1794-IM16 Allen-Bradley FLEX I/O Digital Input Module
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Dimensions: 6.2 x 5.2 x 9.7 cm
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Country of origin: USA
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Payment: T/T, Western Union
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Shipping port: Xiamen
The Allen-Bradley 1794-IM16, also cataloged as the 1794-IM16 Digital Input Module, operates as a dedicated hardware component for high-voltage alternating current discrete signal conversion within FLEX I/O platforms. The assembly monitors 16 independent, nonisolated AC voltage points simultaneously, transforming raw field voltage transitions into binary status registers. These logic states are updated directly across the localized terminal base bus architecture to the active network adapter or system controller without executing cyclic communication delays.
Component Code Definition
The specific alphanumeric syntax maps out the structural and electronic configuration of the module. The identifier "1794" dictates physical compliance with the standard industrial FLEX I/O terminal block and mounting rail systems. The sequence "IM" designates an alternating current discrete input circuit design, while the terminal suffix "16" specifies the 16 point channel high-density routing layout integrated into the IP20 housing.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | 1794-IM16 |
| Brand | Allen-Bradley |
| Origin | USA |
| Weight | 0.1 kg |
| Shipping Dimensions | 6.2x5.2x9.7 cm |
| Operating Temp | 0 to 55 deg C |
| Power Consumption | Supported by 32 mA @ 5 V DC Flexbus current draw and field AC loops |
| Number of Inputs | 16 Channels, nonisolated |
| On-state Voltage, min | 159 V AC |
| On-state Voltage, nom | 240 V AC |
| On-state Voltage, max | 264 V AC |
| On-state Current, min | 5.30 mA |
| On-state Current, max | 13.29 mA |
| Nominal Input Impedance | 22.2 kOhms |
| Nominal Input Current | 11 mA @ 240 V AC |
| Power Dissipation, max | 6 W @ 264 V AC |
| Enclosure Form Factor | Open style IP20 architecture |
Deterministic Routing Logic
The hardware interface handles localized I/O density scaling by executing steady data acquisition routines directly over the local chassis base connector path. The unit operates within fixed backplane bus communication velocity Licences profiles to ensure stable transmission cycles over deterministic EtherNet/IP or ControlNet networks. The internal logic matrices comply with factory tracking variables to ensure complete firmware flash compatibility with upstream controller racks.
Packing Content
- 1 x 1794-IM16 high-density AC input module
- 1 x mechanical installation data guide
Technical Mounting Procedures
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DIN Rail Attachment Sequence
Angle the top retention groove of the open-style IP20 enclosure onto the upper lip of the DIN rail, then swing the lower block inward until the spring-loaded rail latch clicks.
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Terminal Base Insertion Sequence
Align the primary mechanical alignment keys on the lower module section with the matching slot profile on the terminal base unit, forcing the unit downward until the multi-pin connector locks.
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Nonisolated Signal Termination
Strip the 240 V AC field loop lines and terminate them into the appropriate high-voltage block paths, noting that all 16 channels share a common neutral return rail.
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Equipotential Enclosure Grounding Path
Verify a dedicated low-impedance copper strap directly bonds the mounting DIN rail track to the master panel enclosure ground bar to prevent high-frequency noise interference.
Frequently Asked Questions
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What physical restrictions govern the hot-swapping or live replacement of this 16 point card?
Removal and Insertion Under Power (RIUP) is permitted when using a matching base, but the external 240 V AC line loops must be completely isolated to eliminate electrical arcing risks across the backplane pins.
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How does the module respond if an active input line encounters a voltage drop down to 120 V AC?
The signal falls into an invalid zone below the 159 V AC minimum threshold, causing the optical isolation channel to switch off and register a logic zero inside the PLC image file.
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What type of electronic damage occurs if the maximum power dissipation limit of 6 W is continuously exceeded?
Continuous operation above 6 W causes thermal saturation of the input resistors, degrading internal components and causing communication drops or physical tracking failures.
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What state failure signature is reported to the host controller if the 5 V DC Flexbus current path drops out?
A loss of the 32 mA backplane current forces the network adapter to immediately trip a slot connection timeout error, clearing the input status bits across the application project tree.
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Can this nonisolated input module handle separate phase voltages across different input channels?
No. Because the 16 channels are nonisolated and share a common return, all incoming high-voltage AC inputs must originate from the same electrical phase loop to prevent phase-to-phase short circuits.
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What process resets a channel fault bit once an overvoltage condition on the line loop is cleared?
The module automatically reads the active line state and updates its logic table once the incoming field parameters settle back within the 159 to 264 V AC functional operating envelope.
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How does concurrent activation of all 16 channels affect the thermal balance in an unventilated box?
Full continuous operation at 264 V AC produces maximum heat output, demanding compliance with the 55 deg C operational ceiling and proper cabinet clearance dimensions.
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What method resolves an electronic keying verification error flagged during initial system commissioning?
The programmer must check the I/O configurations within the system software to verify that the firmware flash compatibility criteria exactly match the physical module label variables.
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Shipping & Returns
Shipping
- Emergency Dispatch: Same-day shipping for in-stock orders placed before 2:00 PM (GMT+8).
- Premium Carriers: Reliable global delivery via DHL, FedEx, and UPS to 150+ countries.
- Flexible Options: We support shipping via your own carrier account (DHL/FedEx/UPS).
- Industrial Packaging: Professional ESD protection and reinforced shock-absorbent packaging.
Returns
- 30-Day Window: Request a return within 30 days of receipt for eligible items.
- Condition: Items must be in their original, factory-sealed condition with all tags.
- Hassle-Free Process: Contact sales@maxwellplc.com for a return label and instructions.
- Fast Refunds: Approved refunds are processed to your original payment method within 10 days.
Warranty
Warranty
- 12-Month Guarantee: A comprehensive one-year warranty covers all functional defects.
- Authenticity: Every part is guaranteed 100% original, brand-new, and genuine.
- Expert Support: Dedicated technical assistance to verify and resolve any hardware issues.
- Peace of Mind: Long-term reliability support for all your mission-critical automation parts.
Warranty
Warranty
- 12-Month Guarantee: A comprehensive one-year warranty covers all functional defects.
- Authenticity: Every part is guaranteed 100% original, brand-new, and genuine.
- Expert Support: Dedicated technical assistance to verify and resolve any hardware issues.
- Peace of Mind: Long-term reliability support for all your mission-critical automation parts.
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Secure Payment
- Flexible T/T: 100% T/T for stock items; 30% deposit / 70% balance for lead-time orders.
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Secure Payment
Secure Payment
- Flexible T/T: 100% T/T for stock items; 30% deposit / 70% balance for lead-time orders.
- Local Friendly: RMB transfers are accepted if you have a local agent in China.
- Best Price: Our Best Price Guarantee ensures you get the most competitive market rates.
- Data Safety: All transactions are processed through encrypted and secure banking channels.