AZ393CP-G1 [DIODES]

Comparator, 2 Func, 2000uV Offset-Max, 1300ns Response Time, BIPolar, PDIP8,;
AZ393CP-G1
型号: AZ393CP-G1
厂家: DIODES INCORPORATED    DIODES INCORPORATED
描述:

Comparator, 2 Func, 2000uV Offset-Max, 1300ns Response Time, BIPolar, PDIP8,

放大器 光电二极管
文件: 总10页 (文件大小:672K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
General Description  
Features  
The AZ393/393C series consists of two independent  
precision voltage comparators with an offset voltage  
specification as low as 1mV. The input common mode  
voltage range of these comparators includes ground,  
even when operated from a single power supply volt-  
age. Operation from split power supplies is also possi-  
ble and the low power supply current drain is  
independent of the magnitude of the power supply  
voltage.  
·
Wide Supply Voltage Range  
- Single Supply: 2.0V to 18V  
- Dual Supplies: ±1.0V to ±9V  
Very Low Supply Current Drain: 0.4mA  
·
- Independent of Supply Voltage  
·
·
·
·
Low Input Bias Current: 25nA (Typical)  
Low Input Offset Current: ±5nA (Typical)  
Low Input Offset Voltage: ±1mV (Typical)  
Input Common Mode Voltage Range Includes  
Ground  
The AZ393/393C series is designed to directly inter-  
face with TTL and CMOS. AZ393C has more  
stringent input offset voltage than AZ393.  
·
Differential Input Voltage Range Equals to the  
Power Supply Voltage  
·
·
Low Output Saturation Voltage: 250mV at 4mA  
Open Collector Output  
The AZ393/393C series can be widely used in applica-  
tions such as battery charger, cordless telephone,  
switching power supply, DC-DC module and PC  
motherboard.  
Applications  
The AZ393/393C series are available in standard pack-  
ages of DIP-8 and SOIC-8.  
·
·
·
·
·
·
Battery Charger  
Cordless Telephone  
Switching Power Supply  
DC-DC Module  
PC Motherboard  
Communication Equipment  
SOIC-8  
DIP-8  
Figure 1. Package Types of AZ393/393C  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
1
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Pin Configuration  
P Package  
(DIP-8)  
M Package  
(SOIC-8)  
8
7
OUTPUT1  
INPUT1-  
INPUT1+  
GND  
1
2
VCC  
OUTPUT1  
INPUT1-  
INPUT1+  
GND  
VCC  
8
7
1
2
3
4
OUTPUT 2  
INPUT 2-  
INPUT 2+  
OUTPUT 2  
3
4
6
5
INPUT 2-  
INPUT 2+  
6
5
Figure 2. Pin Configuration of AZ393/393C (Top View)  
Functional Block Diagram  
VCC  
100µA  
3.5µA  
100µA  
3.5µA  
Q3  
Q2  
Q1  
+INPUT  
-INPUT  
Q4  
OUTPUT  
Q8  
Q7  
Q5  
Q6  
Figure 3. Functional Block Diagram of AZ393/393C  
(Each Comparator)  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
2
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Ordering Information  
AZ393  
-
E1: Lead Free  
G1: Green  
Circuit Type  
TR: Tape and Reel  
Blank: Tube  
Blank: AZ393  
C: AZ393C  
Package  
M: SOIC-8  
P: DIP-8  
Part Number  
Marking ID  
Package  
SOIC-8  
DIP-8  
Input Offset Voltage  
Packing Type  
Lead Free  
AZ393M-E1  
Green  
Lead Free  
Green  
5mV  
AZ393M-G1  
AZ393M-E1  
AZ393M-E1  
393CM-E1  
393CM-E1  
AZ393P-E1  
AZ393M-G1  
AZ393M-G1  
393CM-G1  
393CM-G1  
AZ393P-G1  
Tube  
Tape & Reel  
Tube  
5mV  
2mV  
2mV  
5mV  
2mV  
AZ393MTR-E1  
AZ393CM-E1  
AZ393CMTR-E1  
AZ393P-E1  
AZ393MTR-G1  
AZ393CM-G1  
AZ393CMTR-G1  
AZ393P-G1  
Maximum  
Value  
Tape & Reel  
Tube  
Maximum  
Value  
AZ393CP-E1  
AZ393CP-G1  
AZ393CP-E1 AZ393CP-G1  
Tube  
BCD Semiconductor's Pb-free products, as designated with "E1" suffix in the part number, are RoHS compliant. Products with  
"G1" suffix are available in green packages.  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
3
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Absolute Maximum Ratings (Note 1)  
Parameter  
Symbol  
VCC  
VID  
Value  
20  
Unit  
V
Supply Voltage  
Differential Input Voltage  
Input Voltage  
20  
V
VIN  
-0.3 to 20  
50  
V
IIN  
Input Current (V < -0.3V) (Note 2)  
mA  
IN  
DIP-8  
780  
660  
Power Dissipation (TA=25oC)  
PD  
mW  
SOIC-8  
Output Short Circuit to Ground  
Operating Junction Temperature  
Storage Temperature Range  
Continuous  
150  
o
TJ  
C
o
TSTG  
TLEAD  
-65 to 150  
C
o
Lead Temperature (Soldering, 10 seconds)  
260  
C
Note 1: Stresses greater than 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 under "Recommended Operating Conditions" is not implied. Exposure to "Absolute Max-  
imum Ratings" for extended periods may affect device reliability.  
