A 308 Ballistics Chart 1000 Yards is a comprehensive data reference table that illustrates the velocity energy bullet drop and aerodynamic efficiency of the legendary thirty caliber cartridge over extreme distances. This specialized chart allows precision shooters and long range hunters to analyze exactly how different factory loads perform under real world atmospheric conditions. By evaluating these critical flight metrics marksmen can accurately calculate precise optical elevation holdovers and guarantee ethical terminal impact forces. Utilizing this extensive data ensures supreme accuracy when stretching this universally trusted cartridge to the one thousand yard line.
308 Ballistics Chart 1000 Yards
| Manufacturer | Bullet Weight | Bullet Type | Ballistic Coefficient | Sectional Density | Muzzle Velocity | Velocity At 200 Yards | Velocity At 400 Yards | Velocity At 600 Yards | Velocity At 800 Yards | Velocity At 1000 Yards | Muzzle Energy | Energy At 200 Yards | Energy At 400 Yards | Energy At 600 Yards | Energy At 800 Yards | Energy At 1000 Yards | Trajectory At 200 Yards | Trajectory At 400 Yards | Trajectory At 600 Yards | Trajectory At 800 Yards | Trajectory At 1000 Yards |
| Hornady Precision Hunter | 178 gr | ELD X | 0.552 | 0.268 | 2600 fps | 2290 fps | 2005 fps | 1740 fps | 1495 fps | 1285 fps | 2671 ft lbs | 2072 ft lbs | 1589 ft lbs | 1196 ft lbs | 883 ft lbs | 653 ft lbs | 4.2 in Low | 36.5 in Low | 102.0 in Low | 215.5 in Low | 390.4 in Low |
| Federal Gold Medal Match | 175 gr | Sierra MatchKing | 0.505 | 0.264 | 2600 fps | 2255 fps | 1940 fps | 1650 fps | 1390 fps | 1175 fps | 2627 ft lbs | 1976 ft lbs | 1463 ft lbs | 1058 ft lbs | 751 ft lbs | 536 ft lbs | 4.4 in Low | 38.2 in Low | 108.5 in Low | 234.0 in Low | 435.6 in Low |
| Federal Gold Medal Match | 168 gr | Sierra MatchKing | 0.462 | 0.253 | 2650 fps | 2265 fps | 1915 fps | 1600 fps | 1320 fps | 1100 fps | 2619 ft lbs | 1914 ft lbs | 1368 ft lbs | 955 ft lbs | 650 ft lbs | 451 ft lbs | 4.1 in Low | 37.5 in Low | 110.2 in Low | 244.5 in Low | 470.8 in Low |
| Hornady Match | 168 gr | BTHP | 0.450 | 0.253 | 2700 fps | 2300 fps | 1935 fps | 1605 fps | 1315 fps | 1090 fps | 2719 ft lbs | 1972 ft lbs | 1396 ft lbs | 961 ft lbs | 645 ft lbs | 443 ft lbs | 3.8 in Low | 35.5 in Low | 106.8 in Low | 240.5 in Low | 468.5 in Low |
| Barnes Precision Match | 175 gr | OTM | 0.521 | 0.264 | 2600 fps | 2265 fps | 1960 fps | 1680 fps | 1425 fps | 1210 fps | 2627 ft lbs | 1993 ft lbs | 1493 ft lbs | 1097 ft lbs | 789 ft lbs | 569 ft lbs | 4.3 in Low | 37.8 in Low | 106.5 in Low | 228.0 in Low | 420.5 in Low |
| Winchester Match | 168 gr | Sierra MatchKing | 0.462 | 0.253 | 2680 fps | 2290 fps | 1935 fps | 1615 fps | 1330 fps | 1105 fps | 2679 ft lbs | 1956 ft lbs | 1397 ft lbs | 973 ft lbs | 660 ft lbs | 455 ft lbs | 3.9 in Low | 36.4 in Low | 107.5 in Low | 239.0 in Low | 460.5 in Low |
| PMC X TAC Match | 168 gr | OTM | 0.462 | 0.253 | 2650 fps | 2265 fps | 1915 fps | 1600 fps | 1320 fps | 1100 fps | 2619 ft lbs | 1914 ft lbs | 1368 ft lbs | 955 ft lbs | 650 ft lbs | 451 ft lbs | 4.1 in Low | 37.5 in Low | 110.2 in Low | 244.5 in Low | 470.8 in Low |
| Nosler Match Grade | 168 gr | Custom Competition | 0.462 | 0.253 | 2680 fps | 2290 fps | 1935 fps | 1615 fps | 1330 fps | 1105 fps | 2679 ft lbs | 1956 ft lbs | 1397 ft lbs | 973 ft lbs | 660 ft lbs | 455 ft lbs | 3.9 in Low | 36.4 in Low | 107.5 in Low | 239.0 in Low | 460.5 in Low |
