XC6216C512PR [TOREX]

Regulator;
XC6216C512PR
型号: XC6216C512PR
厂家: Torex Semiconductor    Torex Semiconductor
描述:

Regulator

文件: 总13页 (文件大小:307K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
XC6216/XE6216Series  
ETR0321_004  
Voltage Regulators with Stand-by Function - Input Voltage: 28V  
Preliminary  
GENERAL DESCRIPTION  
XC6216/XE6216 series are highly precise, low noise, positive regulator ICs. The series consists of a voltage reference, an  
error amplifier, a current limiter, a thermal shutdown circuit and a phase compensation circuit plus a driver transistor.  
The output voltage is selectable in 100mV increments within the range of 2.0V to 12V using laser trimming technologies  
(XC6216B/XE6216B series). Furthermore, with external resistors, the output voltage can be set from 2.0V to 23V  
(XC6216C/XE6216E series). The series’ output stabilization capacitor (CL) is also compatible with low ESR ceramic  
capacitors.  
The over current protection circuit and the thermal shutdown circuit are built-in. These two protection circuits will operate  
when the output current reaches current limit level or the junction temperature reaches temperature limit level.  
The CE function enables the output to be turned off and the IC becomes a stand-by mode resulting in greatly reduced power  
consumption.  
FEATURES  
APPLICATIONS  
Max Output Current  
: 150mA~(VOUT(T)3.0V)  
: 100mA~(VOUT(T)<3.0V)  
: 300mV@IOUT=20mA  
: 2.0V~28.0V  
Car audio, Car navigation systems  
Note book computers, PDAs  
Home appliances  
Dropout Voltage  
Input Voltage Range  
Output Voltage  
Setting Range  
: 2.0V~12.0V(XC6216B/XE6216B)  
2.0V~23.0V(XC6216C/XE6216C)  
2.0v~12.0V(XC6216D/XE6216D)  
: Setting Voltage Accuracy±2%  
(Setting Voltage Accuracy±1%  
Possible)  
AV equipment (Cameras, VCRs, etc.)  
Wireless communication equipment  
(Cordless phones, etc.)  
High Accuracy  
Low Power Consumption : 5μA  
Stand-by Current  
: Less than 0.1μA  
: 40dB@1kHz  
: -40~+85℃  
: 0.1uF~1.0uF capacitor  
(Internal phase compensation)  
High Ripple Rejection  
OperatingTemperature  
External Capacitor  
Current Limit Circuit Built-In  
Thermal Shutdown Circuit Built-In  
Ceramic Capacitor Compatible  
Packages  
: SOT-25, SOT-89, SOT-89-5,  
USP-6C, SOT-223, TO-252  
* XC6216B and C types are preliminary  
TYPICAL APPLICATION CIRCUITS  
XC6216C/XE6216CSeries  
(Output VoltageExternallySet)  
XC6216B/XE6216BSeries  
(Fixed Output Voltage)  
VIN  
CE  
VOUT  
VOFB  
VIN  
CE  
VOUT  
R21  
R22  
CL  
CIN  
CL  
CIN  
1uF  
1uF  
VSS  
1uF  
VSS  
1uF  
1/13  
XC6216/XE6216 Series  
PIN CONFIGURATION  
* The dissipation pad for the USP-6C  
package should be solder-plated in  
recommended mount pattern and  
metal masking so as to enhance  
mounting strength and heat release.  
If the pad needs to be connected to  
other pins, it should be connected to  
the VSS (PIN # 5).  
PIN ASSIGNMENT  
XC6216B/XE6216B Series (Preliminary)  
PIN NUMBER  
PIN NAME  
FUNCTIONS  
SOT-25  
SOT-89-5  
USP-6C  
1
2
3
4
5
-
5
2
4
3
1
-
6
5
4
3
1
2
VIN  
VSS  
NC  
Power Input  
Ground  
No connection  
ON/OFF Control  
Output  
CE  
VOUT  
NC  
No connection  
XC6216C/XE6216C Series (Preliminary)  
PIN NUMBER  
PIN NAME  
FUNCTIONS  
SOT-25  
SOT-89-5  
USP-6C  
1
2
3
4
5
-
5
2
4
3
1
-
6
5
4
3
1
2
VIN  
VSS  
VOFB  
CE  
Power Input  
Ground  
Output Voltage Adjustment  
ON/OFF Control  
Output  
VOUT  
NC  
No connection  
XC6216D Series  
PIN NUMBER  
PIN NAME  
FUNCTIONS  
SOT-89  
SOT-223  
TO-252  
3
2
1
3
2
1
1
2
3
VIN  
VSS  
Power Input  
Ground  
VOUT  
Output  
2/13  
XC6216/XE6216  
Series  
PRODUCT CLASSIFICATION  
Ordering Information  
XC6216①②③④⑤⑥  
DESIGNATOR  
DESCRIPTION  
SYMBOL  
DESCRIPTION  
: Fixed output voltage, High Active  
B
C
D
Type and Options of  
Regulators  
: Output voltage externally set, High Active  
: Fixed output voltage, No CE function  
: For the voltage within 2.0V ~9.9V;  
e.g. 2.5V 25  
20 ~ 99  
A, B, C  
5.0V 5.  
