The Allen Bradley 1746-N2 serves as a non-functional, physical blanking plate and protective shield designed for unpopulated I/O module tracks inside standard SLC 500 programmable logic controller chassis. This physical insertion piece locks into empty slots on the rack backplane, closing off structural openings to maintain electrical internal boundary separations. By blocking off unutilized slots, it shields the primary system motherboard from destructive airborne debris, scrap shavings, and loose assembly hardware. We offer this component exclusively as a 100% brand-new, original unit to guarantee a snap-lock physical fit and perfect physical alignment inside active factory panels.
| Parameter | Specification |
| Manufacturer | Allen Bradley |
| Product Line | SLC 500 System Components |
| Part Number | 1746-N2 (Series A) |
| Condition | 100% Brand New Original |
| Hardware Classification | Slot Filler / Blank Cover Module |
| System Compatibility | All Allen Bradley SLC 500 PLC Chassis |
| Primary Utility | Occupies unused slots, shields backplane pins |
| Electrical Function | Completely non-functional (no internal circuit boards) |
| Electrical Draw Profile | Zero mA (draws no power from the 5V or 24V backplane rails) |
| Mounting Configuration | Standard single-slot chassis mount |
| Operating Temperature Range | 0 to +60 degrees Celsius |
| Storage Temperature Limits | -40 to +85 degrees Celsius |
| Relative Ambient Humidity | 5 percent to 95 percent non-condensing |
| Form Factor Scope | Identical to a standard SLC 500 I-O module shell |
| Net Weight per Piece | 0.09 kg (0.19 lbs) |
| Compliance Approvals | UL, CSA, CE Compliant |
Prevents Destructive Backplane Short Circuits: In active industrial environments, loose copper wire strands, metallic dust, and assembly screws drop through exposed panels. This non-conductive module physically covers the sensitive, exposed gold pin arrays on the chassis motherboard, stopping accidental tool contact and short circuits.
Preserves Internal Cooling and Airflow Curves: An unsealed slot disrupts the convection thermal path planned for sealed enclosures, creating air pressure drops. Inserting this module restricts airflow exhaust lines to the intended vents, which routes cooling drafts past high-heat processor and power supply units.
Blocks Contaminant Build-Up: The solid physical frame keeps floating grease mist, ambient warehouse dust, and abrasive particulate out of empty connector pin female receptacles. This preserves contact surfaces, ensuring clean, zero-resistance electrical connections when you install an active I/O module during future panel expansions.
Provides Mechanical Rigidity: The module uses standard upper and lower chassis lock tabs to secure itself to the guide rails. This design reinforces the physical slot layout of the chassis frame and stops adjacent module casings from twisting under heavy structural machine vibration.
Does the 1746-N2 contain any active diagnostic circuitry or pull electrical current?
No. The 1746-N2 represents a completely passive, hollow plastic housing molded to look like a standard SLC 500 module. It features no internal printed circuit boards, green signaling LEDs, or gold interface pins, drawing zero electrical milliamps from the system power supply rails. Note: Certain legacy text entries list partial electrical values for this part number due to generic database classification errors.
When should I use this slot filler instead of leaving the space open?
You should insert a 1746-N2 filler module into every unpopulated I/O slot in your SLC 500 rack. Leaving slots wide open exposes the internal backplane motherboard to fine metallic dust, condensation, and accidental tool damage, which breaches standard industrial safety regulations.
Can I insert or pull this blank filler piece while the SLC 500 PLC runs?
Yes. Because this product has no electronic components and makes no contact with live backplane circuit pins, you can install or remove it safely without powering down the controller chassis. However, avoid sticking fingers or tools inside the exposed slot opening during insertion.
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