| Underwood Ammo | 175 gr | HPBT | 0.505 | 0.264 | 2650 fps | 2300 fps | 1980 fps | 1685 fps | 1420 fps | 1195 fps | 2729 ft lbs | 2055 ft lbs | 1523 ft lbs | 1103 ft lbs | 783 ft lbs | 555 ft lbs | 4.1 in Low | 36.2 in Low | 103.5 in Low | 222.0 in Low | 412.5 in Low |
| Federal Power Shok | 150 gr | Soft Point | 0.313 | 0.226 | 2820 fps | 2280 fps | 1795 fps | 1380 fps | 1070 fps | 895 fps | 2648 ft lbs | 1731 ft lbs | 1073 ft lbs | 634 ft lbs | 381 ft lbs | 267 ft lbs | 3.4 in Low | 36.0 in Low | 120.0 in Low | 305.5 in Low | 660.0 in Low |
Reviewing this exact ballistic layout demonstrates exactly how different bullet designs manage atmospheric drag across a massive one thousand yard span.

Understanding The 308 Ballistics Chart 1000 Yards
Analyzing the provided data reveals that aerodynamic bullet design is far more important than raw muzzle speed when shooting at extreme distances.
Velocity Analysis
Evaluating the velocity metrics within the table shows that the Federal Power Shok 150 grain Soft Point is initially the fastest load leaving the muzzle at 2820 feet per second.
This exceptional starting speed gives the lightweight hunting projectile a massive advantage across the first two hundred yards of open air flight.
However examining the heavier match bullets reveals that aerodynamic efficiency plays the ultimate role in velocity retention over extreme distances.
The Hornady Precision Hunter 178 grain ELD X starts at a slower 2600 feet per second but retains an impressive 1285 feet per second at the one thousand yard mark.
In contrast the traditional Federal Power Shok 150 grain Soft Point slows down so drastically that it drops to a mere 895 feet per second by the time it reaches one thousand yards.
This specific velocity data proves that for extended long range shooting aerodynamically superior projectiles preserve their stability far better than older blunt nose hunting designs.
Energy Analysis
Muzzle energy dictates the sheer physical shock delivered to a target upon initial bullet impact.
The table data highlights that the Underwood Ammo 175 grain HPBT produces the highest initial strike force with 2729 foot pounds of muzzle energy.
Heavy duty precision options like the Hornady Precision Hunter 178 grain ELD X also start incredibly strong generating 2671 foot pounds of energy at the barrel exit.
Downrange energy retention is where high ballistic coefficient bullets truly separate themselves from standard hunting ammunition across vast open spaces.
By the time the projectiles reach the one thousand yard line the Hornady Precision Hunter 178 grain ELD X retains 653 foot pounds of lethal kinetic force.
Meanwhile the Federal Power Shok 150 grain Soft Point bleeds off power incredibly fast arriving at one thousand yards with only 267 foot pounds of energy remaining.
High retained energy values guarantee that the bullet maintains enough momentum to ring steel targets effectively or penetrate barriers at extreme distances.
Trajectory Analysis
Reviewing the trajectory profile with a standard one hundred yard zero demonstrates the massive gravitational curve this cartridge experiences at extreme ranges.
The flattest shooting factory load in the chart at one thousand yards is the Hornady Precision Hunter 178 grain ELD X which exhibits a bullet drop of 390.4 inches.
The Underwood Ammo 175 grain HPBT also provides a relatively stellar trajectory dropping just 412.5 inches at the same immense distance.
