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Quick verdict
These paddles are closely matched based on available specs.
Based on available specs; some data is missing.
Some specs are missing; comparisons may be limited.
Best-for highlights
Pro - Power Pro E - 16 MM
No clear highlights from available specs.
Harmony S
No clear highlights from available specs.
Key differences
- Minimum price: Harmony S is cheaper by $21.00 ($205.00 vs $226.00)
- Core material: Unibody Edgecraft Foam Injected Polypropylene vs Polypropylene + Foam
- Face material: Unibody Force-Tec Unidirectional T700 Carbon Fiber vs Carbon
Pro - Power Pro E - 16 MM – 16mm
Price$226
Weight7.9 oz
Thickness16 mm
CoreUnibody Edgecraft Foam Injected Polypropylene
Harmony S – 16mm
Price$205
Weight7.9 oz
Thickness16 mm
CorePolypropylene + Foam
These paddles differ in price, dimensions and materials.
Price:$205 – $226
Core:Unibody Edgecraft Foam Injected Polypropylene vs Polypropylene + Foam
Different
--No data
Showing 6 meaningful differences
Differences of ≥5g weight, ≥1mm thickness, ≥$20 price, or any material change
Pricing
Prices from Australian retailers. Range reflects different colorways and retailers.
Minimum priceDifferent
$21 rangePro - Power Pro E - 16 MM – 16mm
$226.00
Harmony S – 16mm
$205.00
Maximum priceDifferent
$21 rangePro - Power Pro E - 16 MM – 16mm
$226.00
Harmony S – 16mm
$205.00
Dimensions
LengthDifferent
Pro - Power Pro E - 16 MM – 16mm
16.5 in (419 mm)
Harmony S – 16mm
16.4 in (416 mm)
WidthDifferent
Pro - Power Pro E - 16 MM – 16mm
7.5 in (191 mm)
Harmony S – 16mm
7.6 in (192 mm)
Materials
Core materialDifferent
Pro - Power Pro E - 16 MM – 16mm
Unibody Edgecraft Foam Injected Polypropylene
Harmony S – 16mm
Polypropylene + Foam
Face materialDifferent
Pro - Power Pro E - 16 MM – 16mm
Unibody Force-Tec Unidirectional T700 Carbon Fiber
Harmony S – 16mm
Carbon
How we detect differences
We highlight specs as "different" when they exceed these thresholds:
- Weight: 0.2 oz (5g) or more difference
- Thickness: 1mm or more difference
- Price: $20 or more difference
- Materials: Any difference in core or face material