GS2911Y33 [ETC]
300mA CMOS Positive LDO Voltage Regulator; 300毫安正CMOS LDO稳压器型号: | GS2911Y33 |
厂家: | ETC |
描述: | 300mA CMOS Positive LDO Voltage Regulator |
文件: | 总11页 (文件大小:338K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
GS2911
300mA CMOS Positive LDO Voltage Regulator
Product Description
The GS2911 is a positive voltage output, three-pin regulator that provides a high current even
when the input/output voltage differential is small. Low power consumption and high accuracy
is achieved through CMOS and laser trimming technologies.
The GS2911 consists of a high-precision voltage reference, an error correction circuit, and a
current limited output driver. Transient response to load variations has improved in comparison
to the existing series.
TO-92 and SOT-89 packages are available.
Features
Applications
ꢀ
Maximum output current: 250mA (within ꢀ Wireless Communication Systems
the maximum power dissipation, ꢀ Battery Powered Systems
OUT=5.0V) Palmtops
V
ꢀ
ꢀ
Output voltage: 2.0V to 6.0V in 0.1V ꢀ Portable Cameras and Video Recorders
increments (1.1V to 1.9V for custom ꢀ Voltage Regulator for Microprocessor
products)
ꢀ
Voltage Regulator for CD-ROM Drivers,
LAN Cards, 56K Modem
ꢀ
ꢀ
ꢀ
Highly accurate: Output voltage ± 2%
(±1% for semi-custom products)
Low power consumption: Typ. 2.0µA at
V
OUT = 5.0V
Output voltage temperature coefficient
0.1%/V: Typ. ± 100ppm/℃
ꢀ
ꢀ
Input stability: Typ. 2.0%/V
Small input/output differential: IOUT
=
100mA at VOUT = 5.0V with a 0.12V
differential.
ꢀ
SOT-89 and TO-92 packages are
available
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1
GS2911
GS2911
Globaltech Semiconductor
Block Diagram
Vin
Vout
Current
Limiter
+
-
Voltage
Reference
Vss
Package and Pin Assignments
GS2911YXX (SOT-89)
GS2911NXX (TO-92)
1
2
3
1
2
3
Pin1 = GND
Pin2 = VIN
Pin1 = GND
Pin2 = VIN
Pin3 = VOUT
Pin3 = VOUT
Ordering Information
SOT-89
TO-92
Output
GS2911Y15
GS2911Y18
GS2911Y20
GS2911Y25
GS2911Y33
GS2911Y50
GS2911N15
GS2911N18
GS2911N20
GS2911N25
GS2911N33
GS2911N50
1.5V
1.8V
2.0V
2.5V
3.3V
5.0V
*For additional available fixed voltages contact factory.
*Add “F” means lead free part.
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GS2911
GS2911
Globaltech Semiconductor
Absolute Maximum Ratings
Parameter
Symbol
Ratings
Input Voltage
VIN
12V
Output Current
Output Voltage
IOUT
500 mA
VOUT
Vss-0.3 to VIN+0.3
Continuous Total Power Dissipation
TO-92
PD
500 mW
550 mW
SOT-89
0℃ to 80℃
-40℃ to 125℃
260℃
Operating Ambient Temperature
Storage temperature Range
Lead Temperature (10 sec)
Topr
Tstg
TLEAD
Electrical Characteristics VOUT(T) =2.0 (Note 1)
Parameter
Symbol
Conditions
Min
Typ.
Max
Unit
VOUT (E)
(Note 2)
IOUT = 40mA
VIN = 3.0V
Output voltages
1.960
2.000
2.040
V
VIN = 3.0V
Maximum output current
Load stability
IOUT max
100
mA
mV
VOUT(E) ≧ 1.8V
VIN = 3.0V
△VOUT
45
90
1mA ≦IOUT ≦60mA
IOUT=60mA
Input-Output
Voltage differential (Note 3)
Supply current
Vdif
180
400
1.0
360
700
100
mV
mV
µA
IOUT=120mA
VIN = 3.0V
ISS
△VOUT
IOUT = 40mA
Line regulation
0.2
0.3
10
%/V
V
3.0V≦VIN≦10.0V
△VIN * △VOUT
VIN
Input voltage
Output voltage
△VOUT
IOUT = 40mA
±100
ppm/℃
Temperature characteristics
-40℃≦Topr≦85℃
△Topr * △VOUT
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GS2911
GS2911
Globaltech Semiconductor
Electrical Characteristics VOUT(T) =2.5V (Note 1)
Parameter
Symbol
Conditions
Min
Typ.
