SOT89-3EV-VREG Microchip Technology, SOT89-3EV-VREG Datasheet - Page 12

BOARD EVAL SOT89-3 VOLTAGE REG

SOT89-3EV-VREG

Manufacturer Part Number
SOT89-3EV-VREG
Description
BOARD EVAL SOT89-3 VOLTAGE REG
Manufacturer
Microchip Technology

Specifications of SOT89-3EV-VREG

Channels Per Ic
1 - Single
Regulator Type
Positive Fixed
Board Type
Partially Populated
Utilized Ic / Part
SOT-89-3 Package
Silicon Manufacturer
Microchip
Application Sub Type
Voltage Regulator
Kit Application Type
Power Management - Voltage Regulator
Silicon Core Number
MCP1700A, MCP1701A, MCP1702, MCP1703
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-
Voltage - Output
-
Voltage - Input
-
Operating Temperature
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
MCP1703
5.0
The MCP1703 CMOS low dropout linear regulator is
intended for applications that need the lowest current
consumption
regulation. The operating continuous load range of the
MCP1703 is from 0 mA to 250 mA (V
input operating voltage range is from 2.7V to 16.0V,
making it capable of operating from two or more
alkaline cells or single and multiple Li-Ion cell batteries.
5.1
The input of the MCP1703 is connected to the source
of the P-Channel PMOS pass transistor. As with all
LDO circuits, a relatively low source impedance (10)
is needed to prevent the input impedance from causing
the LDO to become unstable. The size and type of the
capacitor needed depends heavily on the input source
type (battery, power supply) and the output current
range of the application. For most applications (up to
100 mA), a 1 µF ceramic capacitor will be sufficient to
ensure circuit stability. Larger values can be used to
improve circuit AC performance.
DS22049E-page 12
FUNCTIONAL DESCRIPTION
Input
while
maintaining
output
R
 2.5V). The
voltage
5.2
The maximum rated continuous output current for the
MCP1703 is 250 mA (V
where V
200 mA.
A minimum output capacitance of 1.0 µF is required for
small signal stability in applications that have up to
250 mA output current capability. The capacitor type
can be ceramic, tantalum, or aluminum electrolytic. The
esr range on the output capacitor can range from 0 to
2.0.
The output capacitor range for ceramic capacitors is
1 µF to 22 µF. Higher output capacitance values may
be used for tantalum and electrolytic capacitors. Higher
output capacitor values pull the pole of the LDO
transfer function inward that results in higher phase
shifts which in turn cause a lower crossover frequency.
The circuit designer should verify the stability by
applying line step and load step testing to their system
when using capacitance values greater than 22 µF.
5.3
When powering up the internal reference output, the
typical output rise time of 1000 µs is controlled to
prevent overshoot of the output voltage.
Output
R
Output Rise time
< 2.5V, the maximum output current is
 2010 Microchip Technology Inc.
R
 2.5V). For applications

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