Description
The Part Number for this device is 157152B-01L, categorized under C Series Analog Output. Specifically, it is the model NI-9260, which is described as an NI 9260 BNC, +/-1 V, 24-Bit, 51.2 kS/s/ch, 2-Ch AO Module. This module offers versatility in connectivity with both BNC and Mini-XLR options, with the part numbers 783466-01 for BNC, and 783467-01 for Mini-XLR.
It features a 2-Channel Voltage Output, providing an update rate of 51.2 k Samples/second and an output range of 3 Vrms. The resolution is impressively high at 24-bit, ensuring detailed and accurate analog output signals.
The Output Stage of the BNC is designed as pseudo-differential; AO-terminated through a 50 Ohm resistor to ground, while the Mini-XLR output stage is balanced and fully differential, catering to different application needs. For robust protection, it includes short circuit protection and ±30 V overvoltage protection, ensuring the device’s longevity and reliability in various operational circumstances.
The module employs a 24-bit, Delta-Sigma type Digital-to-Analog Converter, which is known for its high fidelity and precision in converting digital signals to analog. Additionally, it supports DC Output Coupling, adding to its versatility and making it suitable for a wide range of applications.
| Specification | Details |
|---|---|
| Part Number | 157152B-01L |
| Category | C Series Analog Output |
| Model | NI-9260 |
| Description | NI 9260 BNC, +/-1 V, 24-Bit, 51.2 kS/s/ch, 2-Ch AO Module |
| Connectivity | BNC and Mini-XLR (Part Numbers: 783466-01 for BNC, 783467-01 for Mini-XLR) |
| Channels | 2-Channel Voltage Output |
| Update Rate | 51.2 k Samples/second |
| Output Range | 3 Vrms |
| Resolution | 24-bit |
| Output Stage (BNC) | Pseudo-differential; AO- terminated through a 50 Ohm resistor to ground |
| Output Stage (Mini-XLR) | Balanced and fully differential |
| Protection | Short circuit protection and ±30 V overvoltage protection |
| Digital-to-Analog Converter | 24-bit, Delta-Sigma type |
| DC Output Coupling | Supported |



