SiP2211 is a dual output low dropout regulator capable of
supplying 150 mA from output 1 and 300 mA from output 2.
The SiP2211 has the outputs independently enabled. Also
the SiP2211 offers a low dropout, low ground current and
extremely low noise with the addition of a bypass capacitor.
Protection features include undervoltage lockout, output
current limit, and thermal shutdown.
The Fixed output version of SiP2211 is available in a lead
(Pb)-free MLP33-10 PowerPAK package and the adjustable
version is available in a lead (Pb)-free MLP44-16 PowerPak
package. Both packages ares specified to operate over the
range of - 40 °C to 85 °C.
FEATURES
•
•
•
•
•
•
•
•
2.25 V to 5.5 V Input Voltage Range
Two Outputs - 150 mA and 300 mA
Low Ground Current of 48 µA
Low Dropout Voltage of 65 mV at 100 mA
Current Limit
Thermal Shutdown
MLP33-10 PowerPAK
®
Package (Fixed Output)
MIC2211 Pin for Pin Replacement
RoHS
COMPLIANT
APPLICATIONS
• Cellular Phones
• Wireless Modems
• PDAs
TYPICAL APPLICATION CIRCUIT
V
IN
EN
1
EN
2
V
OUT1
V
OUT2
SiP2211
BP
GND
Document Number: 73479
S-71832-Rev. C, 03-Sep-07
www.vishay.com
1
SiP2211
Vishay Siliconix
ABSOLUTE MAXIMUM RATINGS
Parameter
V
IN
, V
EN
, to GND
Power Dissipation
Storage Temperature
Thermal Resistance (MLP10 PowerPAK)
Notes:
a. Device Mounted with all leads soldered or welded to PC board.
b. Derate 20 mW/°C above 70 °C.
c. Derate 23.5 mW/°C above 70 °C.
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation
of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum
rating conditions for extended periods may affect device reliability.
Limit
- 0.3 to 7
MLP33-10 PowerPAK
b
MLP44-16 PowerPAK
c
1600
1880
- 55 to 150
50
Unit
V
mW
°C
°C/W
RECOMMENDED OPERATING RANGE
Parameter
Input Voltage Range
Enable Voltage Range
Operating Temperature Range T
A
Operating Temperature Range T
J
Limit
2.25 to 5.5
0 to 5.5
- 40 to 85
- 40 to 125
Unit
V
°C
SPECIFICATIONS
Test Conditions Unless Specified
V
IN
= V
OUT
+ 1
Parameter
Regulators
Output Voltage Accuracy
Output Voltage
Temperature Coefficient
Line Regulation
e
Load Regulation
V
IN
= V
OUT
+ 1 V to 5.5 V
I
OUT
= 100 µA to 150 mA (LDO 1 and 2)
I
OUT
= 100 µA to 300 mA (LDO 2)
I
OUT
= 150 mA (LDO 1 and 2)
Dropout Voltage
f
V
DROP
I
OUT
= 300 mA (LDO 2)
I
OUT1
= I
OUT2
= 0 µA
Ground Pin Current
I
G
I
OUT1
= I
OUT2
= 0 µA
I
OUT1
= 150 mA, I
OUT2
= 300 mA
V
EN
< 0.4 V
Sequence Time Delay
d
Output Voltage Noise
Ripple Rejection
Inputs
EN Input Voltage
EN Input Current
V
IL
V
IH
I
IL
I
IH
Logic Low
Logic High
V
IL
< 0.6 V
V
IH
> 1.8 V
Full
Full
Room
Room
1.8
-1
-1
0.01
0.01
1
1
0.6
V
µA
t
SEQ
C
BP
= 0.01 µF
f = 1 kHz, C
OUT
= 1 µF, C
BP
= 10 nF
f = 20 kHz, C
OUT
= 1 µF, C
BP
= 10 nF
Room
Room
From Nominal V
OUT
Room
Full
Room
Room
Full
Room
Room
Room
Full
Room
Full
Room
Full
Room
Full
Room
70
30
60
40
60
2.0
µs
µVrms
dB
48
240
120
- 0.3
- 0.6
0.2
-1
-2
40
0.2
0.3
0.6
1.0
1.5
190
250
340
420
65
80
µA
mV
%
1
2
%
ppm/°C
Symbol
V
e
,
C
OUT
1 µF, I
OUT
= 100 µA,
T
A
= 25 °C
Temp
a
Min
b
Limits
Typ
c
Max
b
Unit
www.vishay.com
2
Document Number: 73479
S-71832-Rev. C, 03-Sep-07
SiP2211
Vishay Siliconix
SPECIFICATIONS
Test Conditions Unless Specified
V
IN
= V
OUT
+ 1 V
e
, C
OUT
Parameter
Protection
Current Limit
Thermal Shutdown Temperature
Thermal Hysteresis
I
IL
V
OUT1
= 0 V
V
OUT1
= 0 V
Room
Room
Room
Room
150
300
280
450
165
25
460
700
mA
°C
Symbol
1 µF, I
OUT
= 100 µA,
T
A
= 25 °C
Temp
a
Min
b
Limits
Typ
c
Max
b
Unit
Notes:
a. Room = 25 °C, Full = - 40 to 85 °C.
