TTS9015 – Analog Board
TTS9015 is an analog output/input board card with a total of 8 independent input/output channels.
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TTS9015 Functions and parameters
Functional Data
Voltage Output
| Number of Channels | 8 (shared for input/output) |
| Output Range | 0 V ~ +60 V |
| DAC Resolution | 16 bit |
| Accuracy | ±(0.4% + 60 mV) When outputting 0 V, there may be a maximum voltage of 300 mV due to channel differences |
| Output Current | The maximum for a single channel is approximately 30 mA, with a total maximum of about 10 W for 8 channels |
Voltage Acquisition
| Number of Channels | 8 |
| Measurement Range | -60 V ~ +60 V, 0 V ~ +60 V |
| Sampling Rate | 250 KHz |
| ADC Resolution | 20 bit |
| Accuracy | ±(0.4%+60 mV) |
| Input Impedance | 300 KΩ |
Current Output
| Number of Channels | 8 |
| Output Range | 0 mA ~ 25 mA |
| DAC Resolution | 16 bit |
| Accuracy | ±1 mA |
Current Acquisition
| Number of Channels | 8 |
| Measuring Range | 0 mA ~ 25 mA |
| Sampling Rate | 250 Hz |
| ADC Resolution | 20 bit |
| Accuracy | ±1 mA |
Hardware Interface
| Pin 1 | CH 1+ | Pin 14 | CGND |
| Pin 2 | CH 1- | Pin 15 | CGND |
| Pin 3 | CH 2+ | Pin 16 | CGND |
| Pin 4 | CH 2- | Pin 17 | CGND |
| Pin 5 | CH 3+ | Pin 18 | CGND |
| Pin 6 | CH 3- | Pin 19 | CGND |
| Pin 7 | CH 4+ | Pin 20 | CGND |
| Pin 8 | CH 4- | Pin 21 | CGND |
| Pin 9 | CH 5+ | Pin 22 | CGND |
| Pin 10 | CH 5- | Pin 23 | CH8- |
| Pin 11 | CH 6+ | Pin 24 | CGND |
| Pin 12 | CH 6- | Pin 25 | CH 8+ |
| Pin 13 | CH 7+ | Pin 26 | CH 7- |
Typical applications
Specification
Caution! Avoid Short Circuits Before using the equipment, carefully review the pin information in the product user manual.
During operation, make sure to correctly connect the power lines and avoid frequent plugging and unplugging.
During operation, make sure to correctly connect the power lines and avoid frequent plugging and unplugging.
Caution! Damage from Electrostatic Discharge (ESD) Beware! Electrostatic discharge (ESD) can potentially damage or destroy components on the card. Take preventive measures to avoid ESD and protect the components.







