Federal P65PRCTA1 Premium Terminal Ascent 6.5Prc 130Gr 20 Per Box/10 Case
Federal Premium Terminal Ascent Bonded Construction penetrates Deep On Close Targets, While The patented Slipstream Polymer Tip Initiates Expansion at velocities 200 Fps Lower Than Comparable designs. The Bullets Long, Sleek Profile offers An extremely High Ballistic Coefficient, And Its AccuChannel Groove Technology improves Accuracy And minimizes Drag.
Caliber: 6.5 Prc
Bullet Type: Terminal Ascent
Bullet Weight: 130 Gr
Muzzle Energy: 2598 ft Lbs
Muzzle Velocity: 3000 Fps
Rounds Per Box: 20
Boxes Per Case: 10
Application: Hunting
Casing Material: Nickel-Plated Brass
Manufacturer: Federal
Mfg Number: P65PRCTA1
Model: Premium
Series: Terminal Ascent
Specification |
|
Value |
Caliber |
|
6.5 PRC |
Weight |
|
130 Grain |
Bullet Type |
|
Ballistic Tip |
|
|
|
MFG NO |
|
P65PRCTA1 |
SKU |
|
6351884 |
UPC |
|
604544659450 |
The Below Information Has Been Provided From Our Gun Caliber Dictionary And Is Meant For Informational Purposes Only. It Is Not Intended to Describe The Unique Specifications For This Ammunition.
The 6.5 Precision Rifle Cartridge (PRC) is one of the newest cartridges from a major manufacturer, introduced by Hornady in 2017. Based on Hornady's .375 Ruger/Ruger Compact Magnum unbelted case, the 6.5 PRC requires a .532-inch bolt face, same as standard belted magnums. With a 2.030-inch case it can be housed in short bolt actions, and case length allows use of long-for-caliber 6.5mm bullets. Obviously it trades on the success of the 6.5mm Creedmoor, and also on the renewed interest in the ranging abilities of the 6.5mm (.264-inch) bullet diameter. Interestingly, ballistics are similar to the old .264 Win Mag introduced back in 1958 with a 140-grain bullet at almost 3000 fps It is thus faster than the Creedmoor and .260 Rem, but much slower than new super-fast 6.5mms like the 26 Nosler and 6.5-300 Weatherby Mag With its modern case design it is seems almost certain to find favor with the growing number of long-range shooters!
Utilizing moderate powder charges that result in repeata —
Craig Boddington
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