FTM8000 is a set of powerful, flexible and automatic data acquisition and control system designed and developed by Faith. The product realizes the acquisition and output of high-speed digital, voltage, current, temperature and other signals, as well as relay control, temperature simulation and other functions.
The system consists of a main box, a SWITCH communication card, an analog signal I/O card (DAQ card), a digital signal I/O card, a voltage acquisition card, a current acquisition card, a temperature acquisition card, a relay card, and a temperature analog card.
Each measurement and control board card can be used independently by a single card, but also can be used at the same time through the main box multiple cards, can be very convenient to achieve simple or complex automatic system data acquisition, control
System diagram

System architecture diagram

Schematic diagram of the mainboard of the host chassis
System overview
FTM8000 system includes: main chassis, SWITCH communication card, analog signal I/O card (DAQ card), digital signal I/O card, voltage acquisition card, current acquisition card, temperature acquisition card, relay card, temperature analog card and other boards. The main features are as follows:
1. One main chassis can support up to 15 boards;
2. The internal card slot communication of the main chassis is independent Ethernet communication;
3. The mainboard of the main box provides DC12V power and Ethernet ports. All boards can be installed in any position.
4. All boards are standard modular design, unified interface, can be any combination;
5. The board design has a synchronization mechanism, which can configure signal synchronization between any board;
6. The main chassis supports two external gigabit Ethernet, and the number of board cards can be expanded through the main chassis cascade;
7. The main chassis is connected with the main control PC through the Ethernet interface;
8. The main chassis is a standard 19 inch 3U chassis, convenient to rack;
9. Through the transfer box, each board can be used separately.
Independent use of board cards
Each board can be inserted into the host for use, or can be used alone.When the board is used alone, the communication interface is connected to the PC through the adapter box. In application scenarios with low board requirements, the board can be used alone to effectively save equipment costs.

Schematic diagram of independent use of board card
Switch Cards(FTM8010A)

1. 2-channel external gigabit network communication, can be connected to the PC and other equipment;
2. Internal and board through 4 gigabit, 15 gigabit communication;
3. 15 independent synchronous signal control;
DAQ32CH Cards (FTM8060B)

1. 32-channel single-ended sampling channels can be composed of 16 differential sampling channels;
2. The total sampling rate is up to 1Msps;
3. Sampling resolution 16 bits;
4. Synchronization signal triggering can be configured;
5. Sampling range: ±10V, ±5V, ±1V, ±200mV;
6. Each channel can be configured with a separate sampling range;
7. Two voltage output channels, the maximum output rate of 1Msps;
8 voltage output resolution: 12 bits, range: ±10V, impedance: 0.2Ω, drive current: 20mA;
9. 100 Mbit Ethernet communication;
10. DC 12V power supply;
11. Operating temperature range: 0-50℃.
DAQ16CH Cards (FTM8060A)

1. 16-channel single-ended sampling channels can be composed of 8 differential sampling channels;
2. The total sampling rate is up to 1Msps;
3. Sampling resolution 16 bits;
4. Synchronization signal triggering can be configured;
5. Sampling range: ±10V, ±5V, ±1V, ±200mV;
6. Each channel can be configured with a separate sampling range;
7. Two voltage output channels, the maximum output rate of 1Msps;
8 voltage output resolution: 12 bits, range: ±10V, impedance: 0.2Ω, drive current: 20mA;
9. 100 Mbit Ethernet communication;
10. DC 12V power supply;
11. Operating temperature range: 0-50℃.
Relay24CH Cards (FTM8090A)

1. 24-channel relay control;
2. The maximum current of each channel is 1A;
3. Synchronization signal triggering can be configured;
4. 100 Mbit Ethernet communication;
5. DC 12 v power supply.
Resistance 2CH card (FTM8160A)

1. 2-channel resistance output (temperature simulation);
2. The maximum of each channel is 16M;
3. Resolution 1 ohm;
4. Accuracy 0.1%;
5. Synchronization signal triggering can be configured;
6. 100 Mbit Ethernet communication;
7. DC 12 v power supply.
Temperature 4CH card (FTM8180A)

1. 4-channel temperature acquisition;
2. External PT1000 temperature resistance;
3. Temperature acquisition range -50℃-300℃;
4. Accuracy 0.1℃;
5. Synchronization signal triggering can be configured;
6. 100 Mbit Ethernet communication;
7. DC 12 v power supply.
DCV4CH Cards (FTM8140A)

1. 4-channel DC voltage sampling, isolation between channels;
2. Sampling range: ±60V, ±600V;
3. Accuracy 0.1%+0.1%F.S.
4. Synchronization signal triggering can be configured;
5. 100 Mbit Ethernet communication;
6. DC 12 v power supply.
DCI4CH Cards (FTM8150A)

1. 4-channel DC current sampling, isolation between channels;
2. Sampling range: ±1A, ±10A;
3. Accuracy 0.1%+0.1%F.S.
4. Synchronization signal triggering can be configured;
5. 100 Mbit Ethernet communication;
6. DC 12 v power supply.
Communication protocol
The machine uses LAN communication and standard ModbusTCP communication protocol.
The single board uses LAN and USB serial ports for communication, and ModbusTCP protocol is used for LAN communication.The USB serial port uses ModbusRTU protocol.
Secondary development
FTM80000 is specially designed for embedded integrated development, with standard 19-inch chassis size. It is equipped with LAN communication interface and adopts ModbusTCP communication protocol. It supports most software platforms such as Visual C++, C#, Basic, Delphi, Labivew for secondary development. Self-developed application software. And provide perfect DLL development kit, support C#, C++, Labview development language, convenient for users secondary development. The interface diagram of communication demonstration software is as follows:

FTM8000 main interface

FTM8010A

FTM8060A
Available Model list