: For the voltage above 10.0V;  
e.g. 10.6V A6  
11.2V B2  
②③  
Output Voltage  
12.0V C0  
: For C type (output voltage externally set), VOFB=2.0V only  
20  
2
: Output voltage 100mV increments, Within ±2% accuracy  
e.g. 2.5V ⇒ ②=2, =5, =2  
Output Voltage  
Accuracy  
: Output voltage 100mV increments, Within ±1% accuracy  
e.g. 5.0V ⇒ ②=5, =0, =1  
1
M
P
P
E
F
J
: SOT-25 ( for B and C types only)  
: SOT-89 (for D type only)  
: SOT-89-5 (for B and C types only)  
: USP-6C (for B and C types only)  
: SOT-223 (for D type only)  
Package  
: TO-252 (for D type only)  
R
L
: Embossed tape, standard feed  
Device Orientation  
: Embossed tape, reverse feed  
XE6216①②③④⑤⑥  
DESIGNATOR  
DESCRIPTION  
SYMBOL  
DESCRIPTION  
: Fixed output voltage, High Active  
: Output voltage externally set, High Active  
: For the voltage within 2.0V ~9.9V;  
e.g. 2.5V 25  
Type and Options of  
Regulators  
B
C
20 ~ 99  
5.0V 5.  
: For the voltage above 10.0V;  
②③  
Output Voltage  
e.g. 10.6V A6  
A, B, C  
11.2V B2  
12.0V C0  
: For C type (output voltage externally set), VOFB=2.0V only  
20  
2
: Output voltage 100mV increments, Within ±2% accuracy  
e.g. 2.5V ⇒ ②=2, =5, =2  
Output Voltage  
Accuracy  
: Output voltage 100mV increments, Within ±1% accuracy  
e.g. 5.0V ⇒ ②=5, =0, =1  
1
M
P
P
E
R
L
: SOT-25 ( for B and C types only)  
: SOT-89 (for D type only)  
Package  
: SOT-89-5 (for B and C types only)  
: USP-6C (for B and C types only)  
: Embossed tape, standard feed  
Device Orientation  
: Embossed tape, reverse feed  
*1: The B and c types are preliminary.  
*2: The XE products are preliminary.  
3/13  
XC6216/XE6216 Series  
BLOCK DIAGRAMS  
XC6216C/XE6216C Series  
XC6216B/XE6216B Series  
(SOT-25, SOT-89-5, USP-6C)  
(SOT-25, SOT-89-5, USP-6C)  
-
-
VIN  
VIN  
Current  
Limit  
Error  
Amp  
Current  
Limit  
Error  
Amp  
ON/OFF  
+
ON/OFF  
Control  
VOUT  
+
Control  
VOUT  
VOFB  
Thermal  
Protection  
Thermal  
Protection  
CE  
CE  
Voltage  
Reference  
Voltage  
Reference  
R11  
R12  
R11  
R12  
VSS  
VSS  
XC6216D Series  
(SOT-89, SOT-223, TO-252)  
-
VIN  
Current  
Limit  
Error  
Amp  
VOUT  
+
Thermal  
Protection  
Voltage  
Reference  
R11  
R12  
VSS  
ABSOLUTE MAXIMUM RATINGS  
PARAMETER  
Input Voltage  
Output Current  
Output Voltage  
CE Input Voltage  
FB Voltage  
SYMBOL  
VIN  
RATINGS  
VSS-0.3~30  
300 (*1)  
VSS-0.3~VIN+0.3  
VSS-0.3~VIN+0.3  
VSS-0.330  
250  
UNIT  
V
mA  
V
IOUT  
VOUT  
VCE  
V
VOFB  
V
SOT-25  
SOT-89  
SOT-89-5  
USP-6C  
SOT-223  
TO-252  
500  
500  
mW  
Power Dissipation  
Pd  
(TJ=25)  
100 (1100 *2)  
300 (1900 *2)  
T.B.D. (*3)  
-40~+85  
Operating Temperature Range  
Storage Temperature Range  
Topr  
Tstg  
-55~+125  
*1: IOUTPd / (VIN-VOUT)  
*2: When mounting on glass epoxy.  
