Implementing 3-Switch XOR Ladder Logic with Internal Bit
Implement a 3-SPST switch XOR light circuit in LogixPro or RSLogix 500 using an internal relay bit. Includes truth tables, boolean equations, and verified.
Engineered for high-speed thermal monitoring within the Sysmac automation platform, the Omron NX-TS3102 provides precise thermocouple signal processing for industrial temperature control loop applications. This 4-point thermocouple input module features high-density screwless push-in connections, minimizing installation time and wiring errors. Operating on the high-speed NX bus, it delivers an ultra-fast conversion speed of 10 ms per unit with a resolution limit of 0.01 degC, making it suitable for processes requiring strict thermal regulation and fast response loops.
| Parameter | Specification |
|---|---|
| Manufacturer | Omron |
| Model | NX-TS3102 |
| Series | NX Series |
| Number of Points | 4 points |
| Input / Sensor Types | Thermocouple (K, J, T, E, L, U, N, R, S, WRe5-26, PLII) |
| Conversion Time | 10 ms / Unit |
| Resolution | 0.01 degC max. |
| Input Impedance | 20 kOhm minimum |
| Absolute Maximum Input Rating | +/-130 mV |
| Isolation Method | Input-to-NX bus: Transformer (Power), Digital Isolator (Signal) Between inputs: Transformer (Power), Digital Isolator (Signal) |
| NX Unit Power Consumption | Connected to CPU Unit: 1.55 W max. Connected to Coupler Unit: 1.10 W max. |
| Terminal Block Configuration | Screwless clamping terminal block (16 terminals x 2) |
| Dimensions (W x H x D) | 24 mm x 100 mm x 71 mm |
| Net Weight | 0.14 kg |
| Shipping Weight (Calculated) | 1.50 kg |
The NX-TS3102 is designed for systems utilizing Sysmac Studio. While physical pinouts match standard NX analog units, the NX-TS3102 provides full channel-to-channel isolation. If your system does not require absolute channel isolation or has a lower point-density demand, the 2-point NX-TS2102 serves as a direct functional alternative within the same hardware footprint.
To ensure the stated conversion accuracy of 0.01 degC, the module requires a warm-up period of 45 minutes after the control panel is energized. Cold Junction Compensation (CJC) accuracy relies on localized ambient temperature readings. Therefore, do not mount the module directly above high-heat-dissipating equipment like variable frequency drives (VFDs) or large system power supplies.
When routing thermocouple sensor leads, always use dedicated shielded thermocouple extension wires. Run these signals in separate, grounded metal conduits away from high-voltage AC cables to prevent electromagnetic noise from causing temperature signal drift. Utilize solid wire or stranded wire terminated with ferrules for the screwless push-in clamping terminals to ensure gas-tight, vibration-proof electrical contacts.
CRITICAL WARNING
Isolate and lock out all control system power sources before mounting, removing, or wiring the module. Working on live NX bus rails can damage internal digital isolator circuits and cause CPU bus fault states.
Mount to DIN Rail
Align the slide guide on the back of the NX-TS3102 with the DIN rail, then push the module flat against the rail until the DIN track hook clicks into place.
Connect the Bus
Slide the module laterally along the DIN rail until its integrated NX bus connector securely engages with the adjacent CPU or interface coupler module.
Insert Thermocouple Wiring
Press the orange terminal release tab using a flathead screwdriver to open the spring clamp, insert the stripped conductor or ferruled wire, and release the tab to secure the connection.
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Engineered for high-speed thermal monitoring within the Sysmac automation platform, the Omron NX-TS3102 provides precise thermocouple signal processing for industrial temperature control loop applications. This 4-point thermocouple input module features high-density screwless push-in connections, minimizing installation time and wiring errors. Operating on the high-speed NX bus, it delivers an ultra-fast conversion speed of 10 ms per unit with a resolution limit of 0.01 degC, making it suitable for processes requiring strict thermal regulation and fast response loops.
| Parameter | Specification |
|---|---|
| Manufacturer | Omron |
| Model | NX-TS3102 |
| Series | NX Series |
| Number of Points | 4 points |
| Input / Sensor Types | Thermocouple (K, J, T, E, L, U, N, R, S, WRe5-26, PLII) |
| Conversion Time | 10 ms / Unit |
| Resolution | 0.01 degC max. |
| Input Impedance | 20 kOhm minimum |
| Absolute Maximum Input Rating | +/-130 mV |
| Isolation Method | Input-to-NX bus: Transformer (Power), Digital Isolator (Signal) Between inputs: Transformer (Power), Digital Isolator (Signal) |
| NX Unit Power Consumption | Connected to CPU Unit: 1.55 W max. Connected to Coupler Unit: 1.10 W max. |
| Terminal Block Configuration | Screwless clamping terminal block (16 terminals x 2) |
| Dimensions (W x H x D) | 24 mm x 100 mm x 71 mm |
| Net Weight | 0.14 kg |
| Shipping Weight (Calculated) | 1.50 kg |
The NX-TS3102 is designed for systems utilizing Sysmac Studio. While physical pinouts match standard NX analog units, the NX-TS3102 provides full channel-to-channel isolation. If your system does not require absolute channel isolation or has a lower point-density demand, the 2-point NX-TS2102 serves as a direct functional alternative within the same hardware footprint.
To ensure the stated conversion accuracy of 0.01 degC, the module requires a warm-up period of 45 minutes after the control panel is energized. Cold Junction Compensation (CJC) accuracy relies on localized ambient temperature readings. Therefore, do not mount the module directly above high-heat-dissipating equipment like variable frequency drives (VFDs) or large system power supplies.
When routing thermocouple sensor leads, always use dedicated shielded thermocouple extension wires. Run these signals in separate, grounded metal conduits away from high-voltage AC cables to prevent electromagnetic noise from causing temperature signal drift. Utilize solid wire or stranded wire terminated with ferrules for the screwless push-in clamping terminals to ensure gas-tight, vibration-proof electrical contacts.
CRITICAL WARNING
Isolate and lock out all control system power sources before mounting, removing, or wiring the module. Working on live NX bus rails can damage internal digital isolator circuits and cause CPU bus fault states.
Mount to DIN Rail
Align the slide guide on the back of the NX-TS3102 with the DIN rail, then push the module flat against the rail until the DIN track hook clicks into place.
Connect the Bus
Slide the module laterally along the DIN rail until its integrated NX bus connector securely engages with the adjacent CPU or interface coupler module.
Insert Thermocouple Wiring
Press the orange terminal release tab using a flathead screwdriver to open the spring clamp, insert the stripped conductor or ferruled wire, and release the tab to secure the connection.
Global Express Shipping
Returns & Warranty
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For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .
| Country of origin |
Japan
|