EVALED7706 STMicroelectronics, EVALED7706 Datasheet - Page 25

EVALUATION BOARD FOR LED7706

EVALED7706

Manufacturer Part Number
EVALED7706
Description
EVALUATION BOARD FOR LED7706
Manufacturer
STMicroelectronics
Datasheet

Specifications of EVALED7706

Current - Output / Channel
30mA
Outputs And Type
6, Non-Isolated
Voltage - Output
36 V
Features
Dimmable, Extra 5V Output
Voltage - Input
4.5 ~ 36 V
Utilized Ic / Part
LED7706
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6445

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LED7706
Equation 14b
Where V
Note that, the lower the inductor value (and the higher the switching frequency), the higher
the bandwidth can be achieved. The output capacitor is directly involved in the loop of the
boost converter and must be large enough to avoid excessive output voltage drop in case of
a sudden line transition from the maximum to the minimum input voltages.
However a more significant requirement concerns the output voltage ripple.
The output capacitor should be chosen in accordance with the following expression:
Equation 15
where ΔV
inductor current, T
Section 6.4.4 on page 31
Once the output capacitor has been chosen, the R
Equation 16
Where G
Equation 16 places the loop bandwidth at f
place the frequency of the compensation zero 5 times lower than the loop bandwidth:
Equation 17
Where f
In most of the applications an experimental approach is also very valid to compensate the
circuit. A simple technique to optimize different applications is to choose C
and to replace R
transient response. Insufficient damping will result in excessive ringing at the output and
poor phase margin.
Figure 17
Z
IN,min
M
=f
OUT, max
(a and b) give an example of compensation adjustment for a typical application.
U
= 2.7 S and g
/5.
is the minimum input voltage and I
COMP
is the maximum acceptable output voltage ripple, I
OFF
is the off-time of the switching cycle (for an extensive explanation see
with a 10 kΩ trimmer adjusting its value to properly damp the output
EA
).
= 375 µS
C
OUT
C
R
COMP
COMP
>
(
I
R =
, L
=
=
peak
U
2
2
. Then, the C
G
⋅ π
Δ ⋅
V
I
2
OUT
M
OUT
⋅ π
V
f
Z
I
OUT
OUT
g
f
1
OUT
U
COMP
R
EA
,
COMP
max
)
C
T
M
is the overall output current.
OFF
can be calculated as:
COMP
capacitor is determined to
Application information
L, peak
COMP
is the peak
= 4.7 nF
25/46

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