XC62KN4002TB [TOREX]

Fixed Negative Standard Regulator, 4V, CMOS, ROHS COMPLIANT, TO-92, 3 PIN;
XC62KN4002TB
型号: XC62KN4002TB
厂家: Torex Semiconductor    Torex Semiconductor
描述:

Fixed Negative Standard Regulator, 4V, CMOS, ROHS COMPLIANT, TO-92, 3 PIN

输出元件 调节器
文件: 总18页 (文件大小:1473K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
XC62KSeries  
ETR0313_006  
Negative Voltage Regulators  
GENERAL DESCRIPTION  
The XC62K series are highly precise, low power consumption, negative voltage regulators, manufactured using CMOS and  
laser trimming technologies. The series achieves high output currents with small input-output voltage differentials, and  
consists of a high precision voltage reference, an error correction circuit, and an output driver with current limitation.  
SOT-23 (150mW), SOT-89 (500mW), USP-6B (100mW) and TO-92 (300mW) packages are available.  
APPLICATIONS  
FEATURES  
Dropout Voltage  
: 0.12V@50mA (VOUT=-5.0V)  
Multi-function power supplies.  
Smart phones / Mobile phones.  
Mobile devices / terminals.  
: 0.38V100mA  
Maximum Output Current : 100mA (within MAX. power  
dissipation, VOUT= -5.0V)  
Output Voltage Range  
Highly Accurate  
:
-2.1V ~ -6.0V (0.1V increments)  
-5.0, -4.0, -3.0V, -2.5V standard  
(All other voltages are semi-custom)  
: Setting output voltage ±2%  
1% for semi-custom products)  
(
±
Low Power Consumption : 3.0μA @ VOUT= -5.0V (TYP.)  
Output Voltage Temperature Characteristics  
: ±100ppm/(TYP.)  
Line Regulation  
: 0.1%/V (TYP.)  
CMOS Low Power Consumption  
Packages  
: SOT-23  
SOT-89  
TO-92  
USP-6B  
Environmentally Friendly : EU RoHS Compliant, Pb Free  
TYPICAL PERFORMANCE  
TYPICAL APPLICATION CIRCUIT  
CHARACTERISTICS  
1/18  
XC62K Series  
PIN CONFIGURATION  
NC  
-VIN  
NC  
-VOUAT  
VSS  
NC  
*The dissipation pad for the USP-6B  
package should be solder-plated in  
recommended mount pattern and metal  
masking so as to enhance mounting  
strength and heat release.  
-VOUT VSS -VIN  
If the pad needs to be connected to other  
pins, it should be connected to the VSS pin.  
TO-92  
(SIDE VIEW)  
PIN ASSIGNMENT  
PIN NUMBER  
PIN NAME  
FUNCTIONS  
SOT-23  
SOT-89/TO-92  
USP-6B  
2
3
1
-
3
2
1
-
6
4
-VIN  
VSS  
Power Supply Input  
Ground  
2
-VOUT  
NC  
Output  
1.3.5  
No Connection  
PRODUCT CLASSIFICATION  
Ordering Information  
*1  
( )  
XC62K①②③④⑤⑥⑦-⑧  
MARK  
ITEM  
SYMBOL  
DESCRIPTION  
Polarity of Output Voltage  
N
21 ~ 60  
0
Negative  
e.g. VOUT – 2.1V → ②=2, =1  
VOUT – 6.0V → ②=6, =0  
②③  
Output Voltage  
Temperature Characteristics  
Output Voltage Accuracy  
+ 100ppm (TYP.)  
1
+ 1% (Semi-custom)  
+ 2%  
2
MR  
SOT-23  
MR-G  
PR  
SOT-23  
SOT-89  
PR-G  
TH  
SOT-89  
Packages  
TO-92:Paper type  
TO-92:Paper type  
TO-92:Bag type  
TO-92:Bag type  
USP-6B  
⑥⑦-⑧  
(Order Unit)  
TH-G  
TB  
TB-G  
DR  
DR-G  
USP-6B  
(*1) The “-G” suffix denotes Halogen and Antimony free as well as being fully EU RoHS compliant.  
