PING G25 Loft Chart

The PING G25 iron lineup runs from 20° to 58° across 11 factory loft options. The 7-iron is 32° and the highest-lofted option is the lob wedge at 58°.

PING Iron Loft Guide

G25 Lofts & Loft Chart

Factory loft map and model-specific gap analysis

32°7-Iron Loft
20°–58°Factory Loft Range
Median Loft Gap
11Loft Options

G25 Loft Chart

Club Loft Loft Gap Gap Read
3i 20°
4i 23° Tighter than model median
5i 26° Tighter than model median
6i 29° Tighter than model median
7i 32° Tighter than model median
8i 36° Near model median
9i 40° Near model median
PW 45° Wider than model median
UW 50° Wider than model median
SW 54° Near model median
LW 58° Near model median

What stands out about the G25 loft?

Benchmark loft: The 7-iron is 32°, which is 2° lower loft than the typical 34° PING 7-iron.
Gap pattern: The loft steps vary from 3° to 5°, with a 4° median.

G25 loft progression

3i 20° → 4i 23° → 5i 26° → 6i 29° → 7i 32° → 8i 36° → 9i 40° → PW 45° → UW 50° → SW 54° → LW 58°

Where do the G25 loft gaps change?

The tightest gap is between the 3-iron and 4-iron. The widest is between the 9-iron and pitching wedge. The median step is 4°.

G25 vs other PING iron lofts

This comparison uses the same benchmark club where possible and shows nearby lower, similar and higher PING lofts when available.

PING Model Benchmark Club Loft Difference
G 7i 30° 2° lower loft
G30 7i 30.5° 1.5° lower loft
Anser 2012 7i 32° Same loft
G20 7i 32° Same loft
G25 7i 32° This model
Anser 7i 33° 1° higher loft

Which G25 club has each loft?

  • 20° = 3-iron.
  • 23° = 4-iron.
  • 26° = 5-iron.
  • 29° = 6-iron.
  • 32° = 7-iron.
  • 36° = 8-iron.
  • 40° = 9-iron.
  • 45° = pitching wedge.
  • 50° = utility wedge.
  • 54° = sand wedge.
  • 58° = lob wedge.

Individual G25 loft answers

What loft is the PING G25 3-iron?

The G25 3-iron is 20°. It is the lowest-lofted option in this model.

What loft is the PING G25 4-iron?

The G25 4-iron is 23°. It has 3° more loft than the 3-iron.

What loft is the PING G25 5-iron?

The G25 5-iron is 26°. It has 3° more loft than the 4-iron.

What loft is the PING G25 6-iron?

The G25 6-iron is 29°. It has 3° more loft than the 5-iron.

What loft is the PING G25 7-iron?

The G25 7-iron is 32°. It has 3° more loft than the 6-iron.

What loft is the PING G25 8-iron?

The G25 8-iron is 36°. It has 4° more loft than the 7-iron.

What loft is the PING G25 9-iron?

The G25 9-iron is 40°. It has 4° more loft than the 8-iron.

What loft is the PING G25 pitching wedge?

The G25 pitching wedge is 45°. It has 5° more loft than the 9-iron.

What loft is the PING G25 utility wedge?

The G25 utility wedge is 50°. It has 5° more loft than the pitching wedge.

What loft is the PING G25 sand wedge?

The G25 sand wedge is 54°. It has 4° more loft than the utility wedge.

What loft is the PING G25 lob wedge?

The G25 lob wedge is 58°. It has 4° more loft than the sand wedge.

G25 Loft Intelligence

These derived specs show how the numbered irons are structured beyond the raw loft chart.

7-ironBenchmark Iron
32° loft
3° strongerTraditional Loft Shift
vs ~35° traditional 7i
3° medianNumbered-Iron Gap
3.3° average
64.6/100Loft Consistency
Moderately varied
Strength fingerprint: The 7-iron is 32°. In static loft it is closest to a traditional 6-iron at about 31°.

