Yaskawa AC Drive Z1000 Bypass Technical Manual User Manual

Page 132

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b5-09: PI Output Level Selection

Reverses the sign of the PI controller output signal. Normally a positive PI input (feedback smaller than setpoint) leads to

positive PI output.

No.

Parameter Name

Setting Range

Default

b5-09

PI Output Level Selection

0, 1

0

Setting 0: Normal Output

A positive PI input causes an increase in the PI output (direct acting).

Setting 1: Reverse Output

A positive PI input causes a decrease in the PI output (reverse acting).

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b5-10: PI Output Gain Setting

Applies a gain to the PI output and can be helpful when the PI function is used to trim the frequency reference (b5-01 = 3 or

4).

No.

Name

Setting Range

Default

b5-10

PI Output Gain Setting

0.00 to 25.00

1.00

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b5-11: PI Output Reverse Selection

Determines whether a negative PI output reverses the direction of drive operation. This parameter has no effect when the PI

function trims the frequency reference (b5-01 = 3) and the PI output will not be limited (same as b5-11 = 1).

No.

Parameter Name

Setting Range

Default

b5-11

PI Output Reverse Selection

0, 1

0

Setting 0: Reverse Disabled

Negative PI output will be limited to 0 and the drive output will be stopped.

Setting 1: Reverse Enabled

Negative PI output will cause the drive to run in the opposite direction.

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PI Feedback Loss Detection

The PI feedback loss detection function detects broken sensors or broken sensor wiring. It should be used when PI control is

enabled to prevent critical machine conditions (e.g., acceleration to max. frequency) caused by a feedback loss.
Feedback loss can be detected in two ways:
Feedback Low Detection

Detected when the feedback falls below a certain level for longer than the specified time. This function is set up using

parameters b5-12 to b5-14.

Feedback High Detection

Detected when the feedback rises above a certain level for longer than the specified time. This function is set up using

parameters b5-12, b5-36, and b5-37.

The following figure illustrates the working principle of feedback loss detection when the feedback signal is too low. Feedback

high detection works in the same way.

5.2 b: Application

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YASKAWA ELECTRIC SIEP YAIZ1B 01D YASKAWA AC Drive – Z1000 Bypass Technical Manual

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