LP3965EMPX-ADJ National Semiconductor, LP3965EMPX-ADJ Datasheet - Page 14

LDO Regulator Pos 1.216V to 5.1V 1.5A 5-Pin(4+Tab) SOT-223 T/R

LP3965EMPX-ADJ

Manufacturer Part Number
LP3965EMPX-ADJ
Description
LDO Regulator Pos 1.216V to 5.1V 1.5A 5-Pin(4+Tab) SOT-223 T/R
Manufacturer
National Semiconductor
Type
Linearr
Datasheet

Specifications of LP3965EMPX-ADJ

Voltage Regulator Type
Linear
Topology
LDO
Regulator Output Type
Adjustable
Polarity Type
Positive
Number Of Outputs
Single
Input Voltage (min)
2.5V
Input Voltage (max)
7V
Output Voltage
1.216 to 5.1V
Package Type
SOT-223
Output Current
1.5A
Load Regulation
0.04%
Line Regulation
0.02%
Output Voltage Accuracy
±1.5%
Operating Temp Range
-40C to 125C
Operating Temperature Classification
Automotive
Pin Count
4 +Tab
Mounting
Surface Mount
Package
5SOT-223
Function
LDO
Input Voltage Range
7 to 2.5 V
Maximum Output Current
1.5 A
Output Type
Adjustable
Accuracy
±1.5 %
Typical Dropout Voltage @ Current
0.038@150mA|0.38@1500mA V
Operating Temperature
-40 to 125 °C
Polarity
Positive
Lead Free Status / Rohs Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LP3965EMPX-ADJ
Manufacturer:
NS/国半
Quantity:
20 000
www.national.com
Applications Information
Once the power pass element shuts down, the control loop
will rapidly cycle the output on and off until the average
power dissipation causes the thermal shutdown circuit to
respond to servo the on/off cycling to a lower frequency.
Please refer to the section on thermal information for power
dissipation calculations.
ERROR FLAG OPERATION
The LP3962/LP3965 produces a logic low signal at the Error
Flag pin when the output drops out of regulation due to low
input voltage, current limiting, or thermal limiting. This flag
has a built in hysteresis. The timing diagram in Figure 1
SENSE PIN
In applications where the regulator output is not very close to
the load, LP3965 can provide better remote load regulation
using the SENSE pin. Figure 2 depicts the advantage of the
SENSE option. LP3962 regulates the voltage at the output
pin. Hence, the voltage at the remote load will be the regu-
lator output voltage minus the drop across the trace resis-
(Continued)
FIGURE 1. Error Flag Operation
14
shows the relationship between the ERROR and the output
voltage. In this example, the input voltage is changed to
demonstrate the functionality of the Error Flag.
The internal Error flag comparator has an open drain output
stage. Hence, the ERROR pin should be pulled high through
a pull up resistor. Although the ERROR pin can sink current
of 1mA, this current is energy drain from the input supply.
Hence, the value of the pull up resistor should be in the
range of 10kΩ to 1MΩ. The ERROR pin must be con-
nected to ground if this function is not used. It should
also be noted that when the shutdown pin is pulled low, the
ERROR pin is forced to be invalid for reasons of saving
power in shutdown mode.
tance. For example, in the case of a 3.3V output, if the trace
resistance is 100mΩ, the voltage at the remote load will be
3.15V with 1.5 A of load current, I
lates the voltage at the sense pin. Connecting the sense pin
to the remote load will provide regulation at the remote load,
as shown in Figure 2. If the sense option pin is not required,
the sense pin must be connected to the V
10126607
LOAD
. The LP3965 regu-
OUT
pin.

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