Note 2: This input current will only exist when the voltage at any of the input leads is driven negative. It is due to  
the collector-base junction of the input PNP transistors becoming forward biased and thereby acting as input  
diode clamps. In addition to this diode action, there is also lateral NPN parasitic transistor action on the IC chip.  
This transistor action can cause the output voltages of the comparators to go to the V+ voltage level (or to ground  
for a large overdrive) for the time duration that an input is driven negative. This is not destructive and normal out-  
put states will re-establish when the input voltage, which was negative, again returns to a value greater than -0.3  
o
V
(at 25 C).  
DC  
Recommended Operating Conditions  
Symbol  
Parameter  
Min  
2
Max  
18  
Unit  
VCC  
Supply Voltage  
V
o
Operating Temperature Range  
-40  
85  
TA  
C
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
4
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Electrical Characteristics  
o
V
=5V, GND=0V, T =25 C, unless otherwise specified.  
CC  
A
Parameter  
Conditions  
(Note 3)  
Min  
Typ  
1.0  
1.0  
25  
Max  
5.0  
Unit  
mV  
AZ393  
Input Offset Voltage  
Input Bias Current  
AZ393C  
2.0  
I + or I - with output in linear range,  
250  
nA  
IN  
IN  
V
=0V, (Note 4)  
CM  
Input Offset Current  
I +-I -, V =0V  
5.0  
50  
nA  
V
IN  
IN  
CM  
Input Common Mode  
Voltage Range  
V
=15V (Note 5)  
V
- 1.5  
CC  
0
CC  
R =∞, V =5V  
0.4  
1.0  
L
CC  
Supply Current  
mA  
R =∞, V =18V  
1.0  
200  
300  
2.5  
L
CC  
Voltage Gain  
R 15k, V =15V, V =1V to 11V  
50  
V/mV  
ns  
L
CC  
O
Large Signal Response  
Time  
V =TTL logic swing, V =1.4V,  
IN  
REF  
V
=5V, R =5.1kΩ  
L
RL  
Response Time  
V
=5V, R =5.1kΩ, (Note 6)  
1.3  
16  
µs  
RL  
L
Output Sink Current  
Saturation Voltage  
Output Leakage Current  
V -=1V, V +=0, V 1.5V  
6.0  
mA  
mV  
nA  
IN  
IN  
O
V -=1V, V +=0, I  
4mA  
250  
0.1  
400  
IN  
IN  
SINK  
V -=0, V +=1V, V =5V  
IN  
IN  
O
Thermal Resistance  
(Junction to Case)  
DIP-8  
SOIC-8  
89.42  
o
C/W  
132.00  
Note 3: At output switch point, V =1.4V, R =0 with V from 5V to 15V, and over the full common-mode range  
O
S
CC  
o
(0V to V -1.5V), at 25 C.  
CC  
Note 4: The direction of the input current is out of the PNP input stage. This current is essentially constant, inde-  
pendent of the state of the output, so no loading charge exists on the reference of input lines.  
Note 5: The input common-mode voltage of either input signal voltage should not be allowed to go negative by  
more than 0.3V. The upper end of the common-mode voltage range is V -1.5V, but either or both inputs can go to  
CC  
+18V without damage, independent of the magnitude of V  
.