b. The algebraic convention whereby the most negative value is a minimum and the most positive a maximum.
c. Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing.
d. Timing is measured from 90 % of LDO #1’s final value to 90 % of LDO #2’s final value.
e. For higher output of the regulator pair.
f. Dropout voltage is defined as the input to output differential voltage at which the output voltage drops 2 % below the output voltage measured
with a 1 V differential, provided that V
IN
does not drop below 2.25 V. When V
OUT(nom)
is less than 2.25 V, the output will be in regulation when
2.25 V - V
OUT(nom)
is greater than the dropout voltage specified.
FUNCTIONAL BLOCK DIAGRAM
V
IN
EN
1
LDO #1
V
OUT1
LDO #2
EN
2
V
OUT2
BP
Reference
GND
Fixed Voltage Version
V
IN
EN
1
LDO #1
V
OUT1
ADJ
1
LDO #2
V
OUT2
ADJ
2
EN
2
BP
Reference
GND
Adjustable
Voltage V
ersion
Document Number: 73479
S-71832-Rev. C, 03-Sep-07
www.vishay.com
3
SiP2211
Vishay Siliconix
PIN CONFIGURATION AND ORDERING INFORMATION
PowerPAK MLP33-10 with Large Pad
VOLTAGE OPTIONS
V
IN
EN
1
EN
2
BP
NC
1
2
3
4
5
10
9
8
7
6
V
OUT1
V
OUT1
V
OUT2
V
OUT2
NC
NC
GND
NC
NC
GND
10
9
8
7
6
1
2
3
4
5
V
IN
EN
1
EN
2
BP
NC
Voltage
Adj
1.5
1.6
1.8
1.85
1.9
2.0
2.1
2.5
2.6
2.7
2.8
2.85
2.9
3.0
3.1
3.2
3.3
3.4
3.5
3.6
Code (x, Z)
A
F
W
G
D
Y
H
E
J
K
L
M
N
O
P
Q
R
S
T
U
V
Exposed Pad
Top
View
V
OUT1
V
OUT2
Bottom
View
13
14
15
16
NC
NC
ADJ
2
GND
SW
12
11
10
9
8
G
N
D
7
G
N
D
6
N
C
5
N
C
V
I
N
1
2
3
4
V
I
N
EN
1
EN
2
BP
ADJ
1
Bottom
View
ORDERING INFORMATION
Part Number
SiP2211DMP-XZ-E3
SiP2211DLP-AA-E3
X: Output 1 voltage code
Z: Output 2 voltage code
Temp Range
- 40 to 85 °C
Package
PowerPAK MLP33-10
PowerPAK MLP44-16
Marking
11XZ
11AA
PIN DESCRIPTION
Pin Number
MLP33-10
1
2
3
4
5
6
MLP44-16
15, 16
1
6
2
3
4
5
7, 8
9
10
7
8
9
10
11
12
13
14
Name
V
IN
EN
1
NC
EN
2
BP
ADJ
1
NC
GND
GND
SW
ADJ
2
NC
NC
V
OUT2
V
OUT1
Function
Input voltage for the power MOSFETs and their gate drive
Enables LDO #1 output
No Connection
Enables LDO #2 output
Bypass for noise reduction
Feedback connection for LDO #1
No Connection
Ground
Ground for the internal N-Channel MOSFET switch
Feedback connection for LDO #2
No Connection
No Connection
Output of LDO #2 - 300 mA
Output of LDO #1 - 150 mA
The exposed pad on both packages must be connected externally to the GND pin.
