REG711-33 [TI]

50mA SWITCHED-CAP DC/DC CONVERTER;
REG711-33
型号: REG711-33
厂家: TEXAS INSTRUMENTS    TEXAS INSTRUMENTS
描述:

50mA SWITCHED-CAP DC/DC CONVERTER

文件: 总13页 (文件大小:736K)
中文:  中文翻译
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REG711  
REG711  
www.ti.com  
50mA SWITCHED-CAP DC/DC CONVERTER  
FEATURES  
DESCRIPTION  
The REG711 is a switched capacitor voltage con-  
verter, which produces a regulated, low ripple output  
voltage from an unregulated input voltage. A wide  
input supply voltage of 1.8V to 5.5V makes the  
REG711 ideal for a variety of battery sources, such as  
single cell Li-Ion, or two and three cell Nickel or  
Alkaline based chemistries.  
WIDE INPUT RANGE: 1.8V TO 5.5V  
5V VERSION: 2.7V TO 5.5V  
AUTOMATIC STEP-UP/STEP-DOWN  
OPERATION  
LOW INPUT CURRENT RIPPLE  
LOW OUTPUT VOLTAGE RIPPLE  
The input voltage may vary above and below the  
output voltage and the output will remain in regula-  
tion. It works equally well for step up or down without  
the need for an inductor, providing low EMI DC/DC  
conversion. The high switching frequency allows the  
use of small surface-mount capacitors, saving board  
space and reducing cost. The REG711 is thermally  
protected and current limited, protecting the load and  
the regulator during fault conditions. Typical ground  
pin current (quiescent current) is 1mA at full load,  
60µA with no load, and less than 1µA in shutdown  
mode. This regulator comes in a thin MSOP-8 pack-  
age with a component height of less than 1.1mm.  
MINIMUM NUMBER OF EXTERNAL  
COMPONENTS—NO INDUCTORS  
1MHz INTERNAL OSCILLATOR ALLOWS  
SMALL CAPACITORS  
“SHUTDOWN” MODE  
THERMAL AND CURRENT LIMIT  
PROTECTION  
FIVE OUTPUT VOLTAGES AVAILABLE:  
5.0V, 3.3V, 3.0V, 2.7V, 2.5V  
THIN, SMALL PACKAGE: MSOP-8  
APPLICATIONS  
SMART CARD READERS  
CELLULAR PHONES  
CPUMP  
ENABLE  
SIM CARD SUPPLIES  
PORTABLE COMMUNICATION DEVICES  
PERSONAL DIGITAL ASSISTANTS  
MODEMS  
+
+
REG711  
R
CIN  
PGND  
COUT  
LED  
GND  
NOTEBOOK AND PALM-TOP COMPUTERS  
ELECTRONIC GAMES  
HANDHELD METERS  
PCMCIA CARDS  
CARD BUSES  
LCD DISPLAYS  
Copyright © 2000, Texas Instruments Incorporated  
SBVS027A  
Printed in U.S.A. February, 2001  
SPECIFICATIONS  
Boldface limits apply over the specified temperature range, TA = 40°C to +85°C  
At TA = +25°C, VIN = VOUT/2 + 0.75V, IOUT = 5mA, CIN = COUT = 2.2µF, CPUMP = 0.22µF, VENABLE = 1.3V, unless otherwise noted(1)  
.
REG711EA  
PARAMETER  
CONDITIONS  
MIN  
TYP  
MAX  
UNITS  
INPUT VOLTAGE  
Guaranteed Startup  
REG711-5.0  
See conditions under “output voltage” with a  
resistive load not lower than typical VOUT/IOUT  
2.7  
1.8  
5.5  
5.5  
V
V
All Other Models  
.
