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M0310 Modbus to HART Module – Embedded HART Converter for OEM Instruments

What This Module Does

ال M0310 is an embedded protocol conversion module that converts Modbus RTU slave devices into HART slave devices. It is designed for field device manufacturers who want to add HART communication capability to their existing Modbus instruments without redesigning the entire product.

The module is embedded directly into Modbus protocol input devices — such as flow meters, level transmitters, and other measuring instruments — and runs the Modbus application layer protocol through TTL level signals. The M0310 serves as the Modbus master and the HART slave, converting data from Modbus data registers (input registers, holding registers) into dynamic variables used in HART commands. Additionally, the module provides a 4-20mA analog current output proportional to the primary variable (PV) value.

This means you can take an existing Modbus instrument and turn it into a HART-enabled field device with analog output, all with minimal hardware changes.

Who Uses It

OEM manufacturers of industrial instruments who need to add HART 7.0 communication and 4-20mA analog output to their product lines. Product engineers looking to upgrade Modbus-based devices — flow meters, level transmitters, pressure transmitters — to support HART without developing a HART protocol stack from scratch.

The M0310 is particularly valuable for manufacturers who want to quickly enable HART communication on their instruments without writing protocol software or redesigning hardware. It’s a drop-in module that gets you to market faster.

وحدة M0310 المدمجة من Modbus إلى HART

How It Works

The M0310 sits between the HART bus and the Modbus device. It connects to the main control board of the field device through a socket — externally connected to the HART bus, internally connected to the field device.

Data flow direction:

  • Modbus to HART: The module, acting as a Modbus master, reads data from the user board (Modbus slave) via TTL-level UART. The data is then mapped to device variables (0-5) and further mapped to HART dynamic variables (PV, SV, TV, QV).
  • HART to Modbus: When a HART master sends a HART command (e.g., writing PV range limits), the module parses the command, maps the data back to Modbus holding registers, and writes it to the user board.

Key mapping concept:

Modbus Register Data → Device Variable (n) → Dynamic Variable (PV/SV/TV/QV)

For example, if a holding register at address 30000 in a flow meter stores the instantaneous flow value, the register can be configured to device variable 0, which is then assigned as the primary variable (PV). This mapping is fully configurable.

Analog Current Output

The M0310 provides a 4-20mA analog current output proportional to the primary variable (PV) value. When the PV value reaches the upper range limit, the module outputs 20.000mA. When the PV value reaches the lower range limit, the module outputs 4.000mA.

Saturated output (fixed):

  • PV exceeds upper limit: 20.800mA
  • PV exceeds lower limit: 3.800mA

Fault alarm output (selectable via DIP switch):

  • Low current alarm: 3.750mA
  • High current alarm: 21.750mA

Multi-point mode behavior:

When the polling address is not set to ‘0’, the analog channel outputs a fixed 4.000mA regardless of the PV value. Only when the polling address is set to ‘0’ does the module output the 4-20mA analog current corresponding to the PV value.

Hardware Interface

The M0310 uses a 2.54mm pitch IDC16 (2×8) standard socket (JP3) to connect to the user board.

Pin definition (JP3):

Pin اسم Description
1 IVCC 5V DC isolated power
2 IGND For VCC
3 I/RST Reset, low active
4 IGND For VCC
5 OTxD MCU UART transmitter
6 O- Reserved
7 O- Reserved
8 IRxD MCU UART receiver
9 O- Reserved
10 OLED For LED-, HART communication indication
11 I/O HART+
12 I/O HART-
13 O- Reserved
14 I- Reserved
15 I- Reserved
16 I- Reserved

Reserved bus interface:

For direct HART bus connection when the bus is not routed on the user board.

DIP switches:

Switch OFF Position ON Position
AL High current alarm Low current alarm
WP Write enabled Write protected

LED indicators:

LED1 LED2 الحالة
On On Module initialization
On On (steady) Standby, no communication
On Flashing HART communication active
Flashing On Modbus communication active
Off Off No communication or fault

Supported wiring configurations:

The M0310 supports three-wire و four-wire equipment only. It does not support two-wire equipment.

HART Protocol Support

The M0310 implements the HART 7.0 protocol and supports Burst mode operation.

أمر Description أمر Description
0 Read unique identifier 33 Read device variables
1 Read PV unit and value 34 Write PV damping value
2 Read PV current and percentage 35 Write PV range values
3 Read dynamic variables and PV current 36 Set PV upper range with current value
6 Write polling address 37 Set PV lower range with current value
7 Read polling address 40 Enter/exit fixed current mode
8 Read dynamic variable categories 41 Perform self-test
9 Read device variables and status 42 Perform device reset
11 Read device ID using tag 43 Set PV zero with current value
12 Read message 44 Write PV units
13 Read tag, descriptor, date 45 Trim loop current zero (4mA)
14 Read PV sensor information 46 Trim loop current gain (20mA)
15 Read device information 47 Write PV transfer function
16 Read final assembly number 49 Write PV sensor serial number
17 Write message 50 Read dynamic variable assignments
18 Write tag, descriptor, date 51 Write dynamic variable assignments
19 Write final assembly number 53 Write device variable units
20 Read long tag 59 Write number of response preambles
21 Read unique identifier with long tag 105 Read Burst mode configuration
22 Write long tag 107 Write Burst device variables
38 Reset configuration changed flag 108 Write Burst mode command number
48 Read additional device status 109 Burst mode control

Modbus Interface

The M0310 communicates with the user board using the Modbus RTU protocol over TTL-level UART.