2/18  
XC62K  
Series  
BLOCK DIAGRAM  
ABSOLUTE MAXIMUM RATINGS  
Ta=25℃  
PARAMETER  
Input Voltage  
Output Current  
Output Voltage  
SYMBOL  
VIN  
RATINGS  
UNITS  
-12.0  
200  
V
mA  
V
IOUT  
VOUT  
-VDD-0.3~VIN+0.3  
150  
SOT-23  
SOT-89  
TO-92  
500  
300  
Power Dissipation  
Pd  
mW  
USP-6B  
100  
Operating Ambient Temperature  
Storage Temperature  
Topr  
Tstg  
-40 ~ +85  
-40 ~ +125  
Note: Please ensure that IOUT is less than Pd/(VOUT-VIN).  
3/18  
XC62K Series  
ELECTRICAL CHARACTERISTICS  
XC62KN Series  
Ta=25℃  
CIRCUIT  
PARAMETER  
Output Voltage  
SYMBOL  
CONDITIONS  
MIN.  
TYP.  
MAX.  
UNITS  
V
IOUT=20mA  
VIN=VOUT(T)(*1)-1.0V  
(*2)  
E1-1(*4)  
VOUT(T)  
E1-2(*4)  
VOUT(E)  
2
4
4
VIN=VOUT(T)-1.0V  
E2(*4)  
Maximum Output Current  
Load Regulation  
IOUTmax  
mA  
mV  
V
OUT(E)VOUT(T)×0.9  
VIN=VOUT(T)1.0V  
1mAIOUT{E3}mA  
IOUT={E4-1}(*4)mA  
IOUT={E4-2}(*4)mA  
VOUT  
-
40  
80  
Vdif1(*3)  
Vdif2(*3)  
ISS  
-
-
-
120  
380  
E5-1(*4)  
300  
600  
E5-2(*4)  
Dropout Voltage  
Supply Current  
mV  
3
1
VIN=VOUT(T)-1.0V  
μA  
IOUT=20mA  
VOUT  
/
VINVOUT(T)-1.0V  
VIN-10.0V  
Line Regulation  
-
-
-
0.1  
-
0.3  
-10.0  
-
%V  
V
3
-
(VINVOUT  
)
Input Voltage  
VIN  
IOUT=20mA  
Output Voltage  
VOUT  
/
ppm/  
±100  
-
40℃≦Topr85℃  
Temperature Characteristics (VINVOUT  
)
*1: VOUT(T)=Specified output voltage  
*2: VOUT(E)=Effective output voltage  
i.e. the output voltage when "VOU(*T4()T) -1.0V" is provided at the VIN pin while maintaining a certain IOUT value).  
*3: Vdif1,Vdif2 =Vdif={VIN1(*5) - VOUT1  
}
VOUT1 =A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T) -1.0V} is input.  
VIN1=The input voltage when a voltage equal to 98% of VOUT(E) appears.  
*4: Refer to the “Voltage chart”.  