Max
Unit
VOUT (E)
(Note 2)
IOUT = 40mA
VIN = 3.5V
Output voltages
2.450
2.500
2.550
V
VIN = 3.5V
Maximum output current
Load stability
IOUT max
150
mA
mV
VOUT(E) ≧ 2.25V
VIN = 3.5V
△VOUT
45
90
1mA ≦IOUT ≦80mA
IOUT=80mA
Input-Output
Voltage differential (Note 3)
Supply current
Vdif
180
400
1.0
360
700
100
mV
mV
µA
IOUT=160mA
Iss
△VOUT
VIN = 3.5V
IOUT = 40mA
Line regulation
Input voltage
0.2
0.3
10
%/V
V
3.5V≦VIN≦10.0V
△VIN * △VOUT
VIN
△VOUT
Output voltage
IOUT = 40mA
±100
ppm/℃
Temperature characteristics
-40℃≦Topr≦85℃
△Topr * △VOUT
Electrical Characteristics VOUT(T) =3.3 (Note 1)
Parameter
Symbol
Conditions
Min
Typ.
Max
Unit
VOUT (E)
(Note 2)
IOUT = 40mA
VIN = 4.3V
Output voltages
3.234
3.3
3.366
V
VIN = 4.3V
Maximum output current
Load stability
IOUT max
165
mA
mV
VOUT(E) ≧ 2.97V
VIN = 4.3V
△VOUT
45
90
1mA ≦IOUT ≦80mA
VIN = 4.3V
Input-Output
Voltage differential (Note 3)
Supply current
Vdif
IOUT=160mA
VIN = 4.3V
400
1.0
700
100
mV
µA
Iss
△VOUT
IOUT = 40mA
Line regulation
0.2
0.3
10
%/V
4.3V≦VIN≦10.0V
△VIN * △VOUT
VIN
Input voltage
V
△VOUT
Output voltage
IOUT = 40mA
±100
ppm/℃
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GS2911
GS2911
Globaltech Semiconductor
Temperature characteristics
△Topr * △VOUT
-40℃≦Topr≦125℃
Electrical Characteristics VOUT(T) =5.0 (Note 1)
Parameter
Symbol
Conditions
Min
Typ
Max
Unit
VOUT(E)
(Note 2)
IOUT = 40mA
VIN = 6.0V
Output voltages
4.900
5.000
5.100
V
VIN = 6.0V
Maximum output current
Load stability
IOUT max
165
mA
mV
VOUT(E) ≥ 5.0V
VIN = 6.0V
∆VOUT
45
90
1mA ≤ IOUT ≤80mA
VIN = 6.0V
Input-Output
Voltage differential (Note 3)
Supply current
Vdif
Vdif
IOUT =200mA
380
1.0
600
100
mV
Iss
VIN = 6.0V
IOUT = 40mA
µA
∆VOUT
Line regulation
Input voltage
0.2
0.3
10
%/V
V
4.3V ≤ VIN ≤ 10.0V
∆VINi∆VOUT
VIN
∆VOUT
Output voltage
IOUT = 40mA
±100
ppm/℃
Temperature characteristics
-40℃ ≤ Topr ≤125℃
∆Topri∆VOUT
Note1. VOUT(T) = Specified output voltage.
Note2. VOUT(E) = Effective output voltage (i.e. the output voltage when “ VOUT(T)+1.0V” is provided at the VIN pin while
maintaining a certain IOUT value.)
Note3. Vdif = (VIN 1 (Note 4) – VOUT (E))
Note4. VIN 1 = The input voltage at the time 98% of VOUT(E) is output (input voltage has been gradually reduced).
Typical Performance Characteristics
Output Voltage vs. Output Current
GS2911 (3.3V)
GS2911 (5V)
VIN=4.3V
VIN=6V
CIN=1μ F(Tantalum), CL=1μ F(Tantalum)
CIN=1μ F(Tantalum), CL=1μ F(Tantalum)
3. 4
5. 1
5. 0
-40℃
Topr =25℃
3. 3
3. 2
- 30℃
80℃
4. 9
4. 8
4. 7
85℃
Topr =25℃
3. 1
3. 0
0
20 40 60 80 100 120 140 160 180
0
20 40 60 80 100 120 140 160 180
Output Current IOUT (mA)
OUTPUT CURRENT: IOUT(mA)
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GS2911
GS2911
Globaltech Semiconductor
Output Voltage vs. Input Voltage
GS2911 (3.3V)
GS2911 (5V)
Topr=25℃
Topr=25℃
CIN=1μ F(Tantalum), CL=1μ F(Tantalum)
CIN=1μ F( Tant al um), CL=1μ F( Tant al um)
3. 5
3. 3
5. 2
5. 0
IOUT=1mA
40mA
IOUT=1mA
40mA
3. 1
2. 9
4. 8
4. 6
10mA
10mA
2. 7
2. 5
4. 4
4. 2
3. 8
2. 8
3. 3
4. 5
5. 0
5. 5
Input Voltage VIN(V)
INPUT VOLTAGE : VIN(V)
Topr=25℃
Topr=25℃
CIN=1μ F(Tantalum), CL=1μ F(Tantalum)
CIN=1μ F(Tantalum), CL=1μ F(Tantalum)
3. 40
3. 35
3. 30
3. 25
3. 20
3. 15
5. 10
5. 05
IOUT=1mA,10mA
IOUT=1mA
5. 00
4. 95
40mA
10mA
40mA
4. 90
4. 85
3
4
5
6
7
8
9
10
5
6
7
8
9
10
Input Voltage VIN (V)
INPUT VOLTAGE:VIN(V)
Input/Output Voltage Differential vs. Output Current
GS2911 (3.3V)
GS2911 (5V)
CIN=1μ F(Tantalum), CL=1μ F(Tantalum)
CIN=1μ F( Tant al um), CL=1μ F( Tant al um)
1. 0
1. 0
0. 8