Mounting board area: 1600mm2 (40mm×40mm)  
Copper plate area: 800mm2  
4/13  
XC6216/XE6216  
Series  
ELECTRICAL CHARACTERISTICS  
XC6216B Series  
Ta = 25℃  
PARAMETER  
Output Voltage  
SYMBOL  
CONDITIONS  
MIN.  
х0.98  
150  
TYP.  
VOUT(T)  
-
MAX.  
UNIT CIRCUIT  
VOUT(E)  
IOUT=20mA, VCE=VIN  
VIN=VOUT(T)+3.0V, VCE=VIN  
(VOUT(T)3V)  
х1.02  
V
mA  
-
Maximum Output Current  
Load Regulation  
IOUTMAX  
VIN=VOUT(T)+3.0V, VCE=VIN  
(VOUT(T)3V)  
mA  
mV  
100  
-
-
-
-
VIN=VOUT(T)+2.0V  
1mAIOUT100mA  
VCE=VIN  
VOUT  
40  
Dropout Voltage 1  
Dropout Voltage 2  
Supply Current  
Vdif1  
Vdif2  
IOUT=20mA, VCE=VIN  
IOUT=100mA, VCE=VIN  
VCE=VIN  
mV  
mV  
uA  
-
-
-
-
300  
1000  
5
-
-
-
ISS  
Stand-by Current  
Istby  
VCE=VSS  
uA  
0.01  
0.10  
VOUT /  
VOUT(T)+2.0VVIN25.0V  
IOUT=5mA, VCE=VIN  
VOUT(T)+2.0VVIN25.0V  
IOUT=13mA, VCE=VIN  
Line Regulation 1  
Line Regulation 2  
%/V  
0.01  
0.05  
0.10  
VINVOUT(T)  
VOUT /  
%/V  
V
-
0.03  
2.0  
-
0.15  
-
0.30  
25.0  
-
VINVOUT(T)  
Input Voltage  
Output Voltage  
VIN  
VOUT /  
IOUT=20mA, VCE=VIN  
-40℃≦Topr85℃  
ppm/℃  
±100  
ToprVOUT(T)  
Temperature Characteristics  
VIN=[VOUT(T)+2.0]V+0.5Vp-pAC  
IOUT=20mA, f=1kHz, VCE=VIN  
VIN=VOUT(T)+2.0V, VCE=VIN  
Ripple Rejection Rate  
PSRR  
dB  
-
40  
-
Short Current  
Ishort  
VCEH  
VCEL  
ICEH  
mA  
V
-
30  
-
-
CE ”H” Level Voltage  
CE ”L” Level Voltage  
CE ”H” Level Current  
CE ”L” Level Current  
1.0  
0
VIN  
0.5  
0.1  
0.1  
V
-
VIN=VCE=25.0V  
uA  
uA  
-0.1  
-0.1  
-
ICEL  
VIN=25.0V, VCE=VSS  
-
Thermal Shutdown Detect  
Temperature  
TTSD  
Junction Temperature  
Junction Temperature  
-
150  
-
-
Thermal Shutdown  
Release Temperature  
Hysteresis Range  
TTSR  
-
-
125  
25  
-
-
-
-
TTSD-TTSR  
NOTE:  
*1: VOUT(T): Specified output voltage  
*2: VOUT(E): Effective output voltage  
(i.e. the output voltage when “VOUT(T)+2.0V” is provided at the VIN pin while maintaining a certain IOUT value.)  
{Note 4}  
*3: Vdif={VIN1{Note 5} - VOUT1  
}
*4: VOUT1: A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT{VOUT(T)+2.0V} is input.  
*5: VIN1: The input voltage when VOUT1 appears as input voltage is gradually decreased.  
*6: Unless otherwise stated, VIN=VOUT(T)+2.0V.  