4/18  
XC62K  
Series  
ELECTRICAL CHARACTERISTICS (Continued)  
Conditions Chart  
Voltage Chart  
SYMBOL  
E1-1  
E1-2  
E1-1  
E1-2  
E2  
E5-1  
E5-2  
E3  
E4-1  
E4-2  
PARAMETER  
MAXIMUM  
LOAD  
REGULATION  
(mV)  
OUTPUT  
OUTPUT  
SUPPLY  
SETTING  
DROPOUT VOLTAGE  
(mV)  
OUTPUT  
VOLTAGE (V)  
(2% products)  
VOLTAGE (V)  
(1% products)  
CURRENT1  
OUTPUT  
CURRENT  
(μA)  
VOLTAGE(V)  
(mA)  
VOUT(E)  
MAX  
IOUTmax  
ISS  
IOUT  
Vdif1  
Vdif2  
VOUT(T)  
CONDITIONS  
CONDITIONS  
CONDITIONS  
MIN  
MIN  
-
MAX  
-
MIN  
40  
TYP  
MAX  
6.0  
2.1  
2.2  
2.3  
2.4  
2.5  
2.6  
2.7  
2.8  
2.9  
3.0  
3.1  
3.2  
3.3  
3.4  
3.5  
3.6  
3.7  
3.8  
3.9  
4.0  
4.1  
4.2  
4.3  
4.4  
4.5  
4.6  
4.7  
4.8  
4.9  
5.0  
5.1  
5.2  
5.3  
5.4  
5.5  
5.6  
5.7  
5.8  
5.9  
6.0  
2.058  
2.156  
2.254  
2.352  
2.450  
2.548  
2.646  
2.744  
2.842  
2.940  
3.038  
3.136  
3.234  
3.332  
3.430  
3.528  
3.626  
3.724  
3.822  
3.920  
4.018  
4.116  
4.214  
4.312  
4.410  
4.508  
4.606  
4.704  
4.802  
4.900  
4.998  
5.096  
5.194  
5.292  
5.390  
5.488  
5.586  
5.684  
5.782  
5.880  
2.142  
2.244  
2.346  
2.448  
2.550  
2.652  
2.754  
2.856  
2.958  
3.060  
3.162  
3.264  
3.366  
3.468  
3.570  
3.672  
3.774  
3.876  
3.978  
4.080  
4.182  
4.284  
4.386  
4.488  
4.590  
4.692  
4.794  
4.896  
4.998  
5.100  
5.202  
5.304  
5.406  
5.508  
5.610  
5.712  
5.814  
5.916  
6.018  
6.120  
2.5  
3.0  
30  
30  
60  
-
-
-
-
-
-
2.475  
2.574  
2.673  
2.772  
2.871  
2.970  
3.069  
3.168  
3.267  
3.366  
3.465  
3.564  
3.663  
3.762  
3.861  
3.960  
4.059  
4.158  
4.257  
4.356  
4.455  
4.554  
4.653  
4.752  
4.851  
4.950  
5.049  
5.148  
5.247  
5.346  
5.445  
5.544  
5.643  
5.742  
5.841  
5.940  
2.525  
2.626  
2.727  
2.828  
2.929  
3.030  
3.131  
3.232  
3.333  
3.434  
3.535  
3.636  
3.737  
3.838  
3.939  
4.040  
4.141  
4.242  
4.343  
4.444  
4.545  
4.646  
4.747  
4.848  
4.949  
5.050  
5.151  
5.252  
5.353  
5.454  
5.555  
5.656  
5.757  
5.858  
5.959  
6.060  
60  
40  
40  
80  
80  
6.5  
45  
45  
90  
100  
7.0  
50  
50  
100  
Note) The symbol is as same as that in the chart of electrical characteristics.  
5/18  
XC62K Series  
TEST CIRCUITS  
Circuit 1. Supply Current  
Circuit 2. Output Voltage  
The measurement value at the time VIN=VOUT(T)(TYP.) -1V  
is defined as output voltage.  
Circuit 3. Line Regulation Dropout Voltage  
Circuit 4. Load Regulation, Maximum Output Current  
6/18  
XC62K  
Series  
NOTES ON USE  
1) For the phenomenon of temporal and transitional voltage decrease or voltage increase, the IC may be damaged or  
deteriorated if IC is used beyond the absolute MAX. specifications.  
2) Please ensure that values for input capacitance, CIN and out capacitance, CL, are more than 1μF (Tantalum).  
3) Torex places an importance on improving our products and their reliability.  
We request that users incorporate fail-safe designs and post-aging protection treatment when using Torex products in their  
systems.  