Default communication parameters:

معامل Default Optional range
Slave address 1 1-247
Baud rate 9600 1200, 2400, 4800, 9600, 19200, 35700, 38400, 57600
Data bits 8 7, 8 (only 8 valid for RTU)
Stop bits 1 1, 2
Parity EVEN ODD, EVEN, NONE
CRC byte order Low-High Low-High, High-Low

Supported Modbus function codes:

Code Operation
1 Read coil status
2 Read discrete input status
3 Read holding registers
4 Read input registers
5 Write single coil
16 Write multiple registers

Configuration Overview

The M0310 is configured using the HartMPT configuration software from Microcyber, or any HART master with DD file parsing capability.

Three configuration steps:

  1. Configure Modbus interface — Set slave address, baud rate, data bits, parity, stop bits, and CRC byte order to match the user board’s interface characteristics.
  2. Configure device variables — Map Modbus data registers to the module’s six device variables (0-5). Each variable requires: type, unit, sensor range limits, Modbus function code, register address, and data type.
  3. Configure dynamic variables — Map device variables to HART dynamic variables (PV, SV, TV, QV) based on the application requirements.

Operation modes:

Mode Description
Configuration Mode HART module does not actively send Modbus requests. All settings can be modified.
Operation Mode HART module cyclically sends Modbus requests to the user board and makes data available on the HART bus.

Device Variable Configuration

The M0310 supports six device variables (0-5). Each variable requires the following parameters:

معامل Description
Type Data type (volume flow, temperature, pressure, density, etc.)
Unit Engineering unit for HART device data (in PV)
Sensor range upper limit Maximum limit value of the device variable
Sensor range lower limit Minimum limit value of the device variable
Minimum span Range span (typically sensor upper limit divided by 100)
Upper range limit Between sensor upper and lower limits
Lower range limit Between sensor upper and lower limits
Default units Units of variable read from Modbus device
Modbus function code Function code for reading the device variable
Register address Data register address in Modbus device
Register data type Byte order of data in Modbus registers

Dynamic Variable Mapping

HART supports four dynamic variables: Primary Variable (PV), Secondary Variable (SV), Tertiary Variable (TV), and Quaternary Variable (QV).

Any of the six device variables can be mapped to any of the four dynamic variables with no restrictions. However, PV is the variable that drives the analog current output on the HART bus.

PV Range Configuration

Users can configure the source and read/write mode of the primary variable (PV) range limits.

PV Range Source:

  • Local: Manually configured through configuration software
  • Remote: Read from the user’s Modbus device

PV Range Operation Mode:

  • Read and Write: HART module can both read from and write to the user’s Modbus device
  • Read Only: HART module only reads range limits from the user’s Modbus device

Register Data Type: Format in which range limits are stored in Modbus registers.

Scaling Factor

Each device variable has a scaling factor parameter:

HART device variable n = Modbus device variable n × scaling factor

Factory default is 1.0. Modify only if scaling is required.

Device Status

The M0310 provides HART extended device status (3 bytes):

  • Byte 1: Lower 6 bits indicate whether reading of the six device variables was successful (0: success, 1: fault or misconfigured)
  • Byte 2-3: 16 states representing the user’s Modbus device status

Users can configure the status of Modbus devices to the HART extended device status. Each bit used is determined by the ‘Bit Pattern’ (1-16).

Data Save and Restore

دالة Description
Restore to default factory Restores all configuration data to system initial values (use with caution)
Save as factory Saves current user configuration as factory values
Restore to factory Restores previously saved user configuration

Batch Download

A quick configuration function for manufacturers with multiple M0310 modules:

  1. Configure one module completely
  2. Click “Save to File” to save the configuration
  3. For other modules, click “Open File” to load the configuration
  4. Click “Batch Download Data” to apply to all modules

Manufacturer ID and Device Type Modification

As a general product, the M0310 allows users to modify the manufacturer ID and device type to create their own branded HART products. This is done through the ‘ManufactureInfoConf’ tab in the configuration software.

Important: Manufacturer ID and device type code are each 2 bytes, filled in hexadecimal format. Manufacturer ID must be obtained by applying for HART membership through HCF. Device type ID can then be applied for free.

Disclaimer: Unauthorized modification of manufacturer ID and device type may cause accidents and legal liability. Microcyber is not responsible for any issues arising from such modifications.

Technical Specifications

معامل مواصفات
Measuring object Modbus RTU slave device
مصدر الطاقة 6-42 VDC
Bus protocol 2-wire HART
Load resistance 0-1500Ω (normal) / 230-1100Ω (HART communication)
Isolation voltage 500V AC between Modbus and HART
Temperature range -40°C to 85°C
Humidity range 5-95% RH
Startup time ≤٥ ث
Refresh time 0.2 ثانية
Damping adjustment Time constant 0-32 seconds
Output current accuracy Maximum error ≤50µA

Electrical interface:

Pin اسم Description
1 IVCC 5V DC isolated power from user board
2 IGND VCC reference ground
3 I/RST Reset, low active
5 OTxD MCU UART transmitter
8 IRxD MCU UART receiver
10 OLED LED cathode, HART communication indication
11 HART+ HART bus positive
12 HART- HART bus negative

Troubleshooting

Problem Possible Cause حل
Current output is 0 Power failure / Open circuit Check power and wiring
Current fixed at 21.75mA or 3.70mA Modbus communication failure Check Modbus communication
Current fixed at 4mA Device in multi-point mode Set polling address to 0
No communication Connection failure / Multi-point mode Check wiring / Check network
HART LED off No HART communication / Power failure Check HART master and modem / Check power
Modbus LED off No Modbus communication / Slave failure Check Modbus device and connections
Dynamic variable reading incorrect Device variable configuration incorrect / Modbus parameter incorrect Check register address and data type / Check baud rate and parity

Need to add HART 7.0 and 4-20mA output to your Modbus instruments? Contact our OEM support team for integration assistance.

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