0. 8
0. 6
0. 6
0. 4
Topr =25℃
80℃
Topr =25℃
85℃
0. 4
0. 2
0. 2
-30℃
0. 0
0. 0
-40℃
-0. 2
-0.2
0 20 40 60 80 100 120 140 160 180
0 20 40 60 80 100 120 140 160 180
OUTPUT CURRENT : IOUT (mA)
OUTPUT CURRENT : IOUT (mA)
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GS2911
GS2911
Globaltech Semiconductor
Supply Current vs. Input Voltage
GS2911 (3.3V)
GS2911 (5V)
2. 50
3
2
1
0
Topr =25℃
2. 25
80℃
85℃
Topr =25℃
2. 00
- 40℃
-30℃
1. 75
0
2
4
6
8
10
1. 50
3
4
5
6
7
8
9
10
INPUT VOLTAGE:VIN(V)
Input Voltage VIN(V)
Load Transient Response
GS2911 (3.3V)
GS2911 (5V)
VIN=4.3V, CL=1μ F(Tantalum)
VIN=6V, CL=1μ F(Tantalum)
5. 3
4. 3
200
160
120
7
6
200
160
Output Voltage
Output Voltage
120
3. 3
2. 3
1. 3
0. 3
5
4
3
2
80
40
0
80
Output Current
Output Current
40mA
1mA
40mA
1mA
40
0
TIME(2msec/div)
TIME(2msec/div)
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GS2911
GS2911
Globaltech Semiconductor
Typical Application Circuits
Open
Vout
Vin
A
Vin Vout
Vin
Vss
A
Vin
Vss
(Trantalum)
1uF
1uF
(Trantalum)
V
Notes on Use
1. There is a possibility that oscillation may occur as a result of the impedance present
between the power supply and the IC’s input. Where impedance is 10Ω or more, please
use a capacitor (CIN) of at least 1µF. With a large output current, operations can be
stabilised by increasing capacitor size (CIN). If CIN is small and capacitor size (CL) is
increased, there is a possibility of oscillation due to input impedance. In such cases, either
increasing the size of CIN or decreasing the size of CL can stabilize operations.
2. Please ensure that output current (IOUT) is less than PD + (VIN - VOUT) and does not exceed
the stipulated Continuous Total Power Dissipation value (PD).
3. Should you wish to increase output current (IOUT) and/or have the capability to exceed the
stipulated PD value, using a current boost circuit (similar to the one shown below) is likely
to lead to oscillation. With such applications, we recommend use of a boost type voltage
regulator, such as the GS2911 series.
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GS2911
GS2911
Globaltech Semiconductor
Package Dimension
SOT-89 PLASTIC PACKAGE
Dimensions In Millimeters
Dimensions In Inches
Symbol
Min
Max
Min
Min
A
b
1.450
0.440
0.360
4.450
1.500
1.550
0.480
0.400
4.550
1.700
0.570
0.017
0.014
0.175
0.059
0.061
0.019
0.016
0.179
0.067
C
E
E2
E3
e
1.400Ref
1.500BSC
3.000BSC
0.055Ref
0.059BSC
0.118BSC
e1
H
4.150
2.450
0.900
4.250
2.550
1.100
0.163
0.096
0.035
0.167
0.100
0.043
D
L
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GS2911
GS2911
Globaltech Semiconductor
TO-92 PLASTIC PACKAGE
0+1.0
0+1.0
21.0max
1.0max
16±0.5
6.0±0.5
9.0+0.5
4.0±0.2
2.5+0.4 or 2.5-0.1
6.35±0.5
12.7±0.3
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GS2911
GS2911
Globaltech Semiconductor
Information furnished is believed to be accurate and reliable. However Globaltech Semiconductor
assumes no responsibility for the consequences of use of such information nor for any infringement of
patents or other rights of third parties, which may result from its use. No license is granted by implication
or otherwise under any patent or patent rights of Globaltech Semiconductor. Specifications mentioned in
this publication are subject to change without notice. This publication supersedes and replaces all
information without express written approval of Globaltech Semiconductor.
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GS2911
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