PB1D002R109

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The PB1D002R109 by Sanyo Denki is a servo driver from the PB SANMOTION Servo Drivers series, compatible with multiple interface options, including EtherCAT and RS-485. It supports motor sizes from 42mm to 86mm and offers encoder resolutions of up to 16000 P/R. Its operating temperature spans 0C to 55C.

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Wake Industrial Warranty

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Product Description:

The Sanyo Denki's PB1D002R109 Servo Driver offers precise and reliable motor control. This servo driver is an essential component in achieving accurate and consistent performance. This driver works on DC power, which is suitable for systems requiring stable energy input. This servo driver supports an excitation current rating of 2A and delivers optimal performance across various operational tasks.

The maximum current consumption on the servo driver is limited to 2.7 A for efficient and safe operational limits. This servo driver has a combined RS-485 half-duplex and parallel I/O interface which allows fast data transmissions and simpler integration into complex automated systems. The cooling efficiency of this servo driver is managed by an aluminum heatsink. This provides passive cooling without the need for any additional cooling fans. This design also ensures stable thermal conditions during steady operation, thereby reducing the risk of overheating. The PB1D002R109 Servo Driver also has built-in regenerative control capabilities. In regenerative mode, this advanced capability recycles the excess energy during motor braking to enhance energy efficiency. This feature thus extends the lifetime of the driver and minimizes energy consumption.

With vibration resistance rated up to 0.5G, the PB1D002R109 servo drive gives stability and consistent performance under mild mechanical stress. The input voltage range of DC24V to DC36V and a tolerance of ±10% of this servo driver ensure flexible power compatibility. This servo driver operates reliably within the temperature range of 0C to +55C. This proves the servo driver’s adaptability to multiple industrial settings. The storage temperature range extends from -20C to +70C which allows flexibility in both logistics and inventory management. The high humidity tolerance of 90% RH (non-condensing) further widens the operational environments suitable for this servo driver.

Cooling
Aluminum heatsink (passive)
Input Power Supply
Single-phase 100–115 VAC; Three-phase 200–230 VAC
Max Current Consumption
2.7 A
Motor Excitation Current
2 A
Operating Humidity
90% RH (non-condensing)
Operating Temperature
0°C to +55°C
Regenerative Control
Yes, energy recycling during braking
Storage Temperature
-20°C to +70°C
Supported Interfaces
EtherCAT; RS-485 half-duplex; Parallel I/O; Pulse train
Vibration Resistance
Up to 0.5 G

Frequently Asked Questions about PB1D002R109:

Q: How does the regenerative control feature of the PB1D002R109 improve energy efficiency?

A: Regenerative control recycles excess braking energy back into the system, reducing power consumption and enhancing the lifespan of the servo driver.

Q: Why is the combination of RS-485 half-duplex and parallel I/O interfaces important?

A: This combination enables high-speed data communication and seamless integration into automation systems, ensuring precise and reliable motor control.

Q: What role does the aluminum heatsink play in the cooling mechanism?

A: The aluminum heatsink passively dissipates heat, preventing thermal buildup without requiring active cooling, which enhances system reliability.

Q: How does the PB1D002R109 Servo Driver handle voltage fluctuations?

A: With a DC24V–DC36V input range and ±10% tolerance, the driver ensures stable operation even under minor voltage fluctuations.

Q: Why is vibration resistance up to 0.5G significant for industrial applications?

A: It ensures stable performance under mechanical stress, making the PB1D002R109 suitable for dynamic industrial environments.


Internal Product Review

  • ‘‘The PB1D002R109 Servo Driver by Sanyo Denki delivers accurate motor control with a DC24V–DC36V input range and RS-485 communication. Its 2.7A max current ensures efficiency, while the 0.5G vibration resistance enhances stability. The regenerative braking optimizes energy usage, making it ideal for demanding automation and robotics applications.’’

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