Smart Submersible Transmitter

The ADDA-P Series smart submersible transmitter uses diffused silicon, ceramic piezoresistive, or ceramic capacitive sensing technology for level measurement. It provides static pressure and temperature compensation and is suitable for media compatible with the wetted materials. Refer to the model-specific range and protection specifications when selecting a configuration.

Authoritative Qualification Certifications

We hold ISO quality certification, national high-tech enterprise qualification, China measuring instrument type approval, and explosion-proof and safety certifications to support reliable product quality.

Custom Engineering

Configurable materials, connections, signals, displays, and installation solutions for different process environments.

Product Features

The ADDA-P Series uses diffused silicon, ceramic piezoresistive, or ceramic capacitive sensor technology. The sensor chips are manufactured using advanced processes to provide high accuracy, high overpressure resistance, and stable performance. An embedded signal processing module combines static pressure and temperature compensation to maintain measurement accuracy and long-term stability across a wide range of pressure and temperature conditions.

  • Stable performance with accuracy up to 0.1%F.S.
  • Turndown ratio up to 5 : 1.
  • A high-performance EMC protection circuit module reduces the influence of electromagnetic interference on the output.
  • High stability: ±0.1% Span/year.

Applications

Level measurement.

Measuring Medium

Media compatible with the wetted materials.

Performance Specifications

Accuracy±0.1%, ±0.2% Upper Range Limit, see specifications for details
Range10kPa~2MPa, see selection table for details
Annual Stability±0.1% Span/year
Ambient Temperature Influencesee specifications for details
Voltage InfluenceWhen the supply voltage varies within 10.5V/16.5V~36V DC, changes in zero point and span shall not exceed ±0.001%URL/V
Mounting Position InfluenceTransmitter installation may cause zero error, this error can be corrected by zero adjustment, with no effect on accuracy
Vibration InfluenceTested according to GB/T18271.3/IEC61298-3 test, < 0.1%
Output Signal4mA~20mADC+HART Modbus-RTU/RS485
Protection GradeIP67 (measuring probe: IP68)

Range (ADDA-P-1L-K)

Sensor TypeNominal RangeMinimum RangeLower Range Limit (LRL)Upper Range Limit (URL)Overload
K20kPa5kPa0kPa20kPa1.5 times the nominal range
35kPa10kPa0kPa35kPa1.5 times the nominal range
80kPa16kPa0kPa80kPa1.5 times the nominal range
150kPa50kPa0kPa150kPa1.5 times the nominal range
300kPa60kPa0kPa300kPa1.5 times the nominal range
700kPa140kPa0kPa700kPa1.5 times the nominal range
1.3MPa260kPa0kPa1.3MPa1.5 times the nominal range
2.5MPa500kPa0kPa2.5MPa1.5 times the nominal range
High and low limit setting requirements: lower range value (LRV) and upper range value (URV) must be set within the lower and upper range limits, |URV-LRV|≥ Minimum Range

Range (ADDA-P-1L-B)

Sensor TypeNominal RangeMinimum RangeLower Range Limit (LRL)Upper Range Limit (URL)Overload
B50kPa10kPa0kPa50kPa2 times the nominal range
100kPa20kPa0kPa100kPa2 times the nominal range
200kPa40kPa0kPa200kPa2 times the nominal range
500kPa100kPa0kPa500kPa2 times the nominal range
1MPa200kPa0kPa1MPa1.5 times the nominal range
2MPa500kPa0kPa2MPa1.5 times the nominal range
High and low limit setting requirements: lower range value (LRV) and upper range value (URV) must be set within the lower and upper range limits, |URV-LRV|≥ Minimum Range

Range (ADDA-P-1L-C)

Sensor TypeNominal RangeMinimum RangeLower Range Limit (LRL)Upper Range Limit (URL)Overload
C10kPa5kPa0kPa10kPa400kPa
20kPa10kPa0kPa20kPa600kPa
50kPa10kPa0kPa50kPa600kPa
100kPa20kPa0kPa100kPa1MPa
200kPa40kPa0kPa200kPa1.8MPa
400kPa80kPa0kPa400kPa2.5MPa
1MPa200kPa0kPa1MPa4MPa
2MPa400kPa0kPa2MPa4MPa
High and low limit setting requirements: lower range value (LRV) and upper range value (URV) must be set within the lower and upper range limits, |URV-LRV|≥ Minimum Range

