OurInstrumentationGroup.com - Since 2006, providing 100% Free Instrumentation eBooks, Videos and more...
OurInstrumentationGroup.blogspot.com - OIG Blog


  Follow "OurInstrumentationGroup" on   Facebook (11K Followers) ,   WhatApp Channel (Recommended)   and   Telegram Channel  

  Join OurInstrumentationGroup on   Facebook Groups (16K Members)   (Here members can post as well)  

Instrumentation Abbreviations used for Levels in Tank


Instrumentation Abbreviations Used for Level Measurement in Tanks

Introduction

Level measurement is one of the most common instrumentation applications in process plants, particularly in oil & gas, petrochemical, refinery, chemical, power and water-treatment facilities.

Instrumentation engineers and technicians use standardized abbreviations to identify level instruments, alarms, switches, controllers and control functions on P&IDs, Instrument Indexes, Cause & Effect diagrams, Loop Diagrams and DCS graphics.

The ANSI/ISA-5.1 standard provides a standardized method for identifying and representing instrumentation and control functions. The latest revision is ANSI/ISA-5.1-2024, Instrumentation and Control – Symbols and Identification.


1. Typical Tank Level Arrangement

A typical tank may have the following level instruments:

  • LT – Level Transmitter
  • LI – Level Indicator
  • LIT – Level Indicating Transmitter
  • LG – Level Gauge
  • LS – Level Switch
  • LSH – Level Switch High
  • LSHH – Level Switch High High
  • LSL – Level Switch Low
  • LSLL – Level Switch Low Low
  • LAH – Level Alarm High
  • LAL – Level Alarm Low
  • LAHH – Level Alarm High High
  • LALL – Level Alarm Low Low
  • LIC – Level Indicating Controller
  • LCV – Level Control Valve

These abbreviations are based on the general ISA identification philosophy; individual projects may have additional or modified tag conventions defined in their project specifications.


2. Understanding the Letters

The easiest way to understand level instrument abbreviations is to break the tag into individual letters.

First letter: L

L = Level

For example:

LT

  • L = Level
  • T = Transmitter

Therefore:

LT = Level Transmitter

Similarly:

LSH

  • L = Level
  • S = Switch
  • H = High

Therefore:

LSH = Level Switch High

ISA's identification system uses leading letters to identify the measured variable or function and succeeding letters to identify functions such as indication, transmission, switching and control.


3. Common Level Instrument Abbreviations

AbbreviationFull FormFunction
LLevelProcess variable – liquid level
LILevel IndicatorIndicates level
LTLevel TransmitterContinuously measures and transmits level
LITLevel Indicating TransmitterMeasures, transmits and indicates level
LGLevel GaugeLocal visual level indication
LSLevel SwitchDetects a predetermined level
LSHLevel Switch HighSwitch operates at high level
LSHHLevel Switch High HighSwitch operates at very high level
LSLLevel Switch LowSwitch operates at low level
LSLLLevel Switch Low LowSwitch operates at very low level
LAHLevel Alarm HighHigh-level alarm
LAHHLevel Alarm High HighHigh-high-level alarm
LALLevel Alarm LowLow-level alarm
LALLLevel Alarm Low LowLow-low-level alarm
LICLevel Indicating ControllerIndicates and controls level
LCVLevel Control ValveControl valve used for level control

Important: Exact tag definitions and combinations can vary between companies and projects. Always check the project's Instrument Index, P&ID legend and Engineering Design Criteria before interpreting a tag.


4. What Do H, HH, L and LL Mean?

The letters H, HH, L and LL describe the level condition.

HH – High High

This represents a very high or critical level.

Example:

LSHH-101

When the tank level reaches the high-high set point, the switch may initiate:

  • High-high alarm
  • Pump shutdown
  • Inlet valve closure
  • Emergency shutdown
  • Other protective action defined in the Cause & Effect

The exact action depends on the process design and Cause & Effect philosophy.


H – High

H = High Level

A high-level condition normally provides an early warning that the tank is approaching its upper operating limit.

Example:

LSH-101

Possible action:

Tank level ↑ → LSH operates → High Level Alarm

The operator can then take corrective action before the level reaches HH.


L – Low

L = Low Level

A low-level condition indicates that the tank level has fallen below the normal operating range.

Example:

LSL-101

Possible action:

Tank level ↓ → LSL operates → Low Level Alarm


LL – Low Low

LL = Low Low Level

This is normally a critical low-level condition.

It may be used to:

  • Protect pumps from dry running
  • Protect equipment
  • Initiate a shutdown
  • Generate a low-low alarm
  • Initiate an interlock

Example:

Tank level ↓ → LSLL operates → Pump Trip

Again, the actual action is determined by the Cause & Effect and control philosophy.