OUTPUT VOLTAGE  
REG711-5.0  
IOUT 15mA, 2.7V < VIN < 5.5V  
IOUT 50mA, 3.0V < VIN < 5.5V  
IOUT 15mA, 1.8V < VIN < 5.5V  
IOUT 50mA, 2.2V < VIN < 5.5V  
IOUT 15mA, 1.8V < VIN < 5.5V  
IOUT 50mA, 2.2V < VIN < 5.5V  
IOUT 15mA, 1.8V < VIN < 5.5V  
IOUT 50mA, 2.0V < VIN < 5.5V  
IOUT 15mA, 1.8V < VIN < 5.5V  
IOUT 50mA, 2.0V < VIN < 5.5V  
4.75  
3.14  
2.85  
2.57  
2.38  
5.0  
3.3  
3.0  
2.7  
2.5  
5.25  
3.46  
3.15  
2.83  
2.62  
V
V
V
V
V
REG711-3.3  
REG711-3.0  
REG711-2.7  
REG711-2.5  
OUTPUT CURRENT  
Nominal  
50  
mA  
mA  
Short Circuit(2)  
80  
1.0  
90  
40  
OSCILLATOR FREQUENCY  
EFFICIENCY(4)  
NOTE(3)  
IOUT = 15mA, VIN = 2.7V, REG711-5.0  
IOUT = 50mA  
MHz  
%
RIPPLE VOLTAGE(1)  
mVp-p  
ENABLE CONTROL  
VIN = 1.8 to 5.5V  
Logic High Input Voltage  
Logic Low Input Voltage  
Logic High Input Current  
Logic Low Input Current  
1.3  
0.2  
VIN  
0.4  
100  
100  
V
V
nA  
nA  
THERMAL SHUTDOWN  
Shutdown temperature  
Shutdown recovery  
160  
140  
°C  
°C  
SUPPLY CURRENT  
(quiescent current)  
In Shutdown Mode  
IOUT = 0mA  
VIN = 1.8 to 5.5V, Enable = 0V  
60  
0.01  
100  
2
µA  
µA  
TEMPERATURE RANGE  
Specification  
Operating  
TA  
TA  
TA  
–40  
–55  
–65  
+85  
+125  
+150  
°C  
°C  
°C  
Storage  
Thermal Resistance, θJA  
MSOP-8  
150  
°C/W  
NOTES: (1) Effective series resistance (ESR) of capacitors is < 0.1. (2) The supply circuit is twice the output short-circuit current. (3) The converter regulates by  
enabling and disabling periods of switching cycles. The switching frequency is the oscillator frequency during an active period. (4) See efficiency curves for other  
VIN/VOUT configurations.  
REG711  
2
SBVS027A  
PIN CONFIGURATION  
SIMPLIFIED BLOCK DIAGRAM  
Top View  
MSOP  
CPUMP  
0.22µF  
7
6
3
VIN  
REG711  
CIN  
2.2µF  
NC  
Enable  
VIN  
1
2
3
4
8
7
6
5
VOUT  
8
CPUMP+  
CPUMP–  
PGND  
VOUT  
COUT  
2.2µF  
Control  
GND  
&
2
Enable  
Thermal  
PGND  
5
4
GND  
Simplified Block Diagram  
ABSOLUTE MAXIMUM RATINGS(1)  
ELECTROSTATIC  
DISCHARGE SENSITIVITY  
This integrated circuit can be damaged by ESD. Texas Instru-  
mentsrecommendsthatallintegratedcircuitsbehandledwith  
appropriate precautions. Failure to observe proper handling  
and installation procedures can cause damage.  
Supply Voltage................................................................... –0.3V to +5.5V  
Enable Input ...........................................................................0.3V to VIN  
Output Short-Circuit Duration ...................................................... Indefinite  
Operating Temperature Range....................................... –55°C to +125°C  
Storage Temperature Range .......................................... –65°C to +150°C  
Junction Temperature ..................................................... –55°C to +150°C  
Lead Temperature (soldering, 3s) ................................................. +240°C  
NOTE: (1) Stresses above these ratings may cause permanent damage.  
Exposure to absolute maximum conditions for extended periods may degrade  
device reliability.  
ESD damage can range from subtle performance degradation  
to complete device failure. Precision integrated circuits may  
be more susceptible to damage because very small parametric  
changes could cause the device not to meet its published  
specifications.  