As distance increases beyond the six hundred yard line older projectile designs begin to fall out of the sky rapidly due to massive air drag slowing their forward momentum.
The Federal Power Shok 150 grain Soft Point plunges drastically dropping a massive 660.0 inches by the time it reaches the one thousand yard target.
Practical holdover estimates using these chart values indicate that shooters using modern polymer tipped match ammunition require significantly less optical dialing than those utilizing exposed lead soft points.
Ballistic Coefficient Analysis
The ballistic coefficient values listed in the table reveal a massive technological divide between traditional hunting ammunition and modern long range match designs.
The Hornady Precision Hunter 178 grain ELD X dominates this vital category with an incredibly high rating of 0.552.
Traditional brush hunting configurations like the Federal Power Shok 150 grain Soft Point feature a much lower aerodynamic rating of just 0.313.
The high rating of the ELD X allows the heavy bullet to easily slice through dense atmospheric resistance without shedding precious velocity across open valleys.
According to the chart data this massive aerodynamic advantage guarantees that high coefficient bullets arrive at distant targets with significantly flatter pathways and heavily reduced lateral wind drift.
Sectional Density Analysis
Sectional density directly influences how stable a bullet remains during extreme long flights and how deeply it penetrates thick targets upon arrival.
The chart confirms that the Hornady Precision Hunter 178 grain projectile possesses the highest sectional density rating of 0.268.
The lighter 150 grain hunting options exhibit a noticeably lower sectional density value of 0.226.
A higher sectional density means the bullet concentrates its physical mass over a smaller cross sectional area forcing it deeper into the vital cavity of targets.
This specific data confirms that marksmen pursuing extreme long range steel targets should completely rely on the heavier 175 grain and 178 grain projectiles to maximize kinetic impact.
Best Factory Loads Based On The Chart
For Extreme Long Range Shooting the Hornady Precision Hunter 178 grain ELD X is the absolute best choice due to its massive 0.552 ballistic coefficient and exceptional energy retention.
For Precision Match Competition the Federal Gold Medal Match 175 grain Sierra MatchKing provides a perfectly balanced trajectory with an impressive legendary track record at one thousand yards.
If Maximum Initial Velocity is your primary goal the Federal Power Shok 150 grain Soft Point takes the absolute top spot by reaching 2820 feet per second at the muzzle.
When seeking Maximum Retained Energy at extended distances the Hornady Precision Hunter 178 grain ELD X wins easily by preserving 653 foot pounds of strike force at one thousand yards.
For General Purpose Target Shooting the Hornady Match 168 grain BTHP offers incredibly reliable accuracy and moderate recoil that prevents shooter fatigue during long range sessions.
Key Takeaways From The Chart
The fastest factory load in the entire chart at the muzzle is the Federal Power Shok 150 grain Soft Point at 2820 feet per second.
The highest initial muzzle energy is produced by the Underwood Ammo 175 grain HPBT at 2729 foot pounds.
The highest retained kinetic energy at one thousand yards belongs to the Hornady Precision Hunter 178 grain ELD X at 653 foot pounds.
The flattest trajectory at one thousand yards is achieved by the Hornady Precision Hunter 178 grain ELD X with 390.4 inches of total bullet drop.
The highest overall ballistic coefficient listed is the Hornady Precision Hunter 178 grain ELD X at 0.552.
The best overall extreme long range performer based on combined energy retention and trajectory metrics is the Hornady Precision Hunter 178 grain ELD X.
Common 308 Bullet Weights
The unique versatile powder capacity of this cartridge allows it to utilize an incredibly wide spectrum of projectile weights optimized for distinct shooting roles.
150 Grain
The 150 grain projectile weight is the historical standard offering that maximizes the velocity potential of this thirty caliber cartridge for medium game hunting.
Typical muzzle velocity for this specific weight easily reaches 2820 feet per second creating a laser flat trajectory inside three hundred yards.
The primary advantage of this weight is its incredibly high initial velocity which minimizes the need for holdovers during close range whitetail deer hunting.
The main disadvantage is that the lighter mass results in incredibly poor ballistic coefficients making it completely unsuitable for one thousand yard target engagements.
