About this item
A meticulously crafted bat with mid-blade power zone offering controlled power, traditional design, and optimal balance for consistent performance across all formats.
- Grade 1+ English Willow
- Semi-oval Double Handle
- Mid-blade Sweet Spot
The MRF Power 2.0 delivers exceptional performance through its strategically engineered mid-blade power zone, providing controlled power and consistent performance. Traditional profile with modern enhancements creates the perfect balance between stability and punch.
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Mid-Blade Power Zone: Specially designed for controlled power distribution, ensuring consistent timing and placement
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Traditional Profile: Classic bat shape with moderate edges and spine height for versatile stroke play
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Precision Balanced: Carefully weighted to provide stability at impact while maintaining excellent pickup
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Factory Hand-Selected: Each cleft personally chosen and crafted to maintain premier quality standards
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Optimal Performance Surface: Pre-prepared blade requires minimal knocking-in before match readiness
FAQs
Q: Is the MRF Power 2.0 Cricket Bat suitable for front-foot dominant players?
A: Yes, the MRF Power 2.0's mid-blade power zone makes it ideal for front-foot players who want controlled power while maintaining excellent timing and placement.
Q: What is the recommended playing level for the MRF Power 2.0 Cricket Bat?
A: The MRF Power 2.0 is suitable for serious club cricketers to first-class players who appreciate a traditional profile with balanced performance across all formats.
Q: How much knocking-in does the MRF Power 2.0 Cricket Bat require before match play?
A: The MRF Power 2.0 comes pre-prepared but requires approximately 3-4 hours of knocking-in with a mallet followed by gradual net sessions before full match readiness.
Q: Does the MRF Power 2.0 Cricket Bat perform better on specific pitch conditions?
A: The MRF Power 2.0's balanced design performs consistently across various pitch conditions, though its mid-blade power zone particularly excels on medium to good batting surfaces.