PACKAGE/ORDERING INFORMATION  
PACKAGE  
SPECIFIED  
OUTPUT  
VOLTAGE  
DRAWING  
NUMBER  
TEMPERATURE  
RANGE  
PACKAGE  
MARKING(1)  
ORDERING  
NUMBER(2)  
TRANSPORT  
MEDIA  
PRODUCT  
PACKAGE  
5V Output  
REG711EA-5  
5.0V  
"
"
MSOP-8  
337  
"
"
40°C to +85°C  
C11B  
"
"
REG711EA-5  
REG711EA-5/250  
REG711EA-5/2K5  
Rails  
Tape and Reel  
Tape and Reel  
"
"
"
"
"
"
3.3V Output  
REG711EA-3.3  
3.3V  
"
"
MSOP-8  
337  
"
"
40°C to +85°C  
C11C  
"
"
REG711EA-3.3  
REG711EA-3.3/250  
REG711EA-3.3/2K5  
Rails  
Tape and Reel  
Tape and Reel  
"
"
"
"
"
"
3V Output  
REG711EA-3.0  
3.0V  
"
"
MSOP-8  
337  
"
"
40°C to +85°C  
C11D  
"
"
REG711EA-3  
REG711EA-3/250  
REG711EA-3/2K5  
Rails  
Tape and Reel  
Tape and Reel  
"
"
"
"
"
"
2.7V Output  
REG711EA-2.7  
2.7V  
"
"
MSOP-8  
337  
"
"
40°C to +85°C  
C11F  
"
"
REG711EA-2.7  
REG711EA-2.7/250  
REG711EA-2.7/2K5  
Rails  
Tape and Reel  
Tape and Reel  
"
"
"
"
"
"
2.5V Output  
REG711EA-2.5  
"
2.5V  
"
MSOP-8  
337  
"
40°C to +85°C  
C11G  
"
REG711EA-2.5  
REG711EA-2.5/250  
Rails  
Tape and Reel  
"
"
NOTE: (1) Voltage will be marked on reel. (2) Models with a slash (/) are available only in Tape and Reel in the quantities indicated (e.g., /2K5 indicates 2500 devices  
per reel). Ordering 2500 pieces of REG711EA-5/2K5will get a single 2500-piece Tape and Reel.  
REG711  
SBVS027A  
3
TYPICAL PERFORMANCE CURVES  
At TA = +25°C, VIN = VOUT/2 + 0.75V, IOUT = 5mA, CIN = COUT = 2.2µF, CPUMP = 0.22µF, unless otherwise noted.  
EFFICIENCY vs LOAD CURRENT  
REG711 - 5.0V  
EFFICIENCY vs VIN  
REG711-5.0  
100  
80  
60  
40  
20  
90  
80  
70  
60  
50  
40  
30  
VIN = 2.7V  
IOUT = 15mA  
VIN = 3.0V  
REG711-2.5  
REG711-3.3  
VIN = VOUT  
REG711-3.0  
4.5  
REG711-2.7  
1.5  
2
2.5  
3
3.5  
4
5
5.5  
0.1  
1
10  
100  
VIN (V)  
Load Current (mA)  
EFFICIENCY vs LOAD CURRENT  
REG711 - 3.3V  
EFFICIENCY vs LOAD CURRENT  
REG711 - 3.0V  
90  
80  
70  
60  
50  
40  
30  
90  
80  
70  
60  
50  
40  
30  
VIN = 1.8V  
VIN = 1.8V  
VIN = 2.2V  
VIN = 2.2V  
VIN = VOUT  
VIN = VOUT  
0.1  
1
10  
100  
0.1  
1
10  
100  
Load Current (mA)  
Load Current (mA)  
EFFICIENCY vs LOAD CURRENT  
REG711 - 2.7V  
EFFICIENCY vs LOAD CURRENT  
REG711 - 2.5V  
90  
80  
70  
60  
50  
40  
30  
90  
80  
70  
60  
50  
40  
30  
VIN = 1.8V  
VIN = 1.8V  
VIN = 2.0V  
VIN = 2.0V  
VIN = VOUT  
VIN = VOUT  
0.1  
1
10  
100  
0.1  
1
10  
100  
Load Current (mA)  
Load Current (mA)  
REG711  
4
SBVS027A  
TYPICAL PERFORMANCE CURVES (Cont.)  
At TA = +25°C, VIN = VOUT/2 + 0.75V, IOUT = 5mA, CIN = COUT = 2.2µF, CPUMP = 0.22µF, unless otherwise noted.  