Iron-only spacing: The tightest numbered-iron gap is 3° from 3i to 4i; the widest is 4° from 7i to 8i.

Loft Consistency Score: 64.6/100. This derived score measures variation in numbered-iron loft gaps; 100 means perfectly even spacing.

How the G25 lofts affect the shot

Loft is one of the biggest inputs into launch, trajectory, rollout and stopping power. The table below translates each G25 loft into its likely loft-only shot tendency.

20°Lowest-Loft Shot
Low launch • Higher roll
58°Highest-Loft Shot
Very high launch • Maximum stopping
38°Flight-Window Change
Low → Very high launch tendency
11 loftsShot Bias
Distance → control as loft increases
Model shot profile: Across the 38° loft span, the model moves from the 3-iron at 20° (low launch / higher roll tendency) to the lob wedge at 58° (very high launch / maximum stopping tendency). That is the core shot-shape trade-off created by the loft progression.
Club Loft Launch Tendency Flight Window Roll Tendency Stopping Tendency Loft-Driven Role
3i 20° Low Penetrating Higher Low Long-iron distance slot
4i 23° Low–mid Strong Moderate–high Low–moderate Long-iron slot
5i 26° Mid–low Strong / flat Moderate Moderate Distance-biased mid/long iron
6i 29° Mid Balanced Moderate Moderate–high Mid-iron scoring transition
7i 32° Mid Balanced Moderate Moderate–high Mid-iron scoring transition
8i 36° Mid–high Higher Low–moderate High Control-oriented mid/short iron
9i 40° High High / soft Lower High Short-iron approach slot
PW 45° High High / steep Low Very high Scoring-iron / pitching slot
UW 50° Very high Very high / steep Very low Very high Gap-control / scoring slot
SW 54° Very high Maximum-height / steep Minimal Maximum Short-game / maximum-control slot
LW 58° Very high Maximum-height / steep Minimal Maximum Short-game / maximum-control slot

What the loft gaps mean for shot separation

  • 3-iron → 4-iron: 3° — Normal-to-moderate loft step — usually a balanced transition.
  • 4-iron → 5-iron: 3° — Normal-to-moderate loft step — usually a balanced transition.
  • 5-iron → 6-iron: 3° — Normal-to-moderate loft step — usually a balanced transition.
  • 6-iron → 7-iron: 3° — Normal-to-moderate loft step — usually a balanced transition.
  • 7-iron → 8-iron: 4° — Normal-to-moderate loft step — usually a balanced transition.
  • 8-iron → 9-iron: 4° — Normal-to-moderate loft step — usually a balanced transition.
  • 9-iron → pitching wedge: 5° — Wider loft step — worth checking carry distance for a larger jump.
  • pitching wedge → utility wedge: 5° — Wider loft step — worth checking carry distance for a larger jump.
  • utility wedge → sand wedge: 4° — Normal-to-moderate loft step — usually a balanced transition.
  • sand wedge → lob wedge: 4° — Normal-to-moderate loft step — usually a balanced transition.

Iron note: Stronger lofts generally lower the launch/flight window and increase distance potential, while weaker lofts generally raise flight and stopping power. Modern iron head design can counteract some of that, so this is a loft-only tendency rather than a measured launch result.

Where the set changes from distance to control

By loft alone, the distance-biased part of the numbered set extends through roughly the 5-iron at 26°. By the 8-iron at 36°, the loft profile is clearly moving toward higher launch, steeper descent and stronger green-holding tendency.

G25 distance-to-control map

Part of lineup Reference club Loft What the loft favors
Distance end 3-iron 20° Low launch, higher roll, stronger distance bias
Middle 8-iron 36° Mid–high launch, more balanced carry/control role
Control end lob wedge 58° Very high launch, maximum stopping tendency, stronger control bias

Spec note: Loft can vary with model year, region, special configuration or custom fitting. Verify an exact club against PING documentation or measurement when a single degree matters.

Ernie

Ernie loves documenting interesting facts about golf.

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