MAX5090BATE Maxim Integrated Products, MAX5090BATE Datasheet - Page 13

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MAX5090BATE

Manufacturer Part Number
MAX5090BATE
Description
DC/DC Switching Controllers 2A 76V MAXPower Step-Down
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX5090BATE

Output Voltage
5 V
Output Current
2 A
Input Voltage
6.5 V to 76 V
Supply Current
310 uA
Switching Frequency
127 KHz
Mounting Style
SMD/SMT
Package / Case
TQFN-16
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX5090BATE+
Manufacturer:
MAXIM
Quantity:
1 200
Part Number:
MAX5090BATE+T
Manufacturer:
MAXIM
Quantity:
827
In a dynamic load application, the allowable deviation
of the output voltage during the fast transient load dic-
tates the output capacitance value and the ESR. The
output capacitors supply the step-load current until the
controller responds with a greater duty cycle. The
response time (t
loop bandwidth of the converter. The resistive drop
across the capacitor ESR and capacitor discharge
cause a voltage droop during a step-load. Use a com-
bination of low-ESR tantalum and ceramic capacitors
for better transient load and ripple/noise performance.
Use the following equations to calculate the deviation of
output voltage due to the ESR and capacitance value
of the output capacitor:
where I
response time of the controller. Controller response
time is approximately one-third of the reciprocal of the
closed-loop unity-gain bandwidth, 20kHz typically.
1) Minimize ground noise by connecting the anode of
2A, 76V, High-Efficiency MAXPower Step-Down
the Schottky rectifier, the input bypass capacitor
ground lead, and the output filter capacitor ground
lead to a large PGND plane.
STEP
is the load step and t
V
V
OESR
OQ
RESPONSE
______________________________________________________________________________________
=
=
I
STEP
I
Board Layout Guidelines
STEP
) depends on the closed-
x t
C
x ESR
OUT
RESPONSE
OUT
RESPONSE
is the
2) Minimize lead lengths to reduce stray capacitance,
3) Connect the exposed pad of the IC to the SGND
4) Use large SGND plane as a heatsink for the
trace resistance, and radiated noise. In particular,
place the Schottky rectifier diode right next to the
device. Also, place the BST and VD bypass capaci-
tors very close to the device.
plane. Do not make a direct connection between the
exposed pad plane and SGND (pin 7) under the IC.
Connect the exposed pad and pin 7 to the SGND
plane separately. Connect the ground connection of
the feedback resistive divider, ON/OFF threshold
resistive divider, and the soft-start capacitor to the
SGND plane. Connect the SGND plane and PGND
plane at one point near the input bypass capacitor
at V
MAX5090. Use large PGND and LX planes as
heatsinks for the rectifier diode and the inductor.
IN
.
DC-DC Converters
13

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