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AN2791 Datasheet(PDF) 13 Page - STMicroelectronics

Part # AN2791
Description  This document describes a detailed analysis on the current regulated channels
PDF  18 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN2791 Datasheet(HTML) 13 Page - STMicroelectronics

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AN2791
Virtual current control loop on the Q1, Q2 channels of Root Part Number 1
13/18
5
Virtual current control loop on the Q1, Q2 channels of
Root Part Number 1
In this section we describe an analysis, done on the unregulated channels Q1, Q2 of the
Root Part Number 1, aimed to understand the limits of a virtual current control loop on the
same channels. The idea is to tune the duty-cycle of the Q1, Q2 channels on a
measurement of the duty-cycle observed on the regulated channels Q3, Q4. Clearly, we
considered same load conditions, that is, for both the regulated and unregulated channels of
the Root Part Number 1, we considered same coils, same INLET valves. Furthermore, to
balance the difference of PWM signal frequency on the Root Part Number 1 channels, the
unregulated ones (i.e. Q1, Q2) have been driven with a frequency of 3.9 kHz
(b). In order to
allow the current recirculation during the off-state of the Q1, Q2 channels, external free-
wheeling diodes have been used to link the channel output and Vbat. As free-wheeling
diode we have considered the ST power Shottky diodes 1N5817.
Figure 9.
Evaluation of the VCCL on the L9352B unregulated channels: first test
condition block scheme
As first operative condition for our tests (see Figure 9) we can refer to the following data:
INLET valve opening/closing frequency of 1Hz
for the first 450 ms, duty-cycle = 0.1 %
for the next 50 ms, duty-cycle = 90 %
for the last 500 ms, duty-cycle =[ 15:10:75] %
The Table 2 shows the results related to this first operative condition that we considered for
our tests. As we can see in the last four columns, the difference between the mean current
on the load driven by the unregulated channel and the mean current on the load driven by
the regulated channel reduces as the set-point, that is, the duty of the hold phase increases.
b.
Take into account that the ideal frequency of the output PWM signal of the current regulated channels (i.e. Q3,
Q4) is the (clock frequency)/64, that is, 3.9 kHz for a clock frequency of 250 kHz.



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