CC  
Note 6: The response time specified is a 100mV input step with 5mV overdrive. For large overdrive signals 300ns  
can be obtained.  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
5
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Typical Performance Characteristics  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.0  
30  
25  
20  
15  
10  
5
-40Co  
-40Co  
25Co  
25Co  
85Co  
85Co  
0
0
2
4
6
8
10  
12  
14  
16  
18  
0
2
4
6
8
10  
12  
14  
16  
18  
Supply Voltage (VDC  
)
Supply Voltage (VDC  
)
Figure 4. Supply Voltage vs. Supply Current  
Figure 5. Supply Voltage vs. Input Current  
6V  
4V  
10  
1
V
OUT  
2V  
0
105mV  
5V  
0.1  
5.1K  
25Co  
_
+
V
VIN  
IN  
85Co  
VOUT  
100mV  
5mV  
0.01  
-40Co  
1E-3  
0.01  
0.1  
1
10  
100  
0
0.4 0.8 1.2 1.6  
2
2.4 2.8 3.2 3.6  
4
Output Sink Current (mA)  
Time (µs)  
Figure 7. Response Time for 5mV Input Overdrive -  
Negative Transition  
Figure 6. Output Sink Current vs. Saturation Voltage  
6V  
5V  
4V  
5.1K  
_
+
VIN  
2V  
0V  
V
OUT  
VOUT  
100mV  
195mV  
V
IN  
95mV  
0
0.4 0.8 1.2 1.6  
2
2.4 2.8 3.2 3.6  
µs)  
4
Time (  
Figure 8. Response Time for 5mV Input Overdrive -  
Positive Transition  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
6
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Typical Application  
VCC  
+5.0V  
100K  
3K  
+
8
+VIN  
+
1/2 AZ393/C  
1/2 AZ393/C  
VO  
1/4 MM54CXX  
4
-
+VREF  
-
Figure 10. Driving CMOS/TTL  
Figure 9. Basic Comparator  
VCC  
VCC  
4.3K  
100K  
1M  
10K  
100pF  
+VIN  
-
75pF  
IN914  
1M  
-
1/2 AZ393/C  
VO  
1/2 AZ393/C  
+
VO  
+
0.001µF  
100K  
V
IN  
IN914  
100K  
1M  
Figure 11. One Shot Multivibrator  
Figure 12. Squarewave Oscillator  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
7
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Mechanical Dimensions  
DIP-8  
Unit: mm(inch)  
0.700(0.028)  
7.620(0.300)TYP  
5°  
1.524(0.060) TYP  
6°  
3.200(0.126)  
3.600(0.142)  
3.710(0.146)  
4.310(0.170)  
0.510(0.020)MIN  
3.000(0.118)  
3.600(0.142)  
0.204(0.008)  
0.360(0.014)  
0.254(0.010)TYP  
8.200(0.323)  
9.400(0.370)  
2.540(0.100) TYP  
0.130(0.005)MIN  
0.360(0.014)  
0.560(0.022)  
6.200(0.244)  
6.600(0.260)  
R0.750(0.030)  
Φ3.000(0.118)  
Depth  
0.100(0.004)  
0.200(0.008)  
9.000(0.354)  
9.400(0.370)  
Note: Eject hole, oriented hole and mold mark is optional.  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
8
Data Sheet  
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS  
AZ393/393C  
Mechanical Dimensions (Continued)  
SOIC-8  
Unit: mm(inch)  
4.700(0.185)  
0.320(0.013)  
1.350(0.053)  
1.750(0.069)  
5.100(0.201)  
0.675(0.027)  
0.725(0.029)  
D
5.800(0.228)  
6.200(0.244)  
1.270(0.050)  
TYP  
D
20:1  
0.800(0.031)  
0.100(0.004)  
0.300(0.012)  
0.200(0.008)  
0°  
8°  
1.000(0.039)  
3.800(0.150)  
4.000(0.157)  
0.190(0.007)  
0.250(0.010)  
1°  
5°  
0.330(0.013)  
0.510(0.020)  
0.900(0.035)  
)
06  
(0.0  
150  
R0.  
0.450(0.017)  
0.800(0.031)  
Note: Eject hole, oriented hole and mold mark is optional.  
Mar. 2010 Rev. 1. 6  
BCD Semiconductor Manufacturing Limited  
9
BCD Semiconductor Manufacturing Limited  
http://www.bcdsemi.com  
- Headquarters  
- Wafer Fab  
BCD Semiconductor Manufacturing Limited  
Shanghai SIM-BCD Semiconductor Manufacturing Co., Ltd.  
No. 1600, Zi Xing Road, Shanghai ZiZhu Science-based Industrial Park, 200241, China  
800 Yi Shan Road, Shanghai 200233, China  
Tel: +86-21-24162266, Fax: +86-21-24162277  
Tel: +86-21-6485 1491, Fax: +86-21-5450 0008  
REGIONAL SALES OFFICE  
Shenzhen Office  
Taiwan Office  
USA Office  
Shanghai SIM-BCD Semiconductor Manufacturing Co., Ltd., Shenzhen Office  
BCD Semiconductor (Taiwan) Company Limited  
BCD Semiconductor Corp.  
Unit A Room 1203, Skyworth Bldg., Gaoxin Ave.1.S., Nanshan District, Shenzhen,  
4F, 298-1, Rui Guang Road, Nei-Hu District, Taipei,  
30920 Huntwood Ave. Hayward,  
China  
Taiwan  
Tel: +886-2-2656 2808  
CA 94544, USA  
Tel: +86-755-8826 7951  
Tel : +1-510-324-2988  
Fax: +86-755-8826 7865  
Fax: +886-2-2656 2806  
Fax: +1-510-324-2788  

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