for rocking out on stage.
Designed to meet the tonal demands of the Black Crowes, the Gretsch G6136T-RR is equipped with a pair of TV Jones humbucking pickups. The neck position features a Broad'Tron BT-65 pickup, providing a hot signal with abundant mids and crisp highs. Ideal for clean leads and distorted riffs, this pickup complements the bridge position's TV Jones Filter'Tron Classic humbucker. Offering a PAF-like tone with the brightness and clarity synonymous with Gretsch guitars, these humbuckers combine to create a perfect tonal blend for aspiring Southern rockers.
The G6136T-RR's neck was custom-designed to suit Rich Robinson's playing style. Gretsch crafted a comfortable U-shaped maple neck that's topped with an ebony fingerboard, 12-inch radius, and 22 medium jumbo frets for effortless bending and soloing. You'll find this signature Falcon far from "Hard to Handle" when it comes to playability.
Rich Robinson's love for vintage instruments led him to request Gretsch to revive their unique trestle bracing pattern for his signature model. Trestle bracing consists of two U-shaped spruce braces running parallel down the guitar body from the neck joint to the bridge. These structures support the top while connecting the top and back, promoting longer sustain without increasing feedback risk.