Description
The Banner Engineering MIAD9FQ is a MINI-BEAM NAMUR glass fiber optic photoelectric sensor designed for intrinsically safe applications. It operates on a 5–15 VDC supply and provides a constant current NAMUR output. The sensing range depends on the connected glass fiber assembly.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
Banner Engineering |
| Category |
Sensors & Switches |
| Part Number |
MIAD9FQ |
| Subcategory |
Photoelectric |
| Series |
MINI-BEAM NAMUR |
| Sensing Configuration |
Glass Fiber Optic |
| Light Source |
Infrared LED |
| Supply Voltage |
5–15 VDC |
| Output Type |
NAMUR Constant Current |
| Minimum Response Time |
5 ms |
| Connection Type |
4-Pin M12 Integral QD |
| Housing Style |
Rectangular with M18 Thread |
| Housing Material |
Thermoplastic |
| Environmental Rating |
IP67 |
| NEMA Rating |
NEMA 4X |
| Operating Temperature |
-40°C to +70°C |
| Relative Humidity |
90% at 50°C |
| Intrinsically Safe |
Yes |
| Weight |
0.09 lbs |
Information About MIAD9FQ
The MIAD9FQ is part of the Banner Engineering MINI-BEAM NAMUR series and is intended for use in hazardous locations with approved intrinsically safe switching amplifiers. It supports glass fiber terminations and operates with a constant current output of ≤1 mA in dark condition and ≤2 mA in light condition. The sensor features an infrared LED light source and a 4-pin M12 integral quick-disconnect connection. Its thermoplastic rectangular housing with M18 threaded mount is rated IP67 and NEMA 4X for industrial environments.
Key Features:
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NAMUR constant current output: ≤1 mA (dark), ≤2 mA (light).
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5–15 VDC supply voltage: Designed for intrinsically safe circuits.
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Glass fiber optic compatibility: Accepts glass fiber terminations only.
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Intrinsically safe design: Suitable for hazardous area applications.
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Infrared LED source: Stable optical sensing performance.
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M12 integral quick disconnect: 4-pin connector interface.
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IP67 protection rating: Sealed housing for industrial use.
The MIAD9FQ delivers the reliability and precision required for intrinsically safe industrial fiber optic sensing applications.