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L6758ATR Datasheet(PDF) 37 Page - STMicroelectronics

Part # L6758ATR
Description  DPM - dynamic phase management
PDF  42 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L6758ATR Datasheet(HTML) 37 Page - STMicroelectronics

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L6758A
System control loop compensation
42
limiting transition corresponds to the load-removal since the inductor results as being
discharged only by V
OUT
(while it is charged by V
IN
-V
OUT
during a load appliance).
Note:
The introduction of a capacitor (CI) in parallel to RFB significantly speeds up the transient
response by coupling the output voltage dV/dt on the FB pin, therefore using the error
amplifier as a comparator. The COMP pin suddenly reacts and, also thanks to the LTB
Technology control scheme, all the phases can be turned on together to immediately give
the required energy to the output. Typical design considers starting from values in the range
of 100 pF and validating the effect by bench testing. An additional series resistor (RI) can
also be used.
11.2
LTB technology
LTB technology further enhances the performance of the controller by reducing the system
latencies and immediately turning ON all the phases to provide the correct amount of energy
to the load optimizing the output capacitor count.
LTB technology monitors the output voltage through a dedicated pin detecting load-
transients with selected dV/dt, it cancels the interleaved phase-shift, simultaneously turning
on all phases.
The LTB detector is able to detect output load transients by coupling the output voltage
through an R
LTB
- C
LTB
network. After detecting a load transient, all the phases are turned
on together and the EA latencies result as bypassed as well.
Sensitivity of the load transient detector can be programmed in order to control precisely
both the undershoot and the ring-back.
LTB technology design tips.
Decrease R
LTB
to increase the system sensitivity making the system sensitive to
smaller dV
OUT
.
Increase C
LTB
to increase the system sensitivity making the system sensitive to
higher dV/dt.
Increase R
i
to increase the width of the LTB pulse.
Increase C
i
to increase the LTB sensitivity over frequency.



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