SHORT-CIRCUIT LOAD CURRENT vs VIN  
OUTPUT RIPPLE VOLTAGE  
COUT = 2.2µF  
250  
225  
200  
175  
150  
125  
100  
75  
20mV/div  
20mV/div  
REG711-3.0  
IOUT = 15mA  
V
IN = 2.4V  
COUT = 10µF  
50  
25  
BW = 20MHz  
0
1.5  
2
2.5  
3
3.5  
4
4.5  
5
5.5  
2.5µs/div  
VIN (V)  
MAXIMUM LOAD CURRENT vs INPUT VOLTAGE  
A 85°C  
T
OUTPUT RIPPLE VOLTAGE vs VIN  
60  
50  
40  
30  
20  
10  
0
60  
50  
40  
30  
20  
10  
0
REG711-5.0  
COUT = 2.2µF  
REG711-3.0  
COUT = 2.2µF  
REG711-2.5  
OUT = 2.2µF  
REG711-2.5  
REG711-2.7  
REG711-5.0  
C
T
A 80°C  
REG711-5.0  
REG711-5.0  
COUT = 10µF  
REG711-2.5  
REG711-3.0  
REG711-3.3  
REG711-3.0  
COUT = 10µF  
COUT = 10µF  
1.5  
2
2.5  
3
3.5  
4
4.5  
5
5.5  
6
1.5  
2
2.5  
3
3.5  
4
4.5  
5
5.5  
VIN (V)  
VIN (V)  
OUTPUT RIPPLE VOLTAGE vs VIN  
INPUT CURRENT AT TURN-ON  
60  
50  
40  
30  
20  
10  
0
REG711-3.3V  
IN = 3.0V  
IOUT = 50mA  
REG711-3.3  
V
C
OUT  
= 2.2µF  
REG711-2.7  
C
OUT  
= 2.2µF  
IIN  
100mA/div  
2V/div  
REG711-3.3  
= 10µF  
REG711-2.7  
VOUT  
C
OUT  
C
OUT  
= 10µF  
BW = 20MHz  
1.5  
2
2.5  
3
3.5  
VIN (V)  
4
4.5  
5
5.5  
50µs/div  
REG711  
SBVS027A  
5
TYPICAL PERFORMANCE CURVES (Cont.)  
At TA = +25°C, VIN = VOUT/2 + 0.75V, IOUT = 5mA, CIN = COUT = 2.2µF, CPUMP = 0.22µF, unless otherwise noted.  
SUPPLY CURRENT vs TEMPERATURE (No Load)  
LOAD TRANSIENT RESPONSE  
100  
80  
60  
40  
20  
0
IOUT = 0  
50mA/div  
ILOAD  
VOUT  
20mV/div  
40 30 20 10  
0
10 20 30 40 50 60 70 80 90  
10µs/div  
Temperature (°C)  
SUPPPLY CURRENT vs TEMPERATURE (Not Enabled)  
LINE TRANSIENT RESPONSE  
20  
18  
16  
14  
12  
10  
8
REG711-3.3  
I
LOAD = 50mA  
4.5V  
3.5V  
VIN  
2V/div  
VOUT  
50mV/div  
6
4
2
BW = 20MHz  
0
40 30 20 10  
0
10 20 30 40 50 60 70 80 90  
50µs/div  
Temperature (°C)  
OUTPUT VOLTAGE VS TEMPERATURE  
OUTPUT VOLTAGE DRIFT HISTOGRAM  
0.2  
0.1  
30  
25  
20  
15  
10  
5
0.0  
0.1  
0.2  
0.3  
0.4  
0.5  
0.6  
0
40 20  
0
20  
40  
60  
80  
100 120 140  
140 120 100 80 60 40 20  
VOUT Drift (ppm/°C)  
0
20 40 60  
Junction Temperature (°C)  
REG711  
6
SBVS027A  
A conversion clock of 50% duty cycle is generated. During  
the first half cycle the FET switches are configured as shown  
in Figure 2A, and CPUMP charges to VIN. During the second  
half cycle the FET switches are configured as shown in  
Figure 2B, and the voltage on CPUMP is added to VIN. The  
output voltage is regulated by skipping clock cycles as  
necessary.  
