22C-D060A103 AB AB PowerFlex 400 30kW 40HP AC Drive
⇒ Click here for good price 22C-D022N103
Brand/Manufacturer | AB/USA |
Part Number |
22C-D022N103 |
Alternate Part Number |
22C-D022N103 |
Description | PowerFlex 400 30kW 40HP AC Drive |
Dimennsions | 7.6cm x 15.4cm x 20.2cm |
Weight | 1.1kg |
Product Details
22C-D022N103 Specification
Efficiency: 97.5% at rated amps, nominal line voltage
Output Frequency: 0-320 Hz (programmable)
Control Inputs
Digital:
Quantity: (3) Semi-programmable; (4) Programmable
Type
Source Mode (SRC): 18-24V = ON, 0-6V = OFF
Sink Mode (SNK): 0-6V = ON, 18-24V = OFF
Analog:
Quantity: (1) Isolated, –10 to 10V or 4-20mA; (1) Non-isolated, 0 to 10V or 4-20mA
Specification
Resolution: 10-bit
0 to 10V DC Analog: 100k ohm input impedance
4-20mA Analog: 250 ohm input impedance
External Pot: 1-10k ohm, 2 Watt minimum
Control Outputs
Relay: Quantity: (2) Programmable Form C
Resistive Rating: 3.0A at 30V DC, 3.0A at 125V, 3.0A at 240V AC
Inductive Rating: 0.5A at 30V DC, 0.5A at 125V, 0.5A at 240V AC
Optional Relay Card:
Quantity: (6) Optional Programmable Form A (Not available for Frame C drives)
Specification
Resistive Rating: 0.1A at 30V DC Class II circuits, 3.0A at 125V, 3.0A at 240V AC
Inductive Rating: 0.1A at 30V DC Class II circuits, 3.0A at 125V 3.0A at 240V AC
AB News
Data Analytics Start with Smart Instruments
Industrial Ethernet protocols are the top way to gather smart-instrument data, and advancements will allow better implementation with two-wire instruments.
The Industrial Internet of Things (IIoT) is the use of smart instruments to enhance industrial processes through real-time analytics. It requires the generation of massive amounts of big data, which is collected and stored in host systems for evaluation. Main sources of this data are the smart instruments installed throughout plants and facilities.
These instruments transmit basic process variables — along with extended data such as calibration parameters, diagnostics and other information — over digital networks. This data becomes valuable when analyzed by end users in the context of a specific process, permitting them to perform predictive maintenance, reduce downtime and make other operational improvements.
This description assumes every smart instrument is connected via a digital network, but in many instances, the information present in the instruments is unavailable because of communication protocol limitations. Bridging the gap between smart instruments and data repositories is where industrial Ethernet protocols such as EtherNet/IP™ and PROFINET® enter the picture.
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