PID

PID loop controller with conditional-integration anti-windup, bumpless auto/manual transfer and derivative on the measurement.

Validated application blockProcess ControlIEC 61131-3IEC 61499v1.0.0

When to use it

Use PID when a continuous process variable — temperature, pressure, flow, level, differential pressure, humidity, charge current — must be held at a setpoint by a modulating actuator, and the actuator has real travel limits the integral must respect.

Interface

The published port signature. This is the whole of what the block exposes to your program — the implementation body is not shown here and ships with the download.

Inputs

PortTypeUnit
SPREALeng. units
PVREALeng. units
KPREAL%/eng. unit
TITIME
TDTIME
CYCLETIME
ENABLEBOOL
PV_OKBOOL
MANBOOL
MAN_OUTREAL%
OUT_MINREAL%
OUT_MAXREAL%
FAIL_OUTREAL%
DIRECT_ACTBOOL
D_FILT_NREALratio
ACKBOOL

Outputs

PortTypeUnit
OUTREAL%
ERRREALeng. units
P_TERMREAL%
I_TERMREAL%
D_TERMREAL%
SATBOOL
IN_AUTOBOOL
VALIDBOOL
ALM_PV_FAULTBOOL
ALM_CFG_ERRBOOL

IEC 61499 event interface

EI INIT, REQ·EO INITO, CNF

Validation evidence

Tests
11
Simulated scans
555
Simulator
v0.1.0

Complete IEC 61131-3 implementation with a published test suite that runs on the vplant simulator. The counts above are that suite, executed on this build.

  • Conforms to IEC 61131-3
  • Conforms to IEC 61499

Download PID — free

Create a free Ri Tech account to download the block. You get the Structured Text body, the Rockwell Add-On Instruction (.L5X), the Schneider Control Expert DFB (.XDB), PLCopen XML, the IEC 61499 function block type (.fbt) and the datasheet.

Every block in the catalogue is free to download, in every format, with no purchase and no card. Browsing needs no account at all; downloading needs a signed-in one, so the block lands in your library and re-downloads whenever you need it.

Source is never published on this page. The implementation is released to a signed-in Ri Tech account — free of charge, but never anonymously.