THEORY OF OPERATION  
The REG711 regulated charge pump provides a regulated  
output voltage for input voltages ranging from less than the  
output to greater than the output. This is accomplished by  
automatic mode switching within the device. When the input  
voltage is greater than the required output, the unit functions  
as a variable pulse-width switch-mode regulator. This opera-  
tion is shown in Figure 1. Transistors Q1 and Q3 are held off,  
Q4 is on, and Q2 is switched as needed to maintain a  
regulated output voltage.  
PEAK CURRENT REDUCTION  
In normal operation, the charging of the pump and output  
capacitors usually leads to relatively high peak input cur-  
rents which can be much higher than that of the average load  
current. The regulator incorporates circuitry to limit the  
input peak current, lowering the total EMI production of the  
device and lowering output voltage ripple and input current  
ripple. Input capacitor (CIN) supplies most of the charge  
required by input current peaks.  
VIN  
Q1  
Q3  
Q2  
Q4  
OFF  
OFF  
SWITCHED  
CPUMP  
PROTECTION  
CIN  
ON  
The regulator has thermal shutdown circuitry that protects it  
from damage caused by overload conditions. The thermal  
protection circuitry disables the output when the junction  
temperature reaches approximately 160°C, allowing the de-  
vice to cool. When the junction temperature cools to ap-  
proximately 140°C, the output circuitry is automatically re-  
enabled. Continuously running the regulator into thermal  
shutdown can degrade reliability. The regulator also pro-  
vides current limit to protect itself and the load.  
VOUT  
COUT  
Step-Down (Buck) Mode  
FIGURE 1. Simplified Schematic of the REG711 Operating  
in the Step-Down Mode.  
SHUTDOWN MODE  
A control pin on the regulator can be used to place the device  
into an energy-saving shutdown mode. In this mode, the  
output is disconnected from the input as long as VIN is  
greater than or equal to minimum VIN and the input quies-  
cent current is reduced to 2µA maximum.  
When the input voltage is less than the required output  
voltage, the device switched to a step-up or boost mode of  
operation, as shown in Figure 2.  
VIN  
VIN  
Q1  
Q3  
Q2  
Q4  
Q1  
Q3  
Q2  
Q4  
OFF  
ON  
ON  
ON  
OFF  
CPUMP  
CPUMP  
+  
+
OFF  
CIN  
OFF  
CIN  
ON  
VOUT  
VOUT  
COUT  
COUT  
(A)  
(B)  
Step-Up (Boost) Mode  
FIGURE 2. Simplified Schematic of the REG711 Operating in the Step-Up or Boost Mode.  
REG711  
SBVS027A  
7
CAPACITOR SELECTION  
The approximate efficiency is given by:  
For minimum output voltage ripple, the output capacitor  
COUT should be a ceramic, surface-mount type. Tantalum  
capacitors generally have a higher Effective Series Resis-  
tance (ESR) and may contribute to higher output voltage  
ripple. Leaded capacitors also increase ripple due to the  
higher inductance of the package itself. To achieve best  
operation with low input voltage and high load current, the  
input and pump capacitors (CIN, CPUMP respectively) should  
also be surface-mount ceramic types. In all cases, X7R or  
X5R dielectric are recommended. See the Typical Operating  
Circuit shown in Figure 3 for component values.  
Efficiency (%) = VOUT/(2 • VIN) •100 (step-up operating mode)  
or  
VOUT • 100/VIN (step-down operating mode)  
Table II lists the approximate values of the input voltage at  
which the device changes internal operating mode.  
OPERATING MODE  
PRODUCT  
CHANGES AT VIN OF  
REG711-2.5  
REG711-2.7  
REG711-3.0  
REG711-3.3  
REG711-5.0  
> 3.2V  
> 3.4V  
> 3.7V  
> 4.0V  
CPUMP  
0.22µF  
Step-up only  
TABLE II.  
7
6
ENABLE  
CIN  
2
3
8
See efficiency curves in the Typical Performance Curves  
section for various loads and input voltages.  
VIN  
VOUT  
REG711  
COUT  
2.2µF  
2.2µF  
LAYOUT  
5
4
GND  
PGND  
Large ripple currents flow in the VIN, PGND and VOUT  
traces. To minimize both input and output ripple, keep the  
capacitors as close as possible to the regulator using short,  
direct circuit traces.  