5. Normal Tank Level

The tank normally operates between predetermined minimum and maximum levels.

A simplified arrangement is:

              TANK
       ┌───────────────────┐
       │       HH          │ ← High High
       │───────────────────│
       │       H           │ ← High
       │───────────────────│
       │                   │
       │       N           │ ← Normal Operating Level
       │~~~~~~~~~~~~~~~~~~~│
       │                   │
       │       L           │ ← Low
       │───────────────────│
       │       LL          │ ← Low Low
       └───────────────────┘

The Normal (N) level is the desired operating range/set point. The H/HH and L/LL levels provide progressively higher or lower protection limits.


6. Level Transmitter – LT

LT = Level Transmitter

An LT provides continuous measurement of the liquid level.

For example:

LT-101

The transmitter measures the level and sends a signal to the control system, commonly:

4–20 mA

or a digital communication signal depending on the system and instrument.

Typical technologies include:

  • Differential Pressure (DP)
  • Radar
  • Guided Wave Radar
  • Ultrasonic
  • Displacer
  • Magnetostrictive
  • Capacitance

Example:

          LT-101
            │
            │ Level Signal
            ↓
       ┌──────────┐
       │   DCS    │
       │          │
       │   LIC    │
       └──────────┘

The DCS can display the actual tank level, for example:

Tank Level = 65%


7. LIT – Level Indicating Transmitter

LIT = Level Indicating Transmitter

LIT combines:

  • L – Level
  • I – Indication
  • T – Transmitter

It indicates the measured level and transmits the signal to the control system.

For example:

LIT-101

The DCS may display:

LIT-101 = 72%


8. LG – Level Gauge

LG = Level Gauge

A level gauge provides local visual indication of the liquid level.

Common types include:

Sight Glass

The operator can visually see the liquid level.

Magnetic Level Gauge

A magnetic float moves an indicator along an external scale.

Typical application:

       TANK
   ┌───────────┐
   │           │
   │     │     │
   │     │ LG  │ ← Local Level Gauge
   │     │     │
   │     │     │
   └───────────┘

9. LS – Level Switch

LS = Level Switch

Unlike an LT, which provides continuous level measurement, an LS provides a discrete ON/OFF signal when the liquid reaches a predetermined level.

For example:

LSH-101

may change state when the tank reaches the high-level set point.

The signal can be connected to:

  • DCS
  • PLC
  • SIS/ESD system
  • Alarm system
  • Motor control system

10. LSH – Level Switch High

LSH = Level Switch High

The switch operates when the liquid reaches a predetermined high-level set point.

Example:

        TANK
   ┌──────────────┐
   │              │
   │      LSH ●───┼── High Level
   │              │
   │~~~~~~~~~~~~~~│
   │              │
   └──────────────┘

Possible function:

LSH → High Level Alarm


11. LSHH – Level Switch High High

LSHH = Level Switch High High

This is generally a more critical level switch than LSH.

Example:

       HH ─── LSHH
       H  ─── LSH
       
       Normal Operating Range

A typical protection philosophy may be:

LSH → Alarm

LSHH → Trip / Shutdown

For example, in an oil storage tank:

LSHH → Close inlet valve / stop transfer pump

The actual protective action must be confirmed from the project's Cause & Effect.


12. LSL – Level Switch Low

LSL = Level Switch Low

LSL operates when the tank level falls below the low-level set point.

Typical function:

LSL → Low Level Alarm

This alerts the operator that the tank level is becoming low.


13. LSLL – Level Switch Low Low

LSLL = Level Switch Low Low

LSLL operates at a critical low level.

A common application is pump protection.

For example:

Tank
┌──────────────┐
│              │
│              │
│              │
│       LSL    │ ← Low
│              │
│       LSLL   │ ← Low Low
└───────┬──────┘
        │
      Pump

Possible sequence:

Tank level decreases

LSL operates

Low Level Alarm

If level continues decreasing:

LSLL operates

Pump Trip

This prevents the pump from operating without sufficient liquid.


14. LAH and LAL

LAH = Level Alarm High

Indicates that the level has reached the high alarm set point.

LAL = Level Alarm Low

Indicates that the level has reached the low alarm set point.

Typical DCS indication:

       100% ───────── HH
        90% ───────── H / LAH
        65% ───────── NORMAL
        20% ───────── L / LAL
        10% ───────── LL
         0% ───────── EMPTY

15. LAHH and LALL

LAHH = Level Alarm High High

Indicates a critical high-level condition.

LALL = Level Alarm Low Low

Indicates a critical low-level condition.

These may be associated with interlocks or trips, depending on the plant's safety philosophy.

It is important not to assume that every alarm automatically causes a trip. The actual action should be verified from the Cause & Effect Diagram and approved control philosophy.