This specific weight is best applied in general target practice short distance woods hunting and tactical training where extreme distances are not expected.
165 Grain
The 165 grain projectile represents a perfectly balanced middle ground for hunters seeking both velocity and deep penetration on heavy animals.
Typical muzzle velocity sits comfortably around 2700 feet per second which generates roughly 2650 foot pounds of energy at the muzzle.
The primary advantages of 165 grain options are brilliant velocity retention moderate recoil and a massive selection of premium factory loads from all major manufacturers.
The primary disadvantage is that these bullets lack the extreme ballistic coefficients found in the heavier match grade target variants.
This weight is the absolute ideal choice for open country elk hunting and precise shot placement on large sized game animals across medium valleys.
168 Grain
The 168 grain projectile weight represents the absolute gold standard sweet spot for military and police precision tactical shooting.
Typical muzzle velocity is roughly 2650 feet per second which translates into incredibly consistent accuracy and mild recoil profiles.
The single biggest advantage of this weight is its exceptional historical track record and the absolute perfection of the Sierra MatchKing bullet design.
The primary disadvantage is a slight aerodynamic instability that can occur when the bullet transitions from supersonic to subsonic speeds near eight hundred yards.
This weight is the ultimate choice for marksmen who require legendary precision out to eight hundred yards in formal target competitions.
175 Grain
The 175 grain bullet is an incredibly heavy option used primarily by extreme long range specialists and military snipers to reach past one thousand yards.
Typical muzzle velocity drops down to around 2600 feet per second though it maintains immense structural momentum and supersonic stability at extended yardages.
The advantage of the 175 grain bullet is its unmatched wind resisting capabilities and phenomenal transition through the transonic barrier without tumbling.
The main disadvantage is the slightly increased recoil pulse that shooters will experience when firing these heavy projectiles during extended match strings.
This extreme weight is universally recommended for reaching the one thousand yard line reliably and ringing heavy steel targets in heavy crosswinds.
178 Grain
The 178 grain bullet represents the absolute pinnacle of modern heavy high ballistic coefficient projectile design for this specific cartridge.
Typical muzzle velocity sits right at 2600 feet per second yielding incredible energy retention and massive terminal impact forces downrange.
The major benefit is that it provides the highest ballistic coefficients available guaranteeing the flattest possible trajectory beyond eight hundred yards.
The disadvantage is a noticeably steeper initial trajectory arc inside three hundred yards when compared to the hyper fast 150 grain options.
This weight class is universally recommended for pursuing the absolute maximum distance limits of the cartridge in extreme long range competition series events.
Effective Range
Understanding the realistic physical limits of this cartridge helps shooters select the correct equipment and optical setups for their specific extreme distance goals.
Target Shooting
For standard large scale paper and steel targets the effective range easily spans from one hundred yards all the way out to one thousand yards using quality match grade ammunition.
At these extended distances the heavy 175 grain projectile remains comfortably stable keeping its flight path predictable through varying atmospheric conditions.
Extreme Long Range Shooting
When participating in extreme long range activities expert marksmen can successfully push this cartridge out to twelve hundred yards under perfect weather conditions.
Achieving success at this specific extended distance requires premium high ballistic coefficient ammunition like the ELD X to ensure the bullet resists total destabilization.
Military Applications
This specific cartridge was officially adopted by massive global military forces and remains the primary sniper platform for engaging infantry targets at long distances.
The ballistic properties of this cartridge offer a perfect balance of manageable recoil weapon durability and high lethality out to eight hundred meters.
The 175 grain military specification load was specifically designed to ensure military snipers could accurately deliver supersonic hits at the one thousand yard marker.
Competition Shooting
Within local sporting rifle matches and precision rifle series events the cartridge performs admirably at all distances despite being slightly slower than modern specialized calibers.
At extreme distances the high ballistic coefficient of modern polymer tipped match ammunition allows veteran shooters to achieve incredible accuracy despite shifting lateral wind currents.
Factors That Affect 308 Ballistics
External environmental atmospheric variables and physical firearm attributes combine to completely alter how a bullet behaves once it leaves the muzzle.
Barrel Length
Barrel length plays a critical role in determining exactly how much velocity the cartridge can generate before the bullet exits into the open atmosphere.
