MIC2164-2YMM Micrel Inc, MIC2164-2YMM Datasheet - Page 20

IC PWM BUCK CNTLLR 10MSOP

MIC2164-2YMM

Manufacturer Part Number
MIC2164-2YMM
Description
IC PWM BUCK CNTLLR 10MSOP
Manufacturer
Micrel Inc
Series
Hyper Speed Control™r
Type
Step-Down (Buck)r
Datasheet

Specifications of MIC2164-2YMM

Internal Switch(s)
No
Synchronous Rectifier
Yes
Number Of Outputs
1
Voltage - Output
0.8 ~ 5.5 V
Frequency - Switching
600kHz
Voltage - Input
3 ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Voltage - Supply
3 V ~ 28 V
Frequency-max
750kHz
Duty Cycle
74%
Pwm Type
Controller
Buck
Yes
Boost
No
Flyback
No
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
No
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
576-3543-5
Micrel, Inc.
In this situation, the output voltage ripple is less than
20mV. Therefore, additional ripple is injected into the FB
pin from the switching node LX via a resistor Rinj and a
capacitor Cinj, as shown in Figure 5c. The injected ripple
is:
where
V
D = Duty Cycle
f
τ
SW
September 2010
HSD
=
= switching frequency
R (
ΔV
= Power stage input voltage at HSD pin
1
//
FB(pp)
R
2
Figure 5b. Inadequate Ripple at FB
//
K
=
Figure 5c. Invisible Ripple at FB
Figure 5a. Enough Ripple at FB
Rinj
div
V
HSD
=
)
×
Rinj
Cff
K
R1//R2
div
+
×
R1//R2
D
×
(1
-
D)
×
f
SW
1
×
τ
(30)
(29)
20
In the formula (29) and (30), it is assumed that the time
constant associated with Cff must be much greater than
the switching period:
If the voltage divider resistors R1 and R2 are in the kΩ
range, a Cff of 1nF to 100nF can easily satisfy the large
time constant consumption. Also, a 100nF injection
capacitor Cinj is used in order to be considered as short
for a wide range of the frequencies.
The process of sizing the ripple injection resistor and
capacitors is:
Step 1. Select Cff to feed all output ripples into the
feedback pin and make sure the large time constant
assumption is satisfied. Typical choice of Cff is 1nF to
100nF if R1 and R2 are in kΩ range.
Step 2. Select Rinj according to the expected feedback
voltage ripple. According to the equation (30):
Then the value of Rinj is obtained as:
Step 3. Select Cinj as 100nF, which could be considered
as short for a wide range of the frequencies.
K
R
div
inj
=
=
R (
Δ
fsw
1
V
V
//
FB
HSD
1
R
×
(
pp
) 2
τ
)
=
(
K
T
τ
D
f
1
div
<<
SW
1 (
1
τ ⋅
) 1
D
)
MIC2164/-2/-3/C
M9999-091310-D
(31)
(32)

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