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LM5010A-Q1 Datasheet(PDF) 2 Page - Texas Instruments

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Part # LM5010A-Q1
Description  High-Voltage 1-A Step-Down Switching Regulator
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

LM5010A-Q1 Datasheet(HTML) 2 Page - Texas Instruments

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SW
BST
NC
NC
NC
NC
RTN
FB
SS
11
10
9
5
4
3
2
1
6
7
8
12
13
14
VCC
VIN
RON/SD
SGND
ISEN
SW
BST
RTN
VCC
FB
SS
VIN
10
9
8
7
6
5
4
3
2
1
RON/SD
SGND
ISEN
LM5010A
LM5010A-Q1
SNVS376E – OCTOBER 2005 – REVISED FEBRUARY 2013
www.ti.com
Connection Diagram
Table 1. PIN DESCRIPTIONS
Pin Number
Name
Description
Application Information
WSON-10
HTSSOP-
14
1
2
SW
Switching Node
Internally connected to the buck switch source. Connect to the
inductor, free-wheeling diode, and bootstrap capacitor.
2
3
BST
Boost pin for bootstrap
Connect a capacitor from SW to the BST pin. The capacitor is
capacitor
charged from VCC via an internal diode during the buck switch
off-time.
3
4
ISEN
Current sense
During the buck switch off-time, the inductor current flows
through the internal sense resistor, and out of the ISEN pin to
the free-wheeling diode. The current limit comparator keeps the
buck switch off if the ISEN current exceeds 1.25A (typical).
4
5
SGND
Current Sense Ground
Recirculating current flows into this pin to the current sense
resistor.
5
6
RTN
Circuit Ground
Ground return for all internal circuitry other than the current
sense resistor.
6
9
FB
Voltage feedback input from
Input to both the regulation and over-voltage comparators. The
the regulated output
FB pin regulation level is 2.5V.
7
10
SS
Softstart
An internal 11.5 µA current source charges the SS pin capacitor
to 2.5V to soft-start the reference input of the regulation
comparator.
8
11
RON/SD
On-time control and shutdown
An external resistor from VIN to the RON/SD pin sets the buck
switch on-time. Grounding this pin shuts down the regulator.
9
12
VCC
Output of the bias regulator
The voltage at VCC is nominally equal to VIN for VIN < 8.9V,
and regulated at 7V for VIN > 8.9V. Connect a 0.47 µF, or larger
capacitor from VCC to ground, as close as possible to the pins.
An external voltage can be applied to this pin to reduce internal
dissipation if VIN is greater than 8.9V. MOSFET body diodes
clamp VCC to VIN if VCC > VIN.
10
13
VIN
Input supply voltage
Nominal input range is 6V to 75V. Input bypass capacitors
should be located as close as possible to the VIN pin and RTN
pins.
1,7,8,14
NC
No connection
No internal connection. Can be connected to ground plane to
improve heat dissipation.
EP
Exposed Pad
Exposed metal pad on the underside of the device. It is
recommended to connect this pad to the PC board ground
plane to aid in heat dissipation.
2
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Product Folder Links: LM5010A LM5010A-Q1


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