Keterangan
Description
The HIMA K 9203A is a high-reliability circulation fan drawer designed for industrial rack-mount environments. This unit features a 3-axis fan configuration and includes an integrated run monitor to ensure continuous operation and system health feedback. It is engineered for 24 VDC power systems, providing active cooling for sensitive electronic equipment housed in standard 19-inch racks.
Features
- Integrated 3-axis fan assembly for efficient airflow distribution.
- Built-in run monitoring functionality for system status reporting.
- Robust construction using anodized aluminum for durability and heat dissipation.
- Designed for standard 19-inch rack integration (1 RU height).
- Long service life with an estimated 62,500 hours of operation at 40 degC.
Technical Specifications
| Product Model |
K 9203A |
| Operating Voltage |
24 VDC (-15 to +20 %, rpp <= 15 %) |
| Air Flow |
300 m3/h |
| Rated Speed |
2800 min-1 |
| Sound Pressure Level |
Approx. 55 dB(A) |
| Ambient Temperature |
-20 to +70 degC |
| Form Factor |
19-inch, 1 RU |
| Material |
Anodized Aluminum |
Installation Guidelines
- Ensure the unit is mounted in a standard 19-inch rack cabinet with adequate clearance for air intake and exhaust.
- Verify that the power supply matches the 24 VDC input requirements before connection.
- Maintain proper grounding of the rack assembly to prevent EMI interference.
- Ensure the ventilation path is not obstructed by cables or other hardware to maintain the rated 300 m3/h airflow.
- Power down the system before inserting or removing the fan drawer to prevent electrical arcing or damage to the monitoring circuitry.
FAQ
What is the primary function of the K 9203A?
The K 9203A is a forced-air cooling module designed to maintain optimal operating temperatures for HIMA control systems and associated rack-mounted electronics.
Does this unit include monitoring?
Yes, the unit features an integrated run monitor that allows the control system to detect fan failure or loss of rotation, ensuring that cooling issues can be addressed before equipment overheating occurs.