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PARKER COTTE
  • PDC BITS

  • Directional Bits

  • Rotary Steerable Bits

  • Hypercool Bits

  • Rotary Steerable Bits

Drill Bits PDC Bits

PDC Bits

PDC Stander Bits

Steel Series bits are engineered for enhanced durability in high-impact environments. These bits offer configuration flexibility, featuring advanced profiles such as shorter makeup lengths, thinner yet higher blades, and optimized hydraulic designs to meet a broad range of drilling requirements. The shortened makeup length allows for a reduced bit-to-bend distance, improving directional steering capability (DSL) and facilitating angle build-up for efficient curve completions. Ideal for demanding applications, Steel Series bits deliver reliable performance and precision.

Direction Bits

Directional Series bits are specifically designed to consistently achieve targeted build rates in curve sections while minimizing unnecessary trips in lateral applications. Available in both steel and matrix body construction, these bits incorporate advanced torque fluctuation control elements to enhance steerability, maintain borehole consistency, and prevent unintended dropping or building events. With optimized designs for maintaining verticality in high dip formations, these bits are ideal for extended lateral applications, delivering reliable performance and reducing operational downtime.

Rotatory Steerable Bits

Rotary Steerable Series bits are available in both steel and matrix body construction, engineered to optimize performance for either "Point the Bit" or "Push the Bit" rotary steerable systems (RSS) and other directional objectives. Each bit is meticulously designed to ensure seamless integration with the bottom hole assembly (BHA) while delivering a responsive, high-performance cutting structure. Optional features enhance stability, durability, and directional precision, making these bits ideal for demanding drilling applications where control and performance are critical to success.

Hypercool Bits

Hypercool Series bits are designed for high performance under extreme thermal loading. They are optimized using computational fluid dynamics (CFD) to provide large fluid cooling capacity at all cutting surfaces, extracting maximum performance from diamond tables and mitigating one of the primary reasons for premature cutter failure. Improved durability and cutter life, high ROP, and enhanced cuttings cleaning efficiency are pushed to the limit in this advanced bit series.

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