7/18  
XC62K Series  
TYPICAL PERFORMANCE CHARACTERISTICS  
(1) Output Voltage vs. Output Current  
XC62KN3002-3.0V)ꢀꢀ  
VIN4.0V  
3.10  
3.05  
3.00  
2.95  
2.90  
2.85  
2.80  
Topr=  
30℃  
80℃  
25℃  
0
20  
40  
60  
80  
100  
Output Current:IOUTmA)  
8/18  
XC62K  
Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
(2) Output Voltage vs. Input Voltage  
XC62KN4002(-4.0V)  
9/18  
XC62K Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
(3) Dropout Voltage vs. Output Current  
(4) Supply Current vs. Input Voltage  
10/18  
XC62K  
Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
(5) Output Voltage vs. Ambient Temperature  
Ambient Temperature : Topr()  
Ambient Temperature : Topr()  
Ambient Temperature : Topr()  
(6) Supply Current vs. Ambient Temperature  
Ambient Temperature : Topr()  
Ambient Temperature : Topr()  
Ambient Temperature : Topr()  
(7) Input Transient Response 1  
11/18  
XC62K Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
(7) Input Transient Response 1  
(8) Input Transient Response 2  
12/18  
XC62K  
Series  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
(9) Load Transient Response  
(10) Ripple Rejection Rate  
13/18  
XC62K Series  
PACKAGING INFORMATION  
Unit : mm  
SOT-89  
Unit : mm  
SOT-23  
Unit : mm  
TO-92  
Paper type  
Bag  
14/18  
XC62K  
Series  
PACKAGING INFORMATION (Continued)  
USP-6B  
Unit : mm  
USP-6B Reference Pattern Layout  
USP-6B Reference Metal Mask Design  
15/18  
XC62K Series  
MARKING RULE  
SOT-23, SOT-89  
represents integral number of output voltage  
3
MARK  
VOLTAGE (V)  
MARK  
VOLTAGE (V)  
2
3
4
2.X  
3.X  
4.X  
5
6
5.X  
6.X  
1
2
represents decimal number of output voltage  
SOT-23  
(TOP VIEW)  
MARK  
VOLTAGE (V)  
MARK  
VOLTAGE (V)  
A
B
C
D
E
x.0  
x.1  
x.2  
x.3  
x.4  
F
H
K
L
x.5  
x.6  
x7  
x.8  
x.9  
M
represents polarity of output voltage  
MARK  
5
POLARITY  
Negative  
1
2
3
SOT-89  
(TOP VIEW)  
represents production lot number  
0 to 9, A to Z repeated, reverse character 0 to 9, A to Z repeated  
(G, I, J, O, Q, W excluded)  
TO-92  
represents polarity of output voltage  
MARK  
N
OUTPUT CONFIGURATION  
(Negative)  
②③ represents output voltage (ex.)  
MARK  
VOLTAGE (V)  
3
3
3.3  
5.0  
5
0
TO-92  
represents temperature characteristics  
(SIDE VIEW)  
TEMPERATURE  
CHARACTERISTICS  
+100 ppm (TYP.)  
MARK  
0
represents output voltage accuracy  
MARK  
OUTPUT VOLTAGE ACCURACY  
Within +1% (semi-custom)  
Within +2%  
1
2
represents least significant digit of production year (ex.)  
MARK  
PRODUCTION YEAR  
3
4
2003  
2004  
represents production lot number  
0 to 9, A to Z repeated (G, I, J, O, Q, W excluded)  
16/18  
XC62K  
Series  
MARKING RULE (Continued)  
USP-6B  
represents production series  
MARK  
K
PRODUCT SERIES  
XC62KNxx0xDx  
represents polarity of output voltage  
MARK  
N
POLARITY  
PRODUCT SERIES  
XC62KNxx0xDx  
(Negative)  
USP-6B  
(TOP VIEW)  
③④ represents output voltage (ex.)  
MARK  
VOLTAGE (V)  
PRODUCT SERIES  
3
3
3.3  
5.0  
XC62KN330xDx  
XC62KN500xDx  
5
0
represents temperature characteristics  
TEMPERATURE  
MARK  
0
PRODUCT SERIES  
XC62KNxx0xDx  
CHARACTERISTICS  
+ 100 ppm (TYP.)  
represents production lot number  
0 to 9, A to Z repeated (G, I, J, O, Q, W excluded)  
Note: No character inversion used.  
17/18  
XC62K 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 datasheet 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 datasheet.  
3. Please ensure suitable shipping controls (including fail-safe designs and aging  
protection) are in force for equipment employing products listed in this datasheet.  
4. The products in this datasheet 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 datasheet 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 datasheet may be copied or reproduced without the  
prior permission of TOREX SEMICONDUCTOR LTD.  
18/18  

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