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Omron R88D R88DUP15LAAC10

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R88DUP15LAAC10

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The R88DUP15LAAC10 from Omron is engineered as a servo driver tailored for a motor power capacity of 300 watts. Through photo-isolation, it allows signal compatibility with TTL and 24 VDC, optimizing flexibility for various applications.

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Technical specifications for R88DUP15LAAC10

ManufacturerOmron
Product LineR88D
Part NumberR88DUP15LAAC10
Weight12.00 lbs (5.44 kg)
Product CategoryServo Driver
Supported Motor Power Range300 W
Maximum Cable LengthUp to 20 meters between driver and motor
Heat Generation70 W
Input Signal CompatibilityTTL, 24 VDC, with photo-isolation
Position Feedback MechanismOptical encoder with 2,048 pulses per revolution
Feedback Signal OutputsA-, B-, Z-phase line driver, RS-422A
Speed Signal Monitoring Output0.5 V per 1,000 r/min
Steady-State Output Current4.8 A
Peak Output Current Capacity15 A
Electrical Input Specifications100/115 VAC single-phase (85–127 V), 50/60 Hz
Regulation ApproachFully digital control
Permissible Load InertiaMaximum 20 times the rotor’s inertia
PWM CharacteristicsIGBT-based, operating at 7.8 kHz

In the realm of automation, the Omron R88DUP15LAAC10 is a robust servo driver specifically designed to manage motor requirements of up to 300 watts. This unit facilitates communication between the driver and the motor, supporting cable lengths extending to 20 meters. The driver's weight measures approximately 1.5 kg, contributing to its easy handling during installation. It has a heat generation rate of 70 watts, ensuring efficient thermal performance.

Designed for compatibility, the R88DUP15LAAC10 accepts input signals ranging from TTL to 24 VDC, enhanced by its photo-isolation feature. It employs an optical encoder as its position feedback mechanism for precision in operation, achieving a resolution of 2,048 pulses per revolution. This feedback allows for accurate monitoring through various output signals, including line driver outputs for A-, B-, and Z-phase and an RS-422A interface.

Speed monitoring is achievable with the driver delivering 0.5 V for every 1,000 r/min, offering analytics on motor performance. The servo driver maintains a steady-state output current of 4.8 A while surging up to a peak of 15 A when necessary.

It operates on electrical specifications of 100/115 VAC in a single-phase configuration, with an input range of 85 to 127 V, and is compatible with both 50 and 60 Hz power supplies. The regulation method utilized is fully digital control, enabled by its IGBT-based PWM characteristics, functioning at a frequency of 7.8 kHz. Also, the unit can accommodate load inertia up to 20 times that of the rotor, making it a versatile choice for various applications requiring efficient servo control.