参数资料
型号: L6701
厂商: STMICROELECTRONICS
元件分类: 稳压器
英文描述: 1.5 A SWITCHING REGULATOR, 110 kHz SWITCHING FREQ-MAX, PDSO36
封装: LEAD FREE, SSO-36
文件页数: 19/44页
文件大小: 627K
代理商: L6701
Obsolete
Product(s)
- Obsolete
Product(s)
11 Dynamic VID Transitions
L6701
26/44
11
Dynamic VID Transitions
L6701 is able to manage Dynamic VID Code changes in all its operative modes (VR10, K8 and
also VR9) so allowing Output Voltage modification during normal device operation. PGOOD
(when applicable), OVP and UVP signals are masked during every VID transition and they are
re-activated after the transition finishes with a 32 clock cycles delay to prevent from false
triggering.
When changing dynamically the regulated voltage (D-VID), the system needs to charge or
discharge the output capacitor accordingly. This means that an extra-current
needs to be delivered, especially when increasing the output regulated voltage and it must be
considered when setting the over current threshold. In the previous relationship, dVOUT is the
selected DAC LSB (12.5mV for VR10 DAC or 25mV for both VR9 and K8 DACs) and TVID is
the time interval between each LSB transition (typically externally driven). Overcoming the OC
threshold during the dynamic VID causes the device to enter the constant current limitation
slowing down the output voltage dV/dt also causing the failure in the D-VID test.
Figure 11. Dynamic VID Transitions
L6701 checks for VID code modifications (See Figure 11) on the rising edge of an internal
additional DVID-clock and waits for a confirmation on the following falling edge. Once the new
code is stable, on the next rising edge, the reference starts stepping up or down in LSB
increments every VID-clock cycle until the new VID code is reached. During the transition, VID
code changes are ignored; the device re-starts monitoring VID after the transition has finished
on the next rising edge available. VID-clock frequency (FDVID) depends on the operative mode
selected: for VR10 Mode it is equal to three times the system switching frequency programmed
for each phase (FDVID = 3 x FSW) to assure compatibility with the specifications while, for VR9
and K8, this frequency is lowered to FDVID = FSW.
I
DVID
C
OUT
dV
OU T dTVI D
=
TDVID
x 4 Step VID Transition
t
VID
Sample
d
VID
Sample
d
VID
Sample
d
Ref
Mo
v
ed
(
1)
Ref
Mo
v
ed
(
2)
Ref
Mo
v
ed
(
3)
Ref
Mo
v
ed
(
4)
VID
Stab
le
VID [0,5]
Int. Reference
Vout
Tsw
VID
Sample
d
VID
Sample
d
Ref
Mo
v
ed
(
1)
Ref
Mo
v
ed
(
1)
Ref
Mo
v
ed
(
1)
VID
Sample
d
VID
Sample
d
4 x 1 Step VID Transition
TVID
VID
Sample
d
VID
Sample
d
VID
Sample
d
VID
Sample
d
VID
Sample
d
VID
Stab
le
VID
Stab
le
VID
Stab
le
Ref
Mo
v
ed
(
1)
VID
Sample
d
VID
Sample
d
VID
Stab
le
VID
Sample
d
VID
Sample
d
VID
Sample
d
t
VID Clock
Vout Slope Controlled by internal
DVID-Clock Oscillator
Vout Slope Controlled by external
driving circuit (TVID)
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