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PAM2316 Datasheet(PDF) 8 Page - Power Analog Micoelectronics

Part # PAM2316
Description  2.5MHz,Fast Transient 2A Step-Down Converter
PDF  11 Pages
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Manufacturer  PAM [Power Analog Micoelectronics]
Direct Link  http://www.poweranalog.com
Logo PAM - Power Analog Micoelectronics

PAM2316 Datasheet(HTML) 8 Page - Power Analog Micoelectronics

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8
,
Power Analog Microelectronics Inc
www.poweranalog.com
losses all vary with input voltage, the total losses
should be investigated over the complete input
voltage range. The maximum power dissipation
d e p e n d s o n t h e t h e r m a l r e si st a n c e o f I C
package, PCB layout, the rate of surrounding
airflow and temperature difference between
junction and ambient. The maximum power
dissipation can be calculated by the following
formula:
Where TJ(ma x) is the m aximu m allo wable
junction temperature 125°C.T
is the ambient
temperature and
is the thermal resistance
from the junction to the ambient. Based on the
standard JEDEC for a two layers thermal test
board, the thermal resistance
of TDFN2X2
70°C/W, respectively. The m aximum power
dissipation at T
= 25°C can be calculated by
following formula:
P =(125°C-25°C)/70°C/W=1.42W
The internal reference is 0.6V (Typical). The
output voltage is calculated as below:
The output voltage is given by Table 1.
Resistor selection for output voltage
setting
When load current decreases, the peak switch
current in Power-PMOS will be lower than skip
current threshold and the device will enter into
Pulse Skipping Mode.
In this mode, the device has two states, working
state and idle state. First, the device enters into
w o rk i n g s t a t e c o n t r o l l e d b y i n t e r n a l e r r o r
amplifier.When the feedback voltage gets higher
than internal reference voltage, the device will
enter into low I
idle state with most of internal
blocks disabled. The output voltage will be
reduced by loading or leakage current. When the
feedback voltage gets lower than the internal
reference voltage, the convertor will start a
working state again.
As the input voltage approaches the output
voltage, the converter turns the P-chan nel
transistor continuously on. In this mode the
output voltage is equal to the input voltage minus
th e vo lt a g e d ro p a c ro s s t h e P - c h a n n e l
transistor:
V
= V – I
(R
+ R )
where R
= P-channel switch ON resistance,
I
= O u t p u t c u rr e n t , R
= I n d u c t o r D C
resistance
The reference and the circuit remain reset until
the VIN crosses its UVLO threshold.
The PAM2316 has an internal soft-start circuit
that limits the in-rush current during start-up.
This prevents possible voltage drops of the input
volt ag e an d elim ina t es t he o ut p ut volt a ge
overshoot.
When the converter output is shorted or the
device is overloaded,each high-side MOSFET
current-limit event (3A typ) turns off the high-side
MOSFET and turns on the low-side MOSFET. A
internal counter is used to count the each
current-limit event. The counter is reset after
consecutive high-side MOSFETs turn on without
re a c h in g c u r r e n t l i m i t . I f t h e c u r r e n t - l im it
condition persists, the counter fills up. The
control logic then stops both high-side and low-
side MOSFETs and waits for a hiccup period,
before attemping a new soft-start sequence. The
counter bits is decided by Vfb voltage. If Vfb
0 2, the counter is 3-bit counter; if Vfb>0.2 the
counter is 6-bit counter. The typical hicuup made
duty cycle is 1.7%. The hicuup mode is disable
during soft-start time.
When the die temperature exceeds 150°C, a
reset occurs and the reset remains until the
temperature decrease to 120°C, at which time
the circuit can be restarted.
A
JA
JA
A
D
Q
OUT
IN
LOAD
dson
L
dson
L O A D
L
θ
θ
Setting the Output Voltage
Table 1:
Pulse Skipping Mode (PSM) Description
100% Duty Cycle Operation
UVLO and Soft-Start
Short Circuit Protection
Thermal Shutdown
.
O
R1
V =0.6×1+
R2
J(MAX)
A
D
JA
T
-T
P =
θ
12/2011 Rev1.1
Vo
R1
R2
1.2V
150k
150k
1.5V
150k
100k
1.8V
300k
150k
2.5V
380k
120k
3.3V
680k
150k
PAM2316
2.5MHz,Fast Transient 2A Step-Down Converter



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