The acceleration and gyroscope (MPU6050) data of Dr. Dot's micro quadcopter are for your reference: The acceleration and gyroscope data of Dr. Dot's micro quadcopter console software are good: 1) In s...
With the explosion of 5G , the future development of Wi-Fi is promisingIn the future digital construction, with the development of 5G , Wi-Fi is also constantly improving and perfecting. Wi-Fi 6 will ...
From September 7 to 9 , I went to Chengdu with my company to attend the Electronics Exhibition. It was my first time in Chengdu, so I was looking forward to it. I planned to spend about four days in C...
[i=s]This post was last edited by liufengjing9 on 2017-4-29 14:59[/i] Hello everyone, my question is: [b]How to process the remote control PWM signal and convert it into the target attitude (quadcopte...
I'd like to ask you, I'm new to LSM6DSO's FSM, and I wanted to recognize the shake gesture, but I couldn't find the shake gesture array in lsm6dso_fsm.c, and it was in this form:
/* Program: glance */...
[url=https://www.eeworld.com.cn/zhuanti/20091103mcu/20091103mcu.html]https://www.eeworld.com.cn/zhuanti/20091103mcu/20091103mcu.html[/url] Welcome to join the discussion~~...
This program is written to simulate the serial port hardware mechanism. When used, a timed interrupt can be set with a time interval of 1/4 baud rate. The receiving function is called once for ea...[Details]
introduction
1 The significance of using RTOS on MSP430
It is understandable that it is meaningless to use RTOS on MSP430. Because the hardware resources of MSP430 are limited (for exampl...[Details]
With the rapid development of science and technology, especially the widespread application of digital technology and various ultra-large-scale integrated circuits, electronic equipment, especially...[Details]
This article discusses how to wake up a touch-sensitive device such as a tablet without touching the device, using basic gesture recognition and novel proximity sensors. The article discusses the p...[Details]
1. Introduction
This design was made for participating in an electronic design competition. It effectively solved the problem of the operation and control of an electric car on a seesaw. The s...[Details]
With the advent of increasingly powerful processors, image sensors, memory, and other semiconductor devices, as well as the algorithms that enable them, computer vision can be implemented in a wide...[Details]
As cellular phones become more advanced, the power consumption of the system during operation and the power consumption during standby are also increasing. Therefore, the power management design of...[Details]
DSP (digital signal processor) is used more and more frequently in today's engineering applications. There are three main reasons for this: first, it has powerful computing power and is capable of ...[Details]
This paper establishes a fuel cell engine test platform based on the NI integrated hardware and software environment. This platform can realize the test and control of fuel cell engines and their a...[Details]
The data collector of the automatic weather station is generally designed based on a single-chip microcomputer or a PC/104 bus controller. It has the characteristics of good compatibility with PC, low...[Details]
We know that microcontroller development tools generally include real-time online emulators and programmers. Among them, online emulators are very good tools, but they are also more expensive...[Details]
Editor's note: In order to help technicians or engineers who have knowledge of PIC microcontroller assembly language quickly master the method of using C language to program PIC microcontrollers, t...[Details]
Instrument stepper motor
The stepper motor is an open-loop control element that converts electrical pulse signals into angular displacement or linear displacement. In the case of non...[Details]
introduction
MAX6636 is a multi-channel precision temperature monitor that can not only monitor local temperature, but also connect up to 6 diodes externally. Each channel has a programmable...[Details]
As people's requirements for safety and comfort in the process of driving cars continue to increase, automotive radars are widely used in the car's adaptive cruise system, collision avoidance syste...[Details]