5/13  
XC6216/XE6216 Series  
XC6216C Series  
Ta = 25℃  
PARAMETER  
SYMBOL  
CONDITIONS  
MIN.  
TYP.  
MAX.  
UNIT CIRCUIT  
IOUT=20mA, VCE=VIN,  
VOFB=VOUT  
Output Voltage  
Divided Resistor  
VOUT(E)  
RFB  
1.96  
-
2.00  
2.09  
-
2.04  
V
VIN=VOUT=5.0V, VCE=VSS  
VOFB=VOUT  
Mohm  
mA  
-
-
VIN=VOUT(T)+3.0V, VCE=VIN ,  
VOFB=VOUT  
Maximum Output Current  
IOUTMAX  
100  
VIN=VOUT(T)+2.0V  
1mAIOUT100mA  
VCE=VIN, VOFB=VOUT  
IOUT=20mA, VCE=VIN,  
VOFB=VOUT  
Load Regulation  
VOUT  
mV  
-
40  
-
-
Dropout Voltage1  
Dropout Voltage2  
Vdif1  
Vdif2  
mV  
mV  
-
-
450  
IOUT=100mA, VCE=VIN,  
VOFB=VOUT  
2000  
-
-
Supply Current  
ISS  
VCE=VIN, VOFB=VOUT  
VCE=VSS, VOFB=VOUT  
VOUT(T)+2.0VVIN25.0V  
IOUT=5mA, VCE=VIN,  
VOFB=VOUT  
uA  
uA  
-
-
5
Stand-by Current  
Istby  
0.01  
VOUT /  
Line Regulation1  
Line Regulation2  
%/V  
%/V  
0.01  
0.03  
0.05  
0.15  
0.10  
0.30  
VINVOUT(T)  
VOUT(T)+2.0VVIN25.0V  
IOUT=13mA, VCE=VIN,  
VOFB=VOUT  
VOUT /  
VINVOUT(T)  
Input Voltage  
VIN  
V
-
2.0  
-
-
25.0  
-
Output Voltage  
VOUT /  
IOUT=20mA, VCE=VIN  
-40℃≦Topr85℃  
VIN=[VOUT(T)+2.0]V+0.5Vp-pAC  
IOUT=20mA, f=1kHz, VCE=VIN  
VOFB=VOUT  
ppm/℃  
±100  
Temperature CharacteristicsToprVOUT(T)  
Ripple Rejection Rate  
PSRR  
dB  
-
-
40  
30  
-
-
VIN=VOUT(T)+2.0V, VCE=VIN  
VOFB=VOUT  
Short Current  
Ishort  
mA  
CE ”H” Level Voltage  
CE ”L” Level Voltage  
CE ”H” Level Current  
VCEH  
VCEL  
ICEH  
VOFB=VOUT  
V
V
1.0  
0
-
-
-
VIN  
0.5  
0.1  
VOFB=VOUT  
VIN=VCE=25.0V, VOFB=VOUT  
VIN=25.0V, VCE=VSS  
VOFB=VOUT  
uA  
-0.1  
CE ”L” Level Current  
ICEL  
uA  
-0.1  
-
-
0.1  
Thermal Shutdown  
Detect Temperature  
Thermal Shutdown  
Release Temperature  
Hysteresis Range  
TTSD  
Junction Temperature  
Junction Temperature  
150  
-
-
TTSR  
-
-
125  
25  
-
-
-
-
TTSD-TTSR  
NOTE:  
*1: VOUT(T): Specified output voltage  
*2: VOUT(E): Effective output voltage  
(i.e. the output voltage when “VOUT(T)+2.0V” is provided at the VIN pin while maintaining a certain IOUT value.)  
*3: VOFB(E): Effective VOFB pin voltage  
{Note 4}  
*4: Vdif={VIN1{Note 5} - VOUT1  
}
*5: VOUT1: A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT{VOUT(T)+2.0V} is input.  
*6: VIN1: The input voltage when VOUT1 appears as input voltage is gradually decreased.  
*7: Unless otherwise stated, VIN=VOUT(T)+2.0V.  
6/13  
XC6216/XE6216  
Series  
ELECTRICAL CHARACTERISTICS (Continued)  
XC6216D Series  
Ta = 25℃  
PARAMETER  
Output Voltage  
SYMBOL  
CONDITIONS  
IOUT=20mA  
MIN.  
TYP.  
MAX.  
