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TPS5211 Datasheet(PDF) 21 Page - Texas Instruments

Part # TPS5211
Description  HIGH FREQUENCY PROGRAMMABLE HYSTERETIC REGULATOR CONTROLLER
PDF  32 Pages
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

TPS5211 Datasheet(HTML) 21 Page - Texas Instruments

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TPS5211
HIGH FREQUENCY PROGRAMMABLE HYSTERETIC
REGULATOR CONTROLLER
SLVS243 – SEPTEMBER 1999
21
POST OFFICE BOX 655303
• DALLAS, TEXAS 75265
APPLICATION INFORMATION
Control Section
Below are the equations needed to select the various components within the control section.
output voltage selection
The most important function of the power supply is to regulate the output voltage to a specific value. Values
between 1.3 V and 3.5 V can be easily set by shorting the correct VID inputs to ground. Values above the
maximum reference voltage (3.5 V) can be set by setting the reference voltage to any convenient voltage within
its range and selecting values for R2 and R3 to give the correct output. Select R3:
R3 << than VREF/IBIAS(VSENSE); a recommended value is 10 kΩ
Then, calculate R2 using:
V
O +
V
REF 1 )
R2
R3
R2
+
R3
V
O *
V
REF
V
REF
or
These equations are accurate if R2<<R11. If this condition is not fullfilled, the following equation must be used:
V
O +
V
REF 1 )
R2 x R11
R3 x (R2
) R11)
Another soultion is to use 0.1-
µF DC decoupling capacitor in series with R11. In such a case, R11 does not
influence the output voltage value.
R2 and R3 can also be used to make small adjusts to the output voltage within the reference-voltage range
and/or to adjust for load-current active droop compensation. If there is no need to adjust the output voltage, R3
can be eliminated. R2, R3 (if used), and C7 are used as a noise filter; calculate using:
C7
+ 150 ns
R2
ø R3
slowstart timing
Slowstart reduces the startup stresses on the power-stage components and reduces the input current surge.
Slowstart timing is a function of the reference-voltage current (determined by R6) and is independent of the
reference voltage. The first step in setting slowstart timing will be to determine R6:
R6 should be between 7 k
Ω and 300 kΩ, a recommended value is 20 kΩ.
Set the slowstart timing using the formula:
C5
+
t
SS
5
R
VREFB
≅
t
SS
(5
R6)
Where C5 = Slowstart capacitance in
µF
tSS = Slowstart timing in µs
RVREFB = Resistance from VREFB to GND in ohms (≈ R6)



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