Synchronized acquisition
Torque, turns, angle, speed and time form live torque-turn and torque-time signatures.

ENGINEERING TECHNOLOGY
Contact geometry and gripping force are configured for OD, surface material, grip length and target torque—balancing stable torque transfer with tubular protection.
Torque sensors, encoders, acquisition/control electronics, software and machinery capture torque, turns, speed and time in synchronism. Connection-specific logic can include shoulder-point or signature-inflection detection, acceptance windows, stop/unload control and joint-by-joint records.
Power units, valves, actuators, pressure protection and motion interlocks are configured around load, speed, duty cycle and site conditions.
Digital and analog I/O, PLCs, control boards, HMIs and software connect handling, positioning, make-up, forming, inspection, marking and production records, with interlocks and data interfaces configured for the project.
Mechanical design, hydraulics, electrical controls, measurement and software are engineered as one system—from configured standalone machines to integrated production lines.
TORQUE-TURN CONNECTION CONTROL
The same requirement may be described as torque monitoring, torque-turn recording, joint analysis or make-up quality control. DCCK defines what must be measured, evaluated, controlled and retained from the connection and operating procedure.
Torque, turns, angle, speed and time form live torque-turn and torque-time signatures.
Connection-specific logic can evaluate shoulder point, signature inflection, shoulder torque, final torque, delta torque and turns after shoulder.
Out-of-window, under-torque, over-torque and abnormal make-up conditions can trigger alarms, stop or unload actions and joint records.
QUALITY & DELIVERY