F6214 Hima Analog Input Module
| Item |
Specification |
| Product Model |
F6214 |
| Product Type |
Analog Input Module |
| Manufacturer |
HIMA |
| Country of Origin |
Germany |
| Place of Shipment |
Xiamen, China |
| Estimated Shipping Size |
2.5 × 12.7 × 20.3 cm |
| Weight |
0.1 kg |
| Input Voltage |
0 … 1.06 V |
| Digital Values |
0 mV = 0, 1 V = 3840 |
| Wait After Test |
100 ms |
| Shunt |
50 Ω; 0.05%; 0.125 W |
| Current Input |
T < 10 ppm/K; Part No. 00 0710500 |
| Input Resistance |
1 MΩ |
| Input Filter Time Constant (Approx.) |
10 ms |
| Transmitter Supply |
20 … 25 V, 0 … 22 mA |
| Short Circuit Current |
25 mA |
| Operating Error |
0.3% at 0 … +60 °C |
Ensure high availability and signal integrity by connecting passive transmitters redundantly to the F6214 HIMA Analog Input Module.
Implementation Steps
Step 1 - Transmitter Selection
Use passive (loop-powered) transmitters compatible with voltage input ranges supported by the F6214. Verify that transmitter output characteristics match the module's input specification.
Step 2 - Parallel Redundant Wiring
Connect two passive transmitters in parallel to the analog input channel. Each transmitter is wired through an individual precision shunt resistor, ensuring independent signal paths while maintaining redundancy.
Step 3 - Input Conditioning
Utilize the module's internal 50 Ω precision shunt and high input resistance (1 MΩ) to convert the transmitter current signal into a voltage signal without introducing significant loading effects.
Step 4 - Power Supply Integration
Provide transmitter supply voltage via the module's integrated transmitter supply (20-25 V, 0-22 mA). Confirm short-circuit protection limits (25 mA) to prevent damage during fault conditions.
Step 5 - Validation and Monitoring
After wiring, allow the specified stabilization time (wait after test: 100 ms) before signal evaluation. Verify correct digital scaling (1 V = 3840 counts) and monitor for deviations indicating transmitter or wiring faults.
Result
This redundant connection scheme increases system availability and fault tolerance by allowing continued operation in the event of a single transmitter or wiring failure, while maintaining measurement accuracy within the specified operating error of 0.3% across the operating temperature range.
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