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The Allen Bradley 1606-XLE80E Power Supply is an industrial power supply used to provide DC power for automation and control equipment. It belongs to the Allen Bradley 1606 power supply family and can serve as the DC power source for PLC systems, I/O equipment, sensors, relays, communication devices, and other compatible control components.
In an industrial control cabinet, the power supply establishes the low-voltage electrical network required by the automation system. Incoming electrical power is converted into a regulated DC supply, which is then distributed to the connected control loads.
The 1606-XLE80E is particularly relevant to control cabinets where dependable DC power distribution and efficient use of panel space are important. For replacement work, the input requirements, output characteristics, connected load, and cabinet installation conditions should be checked before selecting the unit.
| Parameter | Specification |
|---|---|
| Manufacturer | Allen Bradley |
| Model | 1606-XLE80E |
| Product Family | Allen Bradley 1606 |
| Product Type | Industrial Power Supply |
| Primary Function | DC Power Supply |
| Application | Industrial Automation / Control Systems |
| Dimensions | 124 × 32 × 102 mm |
| Weight | 0.43 kg |
The 1606-XLE80E is intended for industrial control applications where automation equipment requires a dedicated DC power source.
Key characteristics include:
The 1606-XLE80E operates as the power-conversion stage between the cabinet’s incoming electrical supply and the low-voltage DC control circuit.
A simplified arrangement is:
AC Input → 1606-XLE80E → DC Output → Control Equipment
The incoming electrical power enters the power supply and is processed through its internal conversion circuitry. The output stage then delivers DC power to the connected automation equipment.
The resulting DC supply can be distributed through terminal blocks or other suitable cabinet wiring to individual loads. These may include PLC components, I/O modules, sensors, relays, communication equipment, and other devices with compatible electrical requirements.
The power supply therefore forms part of the electrical infrastructure of the control system rather than the logic-processing layer.
The 1606-XLE80E can be positioned between the cabinet’s primary power distribution and its low-voltage control equipment.
Incoming Power → 1606-XLE80E → DC Distribution → PLC / I/O / Sensors / Relays / Communication Equipment
| System Component | Typical Function |
|---|---|
| 1606-XLE80E | Supplies DC control power |
| PLC | Executes automation logic |
| I/O Modules | Interfaces with field signals |
| Sensors | Provides process or machine feedback |
| Relays | Performs switching and interface functions |
| Communication Equipment | Exchanges control-system data |
| Terminal Blocks | Distributes DC power |
| HMI | Provides operator monitoring and control |
The actual distribution arrangement depends on the power requirements and protection design of the installation.
The 1606-XLE80E can be used in control cabinets across a range of industrial automation applications.
| Application | Typical Use |
|---|---|
| Machine Automation | PLC and control-circuit power |
| Factory Automation | DC distribution for automation equipment |
| Packaging Machinery | Powering control and sensing devices |
| Material Handling | Conveyor and handling equipment |
| Process Equipment | Instrumentation and control circuits |
| Industrial Robotics | Control-system power distribution |
| Building Control | Low-voltage automation equipment |
| Retrofit Projects | Replacement of existing power supplies |
Power supply maintenance should focus on the complete DC distribution circuit rather than the power supply alone.
Before installation or replacement, technicians should:
If several automation devices experience simultaneous resets or dropouts, the DC power distribution should be investigated before replacing individual PLC or I/O components.
The power supply normally operates together with several other components within the automation cabinet.
| Component | Function |
|---|---|
| Allen Bradley PLC | Control logic execution |
| Digital I/O Modules | Discrete field signal handling |
| Analog I/O Modules | Process signal acquisition |
| Sensors | Machine and process measurement |
| Relays | Electrical switching and isolation |
| HMI | Operator interface |
| Communication Modules | Industrial network communication |
| Terminal Blocks | DC power distribution |
The connected components must be compatible with the electrical output characteristics of the power supply.
| Model / Product Family | Product Type | Typical Application |
|---|---|---|
| Allen Bradley 1606-XLE80E | Industrial Power Supply | Automation control power |
| Allen Bradley 1606-XLE240E | Industrial Power Supply | Higher-capacity DC power applications |
| Allen Bradley 1606-XLE120E | Industrial Power Supply | Industrial control cabinets |
| Allen Bradley 1606-XLE480E | Industrial Power Supply | Higher-power automation systems |
| Allen Bradley 1606-XLP Series | Industrial Power Supply | Compact control-panel applications |
Model selection should be based on the required input conditions, output voltage, load current, installation method, and system environment.
The 1606-XLE80E is used as an industrial power supply for providing DC power to compatible automation and control equipment. It can form part of the power-distribution system serving PLCs, I/O modules, sensors, relays, and communication devices.
It normally sits between the incoming electrical supply and the low-voltage control circuit. Its DC output can be distributed to the PLC and other compatible loads through the cabinet’s power-distribution and protection system.
The replacement should be checked against the original model, input requirements, output requirements, total connected load, wiring arrangement, protection, and cabinet installation conditions. Matching only the physical appearance of a power supply is not sufficient for a safe replacement.
Yes. Insufficient or unstable DC power can cause controllers, I/O modules, communication devices, and other electronics to reset or operate abnormally. When several devices show simultaneous faults, checking the common DC power circuit can help identify the source.