16. LIC – Level Indicating Controller

LIC = Level Indicating Controller

An LIC performs three basic functions:

L = Level

I = Indicating

C = Controller

For example:

             LT
             │
             │ Level
             ↓
        ┌──────────┐
        │   LIC    │
        │  DCS     │
        └────┬─────┘
             │
             │ Control Output
             ↓
            LCV
             │
             ↓
       Process Outlet

The LIC compares the measured level with the set point and generates a control output.

For example:

Set Point = 60%

Actual Level = 70%

The LIC may command the outlet control valve to open further to reduce the tank level.


17. LCV – Level Control Valve

LCV = Level Control Valve

An LCV is the final control element used to maintain tank level.

Typical arrangement:

             LT
              │
              ↓
             LIC
              │
              ↓
             LCV
              │
              ↓
          Outlet Flow

The LIC controls the LCV to maintain the desired tank level.


18. Difference Between LT, LS and LIC

InstrumentMeasurementOutput/Function
LTContinuous levelMeasurement signal
LSDiscrete levelON/OFF signal
LITContinuous levelIndication + transmission
LILevelLocal/remote indication
LICLevelIndication + control
LGLevelLocal visual indication
LSHHigh levelHigh-level switch
LSHHHigh-high levelCritical high-level switch
LSLLow levelLow-level switch
LSLLLow-low levelCritical low-level switch
LCVFinal control element for level

19. Typical Tank Level Control Philosophy

A typical tank might have:

LT → LIC → LCV

for continuous level control.

And:

LSH → High Level Alarm

LSHH → High-High Trip

LSL → Low Level Alarm

LSLL → Low-Low Trip

Simplified:

                    TANK
             ┌────────────────┐
             │   LSHH         │ → HH Trip
             │----------------│
             │   LSH          │ → H Alarm
             │                │
             │   LT           │
             │    │           │
             │    │           │
             │    ↓           │
             │   LIC          │
             │                │
             │   LSL          │ → L Alarm
             │----------------│
             │   LSLL         │ → LL Trip
             └───────┬────────┘
                     │
                     ↓
                    LCV
                     │
                     ↓
                  Outlet

This arrangement provides both process control and protective functions.


20. Alarm vs Trip

One of the most important concepts for an instrumentation engineer is the difference between an alarm and a trip.

Alarm

An alarm informs the operator that the process has reached an abnormal condition.

Example:

LAH → High Level Alarm

The operator may take corrective action.

Trip

A trip automatically initiates a predefined action to protect personnel, equipment or the process.

Example:

LSHH → Pump Trip / Valve Closure

The exact action depends on the approved Cause & Effect.


21. High and Low Level Protection

High-Level Protection

The purpose is generally to prevent overfilling.

Typical sequence:

Normal → H Alarm → HH Trip

Low-Level Protection

The purpose may be to prevent:

  • Pump dry running
  • Loss of suction
  • Equipment damage
  • Process interruption

Typical sequence:

Normal → L Alarm → LL Trip


22. Quick Reference

ConditionAbbreviationTypical Meaning
NormalNNormal operating level
HighHHigh level
High HighHHCritical high level
LowLLow level
Low LowLLCritical low level
Level TransmitterLTContinuous measurement
Level IndicatorLILevel indication
Level Indicating TransmitterLITIndication + transmission
Level GaugeLGLocal level indication
Level SwitchLSDiscrete level detection
Level Switch HighLSHHigh-level switching
Level Switch High HighLSHHCritical high-level switching
Level Switch LowLSLLow-level switching
Level Switch Low LowLSLLCritical low-level switching
Level Alarm HighLAHHigh-level alarm
Level Alarm High HighLAHHCritical high-level alarm
Level Alarm LowLALLow-level alarm
Level Alarm Low LowLALLCritical low-level alarm
Level Indicating ControllerLICLevel control
Level Control ValveLCVFinal control element

Conclusion

Understanding level abbreviations is essential when reading P&IDs, instrument index sheets, Cause & Effect diagrams, DCS graphics, loop diagrams and commissioning documents.

The easiest way to remember the basic terminology is:

L = Level

I = Indication

T = Transmitter

S = Switch

A = Alarm

C = Controller

H = High

HH = High High

L = Low

LL = Low Low

Therefore:

LT → measures level continuously

LSH → detects high level

LSHH → detects critical high-high level

LSL → detects low level

LSLL → detects critical low-low level

LIC → controls level

LCV → controls the process flow to maintain level

For engineering drawings, always use the project-specific P&ID legend and instrumentation specification in addition to ISA-5.1, because individual project/company conventions can differ. ISA states that ISA-5.1 establishes a uniform means of designating instruments and instrumentation systems used for measurement and control.