A standard twenty four inch barrel allows the medium burning powder inside the case to completely ignite maximizing the initial velocity push.
Shorter barrels such as twenty inch tactical configurations can cause a loss of up to one hundred feet per second which noticeably diminishes one thousand yard performance.
Bullet Weight
Bullet weight dictates the core fundamental relationship between quick initial exit speed and late flight momentum conservation over vast open ground.
Lighter bullets leave the barrel much faster but lose speed quickly due to drag whereas heavier bullets start slightly slower but hold their velocity over massive distances.
Bullet Construction
The physical exterior design of the projectile whether it is an exposed lead core a hollow point boat tail or a polymer tipped variant heavily affects flight efficiency.
Smooth aerodynamic tipped match bullets track perfectly straight because they absolutely minimize flight imbalances and slice through the air cleanly without drag.
Ballistic Coefficient
The ballistic coefficient measures exactly how easily a bullet overcomes raw air resistance during its incredibly long journey to the distant target.
A higher ballistic coefficient directly reduces vertical bullet drop mathematically and massively minimizes the lateral drift caused by harsh crosswinds in the field.
Altitude
High altitude mountain environments feature incredibly thin air which drastically reduces the aerodynamic drag forces acting against a flying bullet in motion.
Shooters operating in elevated mountain ranges will notice flatter overall pathways and much higher retained velocities at one thousand yards than those shooting near sea level.
Temperature
Air temperature heavily impacts atmospheric density with freezing cold temperatures creating denser air that slows down flying projectiles much faster over distance.
Additionally extreme ammunition temperature fluctuations can completely alter powder burn rates inside the brass cartridge causing unexpected changes in initial muzzle velocity.
Wind
Due to the extreme distances involved in one thousand yard shooting crosswinds have a profound and massive effect on the downrange trajectory of the bullet.
A strong continuous crosswind will push the bullet sideways by several feet over long distances requiring precise windage alignment based on detailed ballistic chart evaluations.
Zero Distance
The specific distance at which a rifle is physically zeroed determines the entire mathematical arc of the flight trajectory relative to the shooter looking through the optic.
An inappropriate zero distance can require excessive physical adjustments on an optics turret severely limiting the total amount of internal elevation travel remaining for extreme shots.
Best Zero Distance
Choosing the absolute correct zero distance establishes an incredibly efficient baseline for dialing massive elevation holdovers at extreme ranges.
100 Yard Zero
A one hundred yard zero is highly popular and considered the absolute gold standard among civilian precision shooters and military snipers alike.
The primary advantage is that wind interference is practically eliminated during the critical sight in process ensuring a perfectly centered and flawless rifle alignment.
The main disadvantage is that you must dial a massive amount of vertical elevation adjustment roughly forty minutes of angle when transitioning to one thousand yard targets.
This zero is best for general target practice baseline rifle testing and ensuring total mathematical simplicity when calculating ballistic drop charts.
200 Yard Zero
A two hundred yard zero serves as an exceptional general purpose baseline for a wide variety of open country hunting conditions and practical rifle matches.
As demonstrated in our primary chart utilizing a two hundred yard zero keeps the bullet path incredibly flat through the first two hundred and fifty yards of travel.
The disadvantage is a very slight mid range rise near one hundred yards though it remains small enough to completely ignore when aiming at the vital zone of steel targets.
This zero is highly recommended for field marksmen who require instant readiness inside three hundred yards without touching their optical turrets.
500 Yard Zero
A five hundred yard zero is an incredibly specialized configuration utilized only by extreme long range specialists testing the maximum limits of specific optical mounts.
The massive advantage is that it completely eliminates the need to dial massive elevation corrections when engaging distant steel targets right at the half mile mark.
The severe disadvantage is that the bullet flies significantly higher than the line of sight at two hundred yards which guarantees massive embarrassing misses on close targets.
This approach is best reserved for dedicated medium to long range field experiments where steel target distances are consistently uniform and always far away.
1000 Yard Zero
A one thousand yard zero is entirely theoretical for a standard precision rifle and is used exclusively by extreme experimental open class long range marksmen.