A suggested PCB routing is shown in Figure 4. The trace  
lengths from the input and output capacitors have been kept  
as short as possible. A star ground system has been imple-  
mented, with pin 5 as the center of the star. No ground plane  
is provided in other layers, as this will provide capacitive  
coupling for noise spikes.  
FIGURE 3. Typical Operating Circuit.  
With light loads or higher input voltage, a smaller 0.1µF  
pump capacitor (CPUMP) and smaller 1µF input and output  
capacitors (CIN and COUT, respectively) can be used. To  
minimize output voltage ripple, increase the output capaci-  
tor, COUT, to 10µF or larger.  
The capacitors listed in Table I have been used with the  
REG711. This is only a representative list of those parts that  
are compatible, and not the results of a complete survey of  
an industry-wide offering.  
EFFICIENCY  
The efficiency of the charge pump regulator varies with the  
output voltage version, the applied input voltage, the load  
current, and the internal operation mode of the device.  
NOTE: All Capacitors 1206 Size  
FIGURE 4. Suggested PCB Design for Minimum Ripple.  
RATED  
DIELECTRIC  
MATERIAL  
PACKAGE  
SIZE  
WORKING  
VOLTAGE  
MANUFACTURER  
PART NUMBER  
VALUE  
TOLERANCE  
Kemet  
C1206C255K8RAC  
C1206C224K8RAC  
ECJ3YB1A225K  
ECJ3VB1C224K  
LMK325BJ106KN  
EMK316BJ225KL  
TKM316BJ224KF  
2.2µF  
0.22µF  
2.2µF  
0.22µF  
10µF  
±10%  
±10%  
±10%  
±10%  
±10%  
±10%  
±10%  
X7R  
X7R  
X7R  
X7R  
X5R  
X7R  
X7R  
1206  
1206  
1206  
1206  
1210  
1206  
1206  
10V  
10V  
10V  
16V  
10V  
16V  
25V  
Panasonic  
Taiyo Yuden  
2.2µF  
0.22µF  
TABLE I. Capacitors That Have Been Successfully Used With The REG711.  
REG711  
8
SBVS027A  
PACKAGE OPTION ADDENDUM  
www.ti.com  
17-May-2014  
PACKAGING INFORMATION  
Orderable Device  
Status Package Type Package Pins Package  
Eco Plan  
Lead/Ball Finish  
MSL Peak Temp  
Op Temp (°C)  
Device Marking  
Samples  
Drawing  
Qty  
(1)  
(2)  
(6)  
(3)  
(4/5)  
REG711EA-2.5/250  
ACTIVE  
VSSOP  
DGK  
8
250  
Green (RoHS  
& no Sb/Br)  
CU NIPDAUAG  
Level-2-260C-1 YEAR  
C11G  
C11G  
REG711EA-2.5/250G4  
REG711EA-2.5/2K5  
ACTIVE  
ACTIVE  
VSSOP  
VSSOP  
DGK  
DGK  
8
8
TBD  
Call TI  
Call TI  
2500  
Green (RoHS  
& no Sb/Br)  
CU NIPDAUAG  
Level-2-260C-1 YEAR  
REG711EA-2.5/2K5G4  
REG711EA-3.3/250  
ACTIVE  
ACTIVE  
VSSOP  
VSSOP  
DGK  
DGK  
8
8
TBD  
Call TI  
Call TI  
250  
250  
250  
250  
2500  
Green (RoHS  
& no Sb/Br)  
CU NIPDAUAG  
Level-2-260C-1 YEAR  
C11C  
C11C  
C11D  
C11D  
C11D  
REG711EA-3.3/250G4  
REG711EA-3/250  
ACTIVE  
ACTIVE  
ACTIVE  
ACTIVE  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
DGK  
DGK  
DGK  
DGK  
8
8
8
8
Green (RoHS  
& no Sb/Br)  
CU NIPDAUAG  
CU NIPDAUAG  
CU NIPDAUAG  
CU NIPDAUAG  
Level-2-260C-1 YEAR  
Level-2-260C-1 YEAR  
Level-2-260C-1 YEAR  
Level-2-260C-1 YEAR  
Green (RoHS  
& no Sb/Br)  
REG711EA-3/250G4  
REG711EA-3/2K5  
Green (RoHS  
& no Sb/Br)  
Green (RoHS  
& no Sb/Br)  
REG711EA-3/2K5G4  
REG711EA-5/250  
ACTIVE  
ACTIVE  
VSSOP  
VSSOP  
DGK  
DGK  
8
8
TBD  
Call TI  
Call TI  
250  
250  
Green (RoHS  
& no Sb/Br)  
CU NIPDAUAG  
Level-2-260C-1 YEAR  
C11B  
C11B  
C11B  
REG711EA-5/250G4  
REG711EA-5/2K5  
ACTIVE  
ACTIVE  
ACTIVE  
VSSOP  
VSSOP  
VSSOP  
DGK  
DGK  
DGK  
8
8
8
Green (RoHS  
& no Sb/Br)  
CU NIPDAUAG  
CU NIPDAUAG  
Call TI  
Level-2-260C-1 YEAR  
Level-2-260C-1 YEAR  
Call TI  
2500  
Green (RoHS  
& no Sb/Br)  
REG711EA-5/2K5G4  
TBD  
(1) The marketing status values are defined as follows:  
ACTIVE: Product device recommended for new designs.  
LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect.  
NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design.  
PREVIEW: Device has been announced but is not in production. Samples may or may not be available.  
OBSOLETE: TI has discontinued the production of the device.  
Addendum-Page 1  
PACKAGE OPTION ADDENDUM  
www.ti.com  
17-May-2014  
(2) Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check http://www.ti.com/productcontent for the latest availability  
information and additional product content details.  
TBD: The Pb-Free/Green conversion plan has not been defined.  
Pb-Free (RoHS): TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements for all 6 substances, including the requirement that  
lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes.  
Pb-Free (RoHS Exempt): This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and package, or 2) lead-based die adhesive used between  
the die and leadframe. The component is otherwise considered Pb-Free (RoHS compatible) as defined above.  
Green (RoHS & no Sb/Br): TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame retardants (Br or Sb do not exceed 0.1% by weight  
in homogeneous material)  
(3) MSL, Peak Temp. - The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature.  
(4) There may be additional marking, which relates to the logo, the lot trace code information, or the environmental category on the device.  
(5) Multiple Device Markings will be inside parentheses. Only one Device Marking contained in parentheses and separated by a "~" will appear on a device. If a line is indented then it is a continuation  
of the previous line and the two combined represent the entire Device Marking for that device.  
(6) Lead/Ball Finish - Orderable Devices may have multiple material finish options. Finish options are separated by a vertical ruled line. Lead/Ball Finish values may wrap to two lines if the finish  
value exceeds the maximum column width.  
Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information  
provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and  
continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals.  
TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release.  
In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis.  
Addendum-Page 2  
PACKAGE MATERIALS INFORMATION  
www.ti.com  
26-Jan-2013  
TAPE AND REEL INFORMATION  
*All dimensions are nominal  
Device  
Package Package Pins  
Type Drawing  
SPQ  
Reel  
Reel  
A0  
B0  
K0  
P1  
W
Pin1  
Diameter Width (mm) (mm) (mm) (mm) (mm) Quadrant  
(mm) W1 (mm)  
REG711EA-2.5/250  
REG711EA-2.5/2K5  
REG711EA-3.3/250  
REG711EA-3/250  
REG711EA-3/2K5  
REG711EA-5/250  
REG711EA-5/2K5  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
DGK  
DGK  
DGK  
DGK  
DGK  
DGK  
DGK  
8
8
8
8
8
8
8
250  
2500  
250  
180.0  
330.0  
180.0  
180.0  
330.0  
180.0  
330.0  
12.4  
12.4  
12.4  
12.4  
12.4  
12.4  
12.4  
5.3  
5.3  
5.3  
5.3  
5.3  
5.3  
5.3  
3.4  
3.4  
3.4  
3.4  
3.4  
3.4  
3.4  
1.4  
1.4  
1.4  
1.4  
1.4  
1.4  
1.4  
8.0  
8.0  
8.0  
8.0  
8.0  
8.0  
8.0  
12.0  
12.0  
12.0  
12.0  
12.0  
12.0  
12.0  
Q1  
Q1  
Q1  
Q1  
Q1  
Q1  
Q1  
250  
2500  
250  
2500  
Pack Materials-Page 1  
PACKAGE MATERIALS INFORMATION  
www.ti.com  
26-Jan-2013  
*All dimensions are nominal  
Device  
Package Type Package Drawing Pins  
SPQ  
Length (mm) Width (mm) Height (mm)  
REG711EA-2.5/250  
REG711EA-2.5/2K5  
REG711EA-3.3/250  
REG711EA-3/250  
REG711EA-3/2K5  
REG711EA-5/250  
REG711EA-5/2K5  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
VSSOP  
DGK  
DGK  
DGK  
DGK  
DGK  
DGK  
DGK  
8
8
8
8
8
8
8
250  
2500  
250  
210.0  
367.0  
210.0  
210.0  
367.0  
210.0  
367.0  
185.0  
367.0  
185.0  
185.0  
367.0  
185.0  
367.0  
35.0  
35.0  
35.0  
35.0  
35.0  
35.0  
35.0  
250  
2500  
250  
2500  
Pack Materials-Page 2  
IMPORTANT NOTICE  
Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, enhancements, improvements and other  
changes to its semiconductor products and services per JESD46, latest issue, and to discontinue any product or service per JESD48, latest  
issue. Buyers should obtain the latest relevant information before placing orders and should verify that such information is current and  
complete. All semiconductor products (also referred to herein as “components”) are sold subject to TI’s terms and conditions of sale  