UNIT CIRCUIT  
VOUT(E)  
х0.98 VOUT(T) х1.02  
V
VIN=VOUT(T)+3.0V  
mA  
150  
100  
-
-
-
-
(VOUT(T)3.0V)  
Maximum Output Current  
IOUTMAX  
VIN=VOUT(T)+3.0V  
mA  
mV  
(VOUT(T)3.0V)  
VIN=VOUT(T)+2.0V  
Load Regulation  
VOUT  
-
40  
-
1mAIOUT100mA  
Dropout Voltage1  
Dropout Voltage2  
Supply Current  
Vdif1  
Vdif2  
IOUT=20mA  
mV  
mV  
uA  
-
-
-
200  
1000  
5
-
-
-
IOUT=100mA  
ISS  
VOUT /  
VINVOUT(T)  
VOUT /  
VINVOUT(T)  
VIN  
VOUT(T)+2.0VVIN25.0V  
IOUT=5mA  
Line Regulation1  
Line Regulation2  
%/V  
0.01  
0.05  
0.10  
VOUT(T)+2.0VVIN25.0V  
IOUT=13mA  
%/V  
V
-
0.03  
2.0  
-
0.15  
-
0.30  
25.0  
-
Input Voltage  
Output Voltage  
VOUT /  
IOUT=20mA, VCE=VIN  
-40℃≦Topr85℃  
ppm/℃  
±100  
Temperature CharacteristicsToprVOUT(T)  
VIN=[VOUT(T)+2.0]V+0.5Vp-pAC  
IOUT=20mA, f=1kHz  
Ripple Rejection Rate  
Short Current  
PSRR  
Ishort  
dB  
-
-
40  
30  
-
-
VIN=VOUT(T)+2.0V  
mA  
Thermal Shutdown  
Detect Temperature  
Thermal Shutdown  
Release Temperature  
Hysteresis Range  
TTSD  
Junction Temperature  
Junction Temperature  
-
150  
-
-
TTSR  
-
-
125  
25  
-
-
-
-
TTSD-TTSR  
NOTE:  
*1: VOUT(T): Specified output voltage  
*2: VOUT(E): Effective output voltage  
(i.e. the output voltage when “VOUT(T)+2.0V” is provided at the VIN pin while maintaining a certain IOUT value.)  
{Note 4}  
*3: Vdif={VIN1{Note 5} - VOUT1  
}
*4: VOUT1: A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT{VOUT(T)+2.0V} is input.  
*5: VIN1: The input voltage when VOUT1 appears as input voltage is gradually decreased.  
*6: Unless otherwise stated, VIN=VOUT(T)+2.0V.  
7/13  
XC6216/XE6216 Series  
TEST CIRCUITS  
Circuit ①  
VIN  
VOUT  
A
I OUT  
Ishort  
CIN=1uF  
V
CE  
CL=1uF  
V
VSS  
V
Circuit ②  
A
VIN  
VOUT  
OPEN  
CIN=1uF  
A
CE  
VSS  
Circuit ③  
VIN  
VOUT  
CE  
V
V
CL=1uF  
VSS  
Circuit ④  
A
VIN  
CE  
VOUT  
VOFB  
V
VSS  
* For testing the XC6216C series, please set VOFB=VOUT.  
8/13  
XC6216/XE6216  
Series  
OPERATIONAL EXPLANATION  
<Output Voltage Control>  
The voltage divided by resistors R11 & R12 is compared with the internal reference voltage by the error amplifier. The  
P-channel MOSFET, which is connected to the VOUT pin, is then driven by the subsequent output signal. The output  
voltage at the VOUT pin is controlled and stabilized by a system of negative feedback. The current limit circuit and short  
protect circuit operate in relation to the level of output current and heat dissipation. Further, the IC’s internal circuitry  
can be shutdown via the CE pin’s signal.  
-
VIN  
Current  
Limit  
Error  
Amp  
ON/OFF  
Control  
VOUT  
+
Thermal  
Protection  
CE  
Voltage  
Reference  
R11  
R12  
VSS  
<Current Limiter, Short-Circuit Protection>  
The XC6216/XE6216 series includes a current limit circuit, which aid the operations of the current limiter and circuit  
protection. When the load current reaches the current limit level, the fixed current limiter circuit operates and output voltage  
drops. The output voltage drops further and output current decreases. When the output pin is shorted, a current of about  
30mA flows.  