The major benefit of attempting this zero is exploring the absolute maximum trajectory arc that the heavy thirty caliber projectile can physically achieve before hitting the dirt.
The disadvantage is that the shooter must use specialized sloped optical mounts measuring over forty minutes of angle just to dial the massive amount of elevation required to reach this distance.
This zero is strictly an academic target exercise and should never be applied to practical tactical shooting scenarios or standard hunting operations.
308 Compared To Similar Cartridges
To understand exactly where this legendary precision cartridge stands it helps to compare its one thousand yard performance against other prominent extreme long range options.
| Cartridge | Velocity | Energy | Trajectory At 1000 Yards | Ballistic Coefficient | Effective Range | Recoil | Extreme Long Range Performance |
| 308 Winchester | 2600 fps | 2627 ft lbs | 390.4 in Low | 0.552 | 1000 yd | Moderate | Legendary Proven Consistency |
| 6.5 Creedmoor | 2700 fps | 2266 ft lbs | 315.0 in Low | 0.620 | 1200 yd | Low | Superior Wind Deflection Resistance |
| 300 Winchester Magnum | 2950 fps | 3600 ft lbs | 260.0 in Low | 0.530 | 1400 yd | Heavy | Massive Knock Down Power |
| 7mm Remington Magnum | 2950 fps | 3100 ft lbs | 270.0 in Low | 0.610 | 1300 yd | Heavy | Ultimate Flat Trajectory |
| 30 06 Springfield | 2750 fps | 2820 ft lbs | 350.0 in Low | 0.505 | 1100 yd | Moderate Heavy | Excellent Heavy Bullet Capability |
The major difference shown above is that while modern specialized cartridges like the 6.5 Creedmoor offer vastly superior high coefficient aerodynamic flight profiles the classic thirty caliber option still matches it closely in practical accuracy. The older cartridge delivers incredible barrel life and ubiquitous ammunition availability making it the premier choice when absolute reliability is prioritized over chasing the absolute flattest extreme range capability. When compared to massive magnums the standard thirty caliber uses significantly less powder and extends barrel life indefinitely while still ringing steel at one thousand yards.
Frequently Asked Questions
What is the typical muzzle velocity required to reach one thousand yards?
Typical factory match ammunition muzzle velocity must range between 2600 and 2700 feet per second using heavy bullets to reliably reach that distance.
How much bullet drop does a 175 grain match bullet have at one thousand yards?
With a standard one hundred yard zero a typical 175 grain factory cartridge experiences between 390 and 435 inches of total gravitational drop at one thousand yards.
Which factory load retains velocity best at extreme long range?
The Hornady Precision Hunter 178 grain ELD X retains velocity incredibly well due to its ultra sleek polymer tip and exceptionally high aerodynamic rating.
Is the cartridge still flying at supersonic speeds at one thousand yards?
Yes when using 175 grain or 178 grain high ballistic coefficient bullets the projectile successfully maintains supersonic stability exactly at the one thousand yard marker.
What is the average muzzle energy of a match grade cartridge?
Average muzzle energy spans from 2619 to over 2729 foot pounds making it a highly capable and devastatingly consistent precision rifle round.
Why do heavier bullets drop less at extreme distances in this caliber?
Heavier high coefficient bullets resist air drag incredibly efficiently which allows them to retain high velocity and spend far less time in flight where gravity pulls them down.
What is the major difference between a 168 grain and a 175 grain match bullet?
The 168 grain bullet is incredibly accurate inside eight hundred yards but can destabilize approaching one thousand yards whereas the 175 grain bullet flies perfectly stable all the way to one thousand yards.
Does barrel length significantly change one thousand yard ballistics?
Yes longer twenty four inch barrels maximize internal powder combustion and velocity which is absolutely critical for keeping the bullet supersonic at one thousand yards.
What is the best zero distance for a dedicated one thousand yard precision rifle?
A one hundred yard zero provides the best general purpose baseline keeping all math calculations simple and maximizing the available internal elevation travel inside the optic.
How does wind affect this bullet compared to modern six millimeter calibers?
Due to its heavy mass it resists wind deflection well but its lower ballistic coefficient means it gets pushed sideways slightly more than modern hyper efficient six millimeter match variants at extreme distances.