Allen-Bradley 2198-P141 Kinetix 5700 DC Power
Configured for high-voltage DC bus generation and energy distribution in Kinetix 5700 servo systems, the Allen-Bradley 2198-P141 (2198-P141 Power Supply) provides direct physical/electrical execution for three-phase AC rectification and power delivery.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | 2198-P141 |
| Brand | Allen-Bradley |
| Origin | USA |
| Weight | 7.71 kg (17.00 lbs) |
| Dimensions | Compact Kinetix 5700 DC-bus power supply format |
| Operating Temp | 0 to 50 deg C |
| Power Consumption | 31 kW continuous output (93 kW peak output) |
| Input Voltage | 324-528 VAC three-phase (47-63 Hz) |
| Output Voltage | 450-747 VDC bus output |
| System Efficiency | 99% |
| Network Interface | Dual Ethernet ports supporting Device Level Ring (DLR) |
Backplane Bus Communication Velocity and EtherNet/IP Mapping
The Allen-Bradley 2198-P141 power module communicates system diagnostics, bus voltage telemetry, and thermal status over dual EtherNet/IP ports configured for deterministic Device Level Ring (DLR) network topologies. Integrated firmware flash compatibility allows continuous cyclic parameter transfers to Logix 5000 controllers without fieldbus latency. Onboard power electronics convert incoming AC power with 99% efficiency while maintaining internal bus capacitor pre-charge sequences and overvoltage clamping to safeguard connected dual-axis and single-axis inverter modules across the shared DC bus bar.
Frequently Asked Questions
Q: How is the 2198-P141 connected to adjacent Kinetix 5700 servo drives in the same enclosure rack?
A: DC power and 24 VDC control power are distributed across adjacent modules via a shared-bus bar system that connects directly to top-mounted terminal lugs using a tool-free snap-fit arrangement.
Q: What protective measures should be taken regarding AC line reactors for the 2198-P141 input?
A: To suppress transient voltage spikes and limit line current harmonics, an appropriately rated AC line reactor or line filter must be installed in series with the three-phase 324-528 VAC input power leads.
Field Installation Guidelines
- Mount the power module vertically on the enclosure backplane, ensuring zero-stack side clearance alignment for proper DC bus bar interconnectivity.
- Connect incoming three-phase AC mains (324-528 VAC) to the primary power input terminals, observing proper phase sequence and earth grounding connections.
- Install and secure the shared DC bus bars across the power supply and all adjacent inverter modules, torquing terminal fasteners to manufacturer specifications.
- Connect dual EtherNet/IP network cables to integrate the module into the control system's ring topology for continuous system diagnostic monitoring.
- Ensure cabinet forced-air ventilation maintains ambient temperatures below 50 deg C to dissipate thermal losses during continuous 31 kW output operations.
Allen-Bradley 2198-P141 Kinetix 5700 DC Power
Allen-Bradley 2198-P141 Kinetix 5700 DC Power
Configured for high-voltage DC bus generation and energy distribution in Kinetix 5700 servo systems, the Allen-Bradley 2198-P141 (2198-P141 Power Supply) provides direct physical/electrical execution for three-phase AC rectification and power delivery.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | 2198-P141 |
| Brand | Allen-Bradley |
| Origin | USA |
| Weight | 7.71 kg (17.00 lbs) |
| Dimensions | Compact Kinetix 5700 DC-bus power supply format |
| Operating Temp | 0 to 50 deg C |
| Power Consumption | 31 kW continuous output (93 kW peak output) |
| Input Voltage | 324-528 VAC three-phase (47-63 Hz) |
| Output Voltage | 450-747 VDC bus output |
| System Efficiency | 99% |
| Network Interface | Dual Ethernet ports supporting Device Level Ring (DLR) |
Backplane Bus Communication Velocity and EtherNet/IP Mapping
The Allen-Bradley 2198-P141 power module communicates system diagnostics, bus voltage telemetry, and thermal status over dual EtherNet/IP ports configured for deterministic Device Level Ring (DLR) network topologies. Integrated firmware flash compatibility allows continuous cyclic parameter transfers to Logix 5000 controllers without fieldbus latency. Onboard power electronics convert incoming AC power with 99% efficiency while maintaining internal bus capacitor pre-charge sequences and overvoltage clamping to safeguard connected dual-axis and single-axis inverter modules across the shared DC bus bar.
Frequently Asked Questions
Q: How is the 2198-P141 connected to adjacent Kinetix 5700 servo drives in the same enclosure rack?
A: DC power and 24 VDC control power are distributed across adjacent modules via a shared-bus bar system that connects directly to top-mounted terminal lugs using a tool-free snap-fit arrangement.
Q: What protective measures should be taken regarding AC line reactors for the 2198-P141 input?
A: To suppress transient voltage spikes and limit line current harmonics, an appropriately rated AC line reactor or line filter must be installed in series with the three-phase 324-528 VAC input power leads.
Field Installation Guidelines
- Mount the power module vertically on the enclosure backplane, ensuring zero-stack side clearance alignment for proper DC bus bar interconnectivity.
- Connect incoming three-phase AC mains (324-528 VAC) to the primary power input terminals, observing proper phase sequence and earth grounding connections.
- Install and secure the shared DC bus bars across the power supply and all adjacent inverter modules, torquing terminal fasteners to manufacturer specifications.
- Connect dual EtherNet/IP network cables to integrate the module into the control system's ring topology for continuous system diagnostic monitoring.
- Ensure cabinet forced-air ventilation maintains ambient temperatures below 50 deg C to dissipate thermal losses during continuous 31 kW output operations.