<CE Pin>  
The IC’s internal circuitry can be shutdown via the signal from the CE pin with the XC6216/XE6216 series. In shutdown  
mode, output at the VOUT pin will be pulled down by R11 and R12 to the VSS level. Note that as the standard  
XC6216/XE6216 series is ‘High Active/No pull down’, operations will become unstable with the CE pin open. We suggest  
that you use this IC with either a VIN voltage or a VSS voltage input at the CE pin. If this IC is used with the correct  
specifications for the CE pin, the operational logic is fixed and the IC will operate normally. However, supply current may  
increase as a result of through current in the IC’s internal circuitry if a medium voltage is applied.  
<Thermal Shutdown>  
When the junction temperature of the built-in driver transistor reaches the temperature limit level (150TYP.), the thermal  
shutdown circuit operates and the driver transistor will be set to OFF. The IC resumes its operation when the thermal  
shutdown function is released and the IC’s operation is automatically restored because the junction temperature drops to the  
level of the thermal shutdown release voltage.  
<Minimum Operating Voltage>  
For the stable operation of the IC, over 2.0V of input voltage is necessary. The output voltage may not be generated  
normally if the input voltage is less than 2.0V.  
NOTES ON USE  
1Please use this IC within the stated absolute maximum ratings. The IC is liable to malfunction should the ratings be  
exceeded.  
2Where wiring impedance is high, operations may become unstable due to the noise and/or phase lag depending on  
output current. Please strengthen VIN and VSS wiring in particular.  
3. Phase compensation inside the IC is performed in the XC6216/XE6216 series. Therefore, an abnormal oscillation does  
not occur even if there is no output capacitor CL. An input capacitor CIN around 0.1uF~1.0uF between the VIN pin and  
the VSS pin is required for input stability. Also, the output voltage fluctuation such as under shoot or over shoot, which  
occurs because of the load change can be controlled by placing the output capacitor CL around 0.1uF~1.0uF between  
the VOUT pin and VSS pin. The input capacitor (CIN) and the output capacitor (CL) should be placed to the IC as close as  
possible with a shorter wiring.  
9/13  
XC6216/XE6216 Series  
PACKAGING INFORMATION  
SOT-89-5  
SOT-25  
4.5±0.1  
+0.15  
-0.2  
1.6  
2.9±0.2  
0.42±0.06  
0.42±0.06  
+0.03  
-0.02  
0.42±0.06  
0.4  
+0.1  
0.4 -0.05  
2
4
5
5
1
4
0.05±0.05  
Φ1.0  
2
3
+0.1  
(0.95)  
0.15  
-0.05  
1.9±0.2  
1
2
3
+0.03  
0.4 -0.02  
0.42±0.06  
0.47±0.06  
0.42±0.06  
8
8
°
°
1.5±0.1  
1.5±0.1  
SOT-89  
USP-6C  
10/13  
XC6216/XE6216  
Series  
PACKAGING INFORMATION (Continued)  
SOT-223  
.
TO-252  
6. 55±0. 2  
5. 3 ± 0. 2  
0. 5 ±0. 1  
.
0. 75±0. 15  
0. 75±0. 15  
0. 75±0. 15  
0. 5 ±0. 1  
.
2. 28)  
2. 28)  
11/13  
XC6216/XE6216 Series  
PACKAGING INFORMATION (Continued)  
USP-6C Recommended Pattern Layout  
USP-6C Recommended Metal Mask Design  
12/13  
XC6216/XE6216  
Series  
1. The products and product specifications contained herein are subject to change without  
notice to improve performance characteristics. Consult us, or our representatives  
before use, to confirm that the information in this catalog is up to date.  
2. We assume no responsibility for any infringement of patents, patent rights, or other  
rights arising from the use of any information and circuitry in this catalog.  
3. Please ensure suitable shipping controls (including fail-safe designs and aging  
protection) are in force for equipment employing products listed in this catalog.  
4. The products in this catalog are not developed, designed, or approved for use with such  
equipment whose failure of malfunction can be reasonably expected to directly  
endanger the life of, or cause significant injury to, the user.  
(e.g. Atomic energy; aerospace; transport; combustion and associated safety  
equipment thereof.)  
5. Please use the products listed in this catalog within the specified ranges.  
Should you wish to use the products under conditions exceeding the specifications,  
please consult us or our representatives.  
6. We assume no responsibility for damage or loss due to abnormal use.  
7. All rights reserved. No part of this catalog may be copied or reproduced without the  
prior permission of Torex Semiconductor Ltd.  
13/13  

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