MX1609TB
Amplificador de 16 canales para termopares de la
familia QuantumX
Compatible con termopares tipo T (Cu-CuNi);
Características de cada canal:
- Velocidad de muestreo: máx. 600 S/s;
- Aislamiento galvánico;
- Filtro paso bajo ajustable: Bessel, Butterworth;
- TEDS: identificación automática del punto de
medición (RFID);
- Toma: termo mini;
Generalidades:
- 1 x Ethernet
- 2 x FireWire
- Tensión de alimentación: 10-30 VCC, máx. 6 W
- Datos de calibración de fábrica según DIN/ISO
10012 guardados en el dispositivo (generar el
certificado con el MX Assistent)
Accesorios:
- Paquete de 5 conectores macho termo mini con
RFID: 1-THERMO-MINI-T.
The MX1609TB is a 16‑channel thermocouple amplifier engineered for highly dynamic and exceptionally precise temperature measurements. Optimized for type T thermocouples, it delivers outstanding linearity between –100 and +400 °C/–148 to +752 °F, making it ideal for applications where accuracy and responsiveness matter.
The MX1609TB offers superior linearity and precision for type T thermocouples. Each channel includes its own cold junction for accurate compensation, while active low‑pass filtering ensures clean, low‑noise signals. With sampling rates up to 600 Hz per channel, the module captures rapid temperature changes with clarity—ideal for dynamic and multidimensional thermal analysis in research and development.
All applications benefit from the module’s precision, electrical isolation, and seamless integration into larger QuantumX systems. And due to its wide range of connection options, Ethernet, FireWire PROFINET and EtherCAT, you are sure of optimal connectivity and effortless system integration. But it is the integrated TEDS capability, where the module automatically identifies connected sensors, that allows you to streamline setup and minimize configuration time.
The MX1609 series offers top quality with an outstanding price-to-performance ratio. For comparison, the MX1609KB version supports type K thermocouples,
For more challenging tasks in an electrical environment, the QuantumX MX809B insulated thermocouple amplifier is available.
All QuantumX modules are delivered with the latest firmware. For existing modules, it is easy to update the firmware by simply downloading the latest firmware package.
HBK also provides both native and third-party software packages and drivers allowing you to fully leverage the QuantumX ‘open’ data acquisition infrastructure for integration with a great number of operating, analysis and automation software. This includes:
Go to our download site for more information and a complete list of options.
Did you know? You can also connect Tescia data acquisition software to your QuantumX module via the MX Assistant utility. Talk to one of our experts to find out more.
| MX1607TB - Hoja de cracterísticas | Hoja de características | English |
| QuantumX - Manual de empleo | Manual de empleo | English |
| MX410 - Guía rápida | Guía rápida | English, Italian, French, Portuguese, Chinese, Korean, German, Spanish, Japanese |
| MX1607TB - Hoja de cracterísticas | Hoja de características | Chinese |
| MX1607TB - Hoja de cracterísticas | Hoja de características | Japanese |
| MX1607TB - Hoja de cracterísticas | Hoja de características | German |
| QuantumX - Manual de empleo | Manual de empleo | German |
| QuantumX - Manual de empleo | Manual de empleo | Japanese |
| QuantumX - Manual de empleo | Manual de empleo | Chinese |
Sales documents
| QuantumX - Folleto | Folleto | English |
| QuantumX - Folleto | Folleto | German |
| QuantumX - Folleto | Folleto | Portuguese |
| QuantumX - Folleto | Folleto | Chinese |
| QuantumX - Folleto | Folleto | Japanese |
Certificates and Approvals
| QuantumX - Declaración de Conformidad | Declaración de Conformidad | English |
| MX1609TB - CAD | CAD Step Files |
| MX1609TB-R - CAD | CAD Step Files |
| Número de entradas | 16 |
| Entrada | Thermocouples |
| Señal de salida | None |
| Interfaz | TCP/IP, Firewire |
| Clase de precisión | 0.7 |
| Grado de protección | IP20 |
| Frecuencia de muestreo | 500 Hz |
| Carcasa | Standalone |
| Capacidades de tiempo real | None |