L6713A STMicroelectronics, L6713A Datasheet - Page 59

IC CTRLR 2/3PH W/DRIVERS 64-TQFP

L6713A

Manufacturer Part Number
L6713A
Description
IC CTRLR 2/3PH W/DRIVERS 64-TQFP
Manufacturer
STMicroelectronics
Datasheet

Specifications of L6713A

Applications
Controller, Intel VR10, VR11, AMD CPU
Voltage - Input
12V
Number Of Outputs
3
Voltage - Output
0.3 ~ 1.6 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
64-TQFP Exposed Pad, 64-eTQFP, 64-HTQFP, 64-VQFP
Output Current
2 A
Mounting Style
SMD/SMT
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
0 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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L6713A
24.2
Small signal components and connections
These are small signal components and connections to critical nodes of the application as
well as bypass capacitors for the device supply
capacitor (VCC, VCCDRx and Bootstrap capacitor) close to the device and refer sensible
components such as frequency set-up resistor R
resistor R
single point to avoid that drops due to the high current delivered causes errors in the device
behavior.
Figure 28. Power connections and related connections layout (same for all phases)
Remote sensing connection must be routed as parallel nets from the FB/VSEN pins to the
load in order to avoid the pick-up of any common mode noise. Connecting these pins in
points far from the load will cause a non-optimum load regulation, increasing output
tolerance.
Locate current reading components close to the device. The PCB traces connecting the
reading point must use dedicated nets, routed as parallel traces in order to avoid the pick-up
of any common mode noise. It's also important to avoid any offset in the measurement and,
to get a better precision, to connect the traces as close as possible to the sensing elements.
Symmetrical layout is also suggested. Small filtering capacitor can be added, near the
controller, between V
UGATEx
PHASEx
LGATEx
PGNDx
Warning:
OVP
to SGND. Star grounding is suggested: connect SGND to PGND plane in a
Boot capacitor extra charge. Systems that do not use
Schottky diodes might show big negative spikes on the
phase pin. This spike can be limited as well as the positive
spike but has an additional consequence: it causes the
bootstrap capacitor to be over-charged. This extra-charge
can cause, in the worst case condition of maximum input
voltage and during particular transients, that boot-to-phase
voltage overcomes the abs. max. ratings also causing device
failures. It is then suggested in this cases to limit this extra-
charge by adding a small resistor in series to the boot diode
(one resistor can be enough for all the three diodes if placed
upstream the diode anode,
standard and low-capacitive diodes.
OUT
C
V
IN
IN
and SGND, on the CSx- line to allow higher layout flexibility.
L
LOAD
PHASEx
BOOTx
SGND
(See Figure
VCC
OSC
See Figure
To limit C
, over current resistor R
BOOT
Extra-Charge
+Vcc
28). Locate the bypass
28) and by using
C
V
IN
IN
Layout guidelines
OCP
L
and OVP
LOAD
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