supplied at the time of order acknowledgment.  
TI warrants performance of its components to the specifications applicable at the time of sale, in accordance with the warranty in TI’s terms  
and conditions of sale of semiconductor products. Testing and other quality control techniques are used to the extent TI deems necessary  
to support this warranty. Except where mandated by applicable law, testing of all parameters of each component is not necessarily  
performed.  
TI assumes no liability for applications assistance or the design of Buyers’ products. Buyers are responsible for their products and  
applications using TI components. To minimize the risks associated with Buyers’ products and applications, Buyers should provide  
adequate design and operating safeguards.  
TI does not warrant or represent that any license, either express or implied, is granted under any patent right, copyright, mask work right, or  
other intellectual property right relating to any combination, machine, or process in which TI components or services are used. Information  
published by TI regarding third-party products or services does not constitute a license to use such products or services or a warranty or  
endorsement thereof. Use of such information may require a license from a third party under the patents or other intellectual property of the  
third party, or a license from TI under the patents or other intellectual property of TI.  
Reproduction of significant portions of TI information in TI data books or data sheets is permissible only if reproduction is without alteration  
and is accompanied by all associated warranties, conditions, limitations, and notices. TI is not responsible or liable for such altered  
documentation. Information of third parties may be subject to additional restrictions.  
Resale of TI components or services with statements different from or beyond the parameters stated by TI for that component or service  
voids all express and any implied warranties for the associated TI component or service and is an unfair and deceptive business practice.  
TI is not responsible or liable for any such statements.  
Buyer acknowledges and agrees that it is solely responsible for compliance with all legal, regulatory and safety-related requirements  
concerning its products, and any use of TI components in its applications, notwithstanding any applications-related information or support  
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harm and take appropriate remedial actions. Buyer will fully indemnify TI and its representatives against any damages arising out of the use  
of any TI components in safety-critical applications.  
In some cases, TI components may be promoted specifically to facilitate safety-related applications. With such components, TI’s goal is to  
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requirements. Nonetheless, such components are subject to these terms.  
No TI components are authorized for use in FDA Class III (or similar life-critical medical equipment) unless authorized officers of the parties  
have executed a special agreement specifically governing such use.  
Only those TI components which TI has specifically designated as military grade or “enhanced plastic” are designed and intended for use in  
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which have not been so designated is solely at the Buyer's risk, and that Buyer is solely responsible for compliance with all legal and  
regulatory requirements in connection with such use.  
TI has specifically designated certain components as meeting ISO/TS16949 requirements, mainly for automotive use. In any case of use of  
non-designated products, TI will not be responsible for any failure to meet ISO/TS16949.  
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Applications  
Audio  
www.ti.com/audio  
amplifier.ti.com  
dataconverter.ti.com  
www.dlp.com  
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Communications and Telecom www.ti.com/communications  
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Data Converters  
DLP® Products  
DSP  
Computers and Peripherals  
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Industrial  
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Clocks and Timers  
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Copyright © 2014, Texas Instruments Incorporated  

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