Accuracy

Based on standards and reference test conditions, including best fit straight line (BFSL), hysteresis, repeatability. Calibration temperature :20 degrees C ±5 degrees C.
Linear Output AccuracyKTD<=5±0.2% Span<=35kPa
±0.1% Span≥80kPa
BTD<=5±0.2% Span<=100kPa
±0.1% Span≥200kPa
CTD<=5±0.2% Span<=20kPa
±0.1% Span≥50kPa
Note: TD (Turn down) means turndown ratio , TD= maximum range / current range

Ambient Temperature Influence

Sensor TypeInfluencing QuantityRange
K/C± (0.1+0.035TD) % 20 degrees C of  Span≥20kPa
B± (0.15+0.075TD) % 20 degrees C of  Span≥50kPa

Environmental Conditions

ItemCondition
Operating Ambient Temperature Range-40 degrees C ~ 85 degrees C, LCD display: -20 degrees C ~ 70 degrees C
Storage Ambient Temperature Range-40 degrees C ~ 100 degrees C, LCD display: -40 degrees C ~ 85 degrees C
Measured Medium Temperature Range-20 degrees C ~ 70 degrees C
Operating Ambient Humidity Range5%RH~100%RH@40 degrees C
Hazardous AreaPCECCertificate No.: CE20.2148X

Ex ia IIC T6 Ga

Time Specifications

Total damping time constant: equals the sum of the electronic circuit component damping time constant and sensor capsule damping time constant
Electronic circuit component damping time: 0s~99s adjustable range
Overall response time: <= 90ms

Electromagnetic Compatibility Environment (current signal only)

No.Test ItemBasic StandardTest ConditionPerformance Level
1Radiated Disturbance (Enclosure)GB/T 9254.1/CISPR2230MHz-1000MHzB (Note 2)
2Conducted Disturbance (DC Power Port)GB/T 9254.1/CISPR220.15MHz-30MHzB (Note 2)
3Electrostatic Discharge (ESD) ImmunityGB/T 17626.2/IEC61000-4-24kV (contact), 8kV (air)A (Note 1)
4RF Electromagnetic Field ImmunityGB/T 17626.3/IEC61000-4-310V/m (80MHz-1GHz)A (Note 1)
5Power Frequency Magnetic Field ImmunityGB/T 17626.8/IEC61000-4-830A/mA (Note 1)
6Electrical Fast Transient/Burst ImmunityGB/T 17626.4/IEC61000-4-42kV (5/50ns, 100kHz)A (Note 1)
7Surge ImmunityGB/T 17626.5/IEC61000-4-54kV (line-to-line)

2kV (line-to-ground)

A (Note 1)
8Conducted Disturbance Immunity Induced by RF FieldsGB/T 17626.6/IEC61000-4-63V (150kHz-80MHz)A (Note 1)
Note 1: For performance level A, performance remains normal within the technical specification limits

Note 2: For performance level B, function or performance may temporarily decrease or be lost, but can recover automatically, actual operating status, storage and data remain unchanged

 Power Supply and Load Conditions

ItemOperating Condition 
Power Supply VoltageHART communication protocol: 16.5V~36V DC
Modbus-RTU/RS485: 12V~36V DC
Load Resistance0Ω~2119Ω during operation

250Ω~600Ω for HART communication

Transmission Distance< 1000m
Power Consumption
4mA~20mA<= 500mW@24V DC, 20.8mA
Modbus-RTU/RS485<= 240mW@24V DC, 10mA

 

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Frequently Asked Questions

Find quick answers about product selection, customization, technical parameters, delivery, and support for ADDA industrial measurement instruments.

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Please provide the measured medium, measuring range, process temperature, process pressure, connection type, output signal, power supply, installation environment, and communication method if remote monitoring is required.

Yes. ADDA can provide customized solutions based on measuring range, process connection, wetted material, display type, communication protocol, installation method, and working environment.

Many ADDA instruments are available with explosion-proof or intrinsically safe configurations. Please confirm the site classification and certification requirements before selection.

Yes. Our team can help recommend a suitable instrument configuration after reviewing your application conditions, including medium, range, connection, output signal, and installation requirements.

Lead time depends on product type, quantity, customization requirements, and certification needs. Standard products usually have a shorter delivery time, while customized models may require additional production time.

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