KK2903D [KODENSHI]

Comparator, 2 Func, 9000uV Offset-Max, 1300ns Response Time, CMOS, PDSO8,;
KK2903D
型号: KK2903D
厂家: KODENSHI KOREA CORP.    KODENSHI KOREA CORP.
描述:

Comparator, 2 Func, 9000uV Offset-Max, 1300ns Response Time, CMOS, PDSO8,

放大器 光电二极管
文件: 总5页 (文件大小:295K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
TECHNICAL DATA  
Low Power Low Offset Voltage Dual Comparators  
KK2903  
The KK2903 consists of two independent precision voltage  
comparators with an offset voltage specification as low as 2.0  
mV max for two comparators which were designed  
specifically to operate from a single power supply over a  
wide range of voltages.  
Application areas include limit comparators, simple analog  
to digital converters; pulse, squarewave and time delay  
generators; wide range VCO; MOS clock timers;  
multivibrators and high voltage digital logic gates.  
ORDERING INFORMATION  
KK2903N Plastic  
KK2903D SOIC  
TA = -40° to 85° C for all packages.  
Single or Split Supply Operation  
Low Input Bias Current  
Low Input Offset Current  
Input Common Mode Voltage Range to Gnd  
Low Output Saturation Voltage  
TTL and CMOS Compatible  
LOGIC DIAGRAM  
PIN ASSIGNMENT  
PIN 8 = VCC  
PIN 4 = GND  
1
KK2903  
MAXIMUM RATINGS*  
Symbol  
Parameter  
Value  
Unit  
VCC  
Power Supply Voltages  
Single Supply  
Split Supplies  
36  
±18  
V
VIDR  
VICR  
ISC  
Input Differential Voltage Range  
Input Common Mode Voltage Range (1)  
Output Short Circuit to Ground  
Input Current, per pin (2)  
36  
V
V
-0.3 to VCC  
Continuous  
50  
IIN  
mA  
TJ  
Junction Temperature  
Plastic Packages  
150  
-65 to +150  
260  
°C  
°C  
°C  
Tstg  
TL  
Storage Temperature  
Lead Temperature, 1mm from Case for 10 Seconds  
PD  
Power Dissipation @TA=25°C  
Plastic Package  
570  
5.7  
µW  
mW/°C  
Derate above 25°C  
*Maximum Ratings are those values beyond which damage to the device may occur.  
Functional operation should be restricted to the Recommended Operating Conditions.  
Notes:  
1. Split Power Supplies.  
2. VIN<-0.3V. This input current will only exist when voltage at any of the input leads is driven negative.  
RECOMMENDED OPERATING CONDITIONS  
Symbol  
VCC  
Parameter  
Min  
Max  
Unit  
V
DC Supply Voltage  
±2.5 or  
5.0  
±15 or  
30  
TA  
Operating Temperature, All Package Types  
-40  
+85  
°C  
This device contains protection circuitry to guard against damage due to high static voltages or electric fields.  
However, precautions must be taken to avoid applications of any voltage higher than maximum rated voltages to this  
high-impedance circuit. For proper operation, VIN and VOUT should be constrained to the range GND(VIN or  
V
OUT)VCC.  
Unused inputs must always be tied to an appropriate logic voltage level (e.g., either GND or VCC). Unused outputs must  
be left open.  
2
KK2903  
DC ELECTRICAL CHARACTERISTICS (TA=-40 to +85°C)  
Guaranteed Limit  
Symbol  
VIO  
Parameter  
Test Conditions  
V0=1.4V  
Min  
Typ  
Max  
Unit  
mV  
Input Offset Voltage  
-
9.0  
VCC=5.0-30V;RS100Ω  
VICR=0V - (VCC-1.5)V  
5.0*  
IIB  
Input Bias Current  
Input Offset Current  
V0=1.4V  
VCC=5.0-30V  
VICR=0V - (VCC-1.5)V  
-
400  
nA  
nA  
IIO  
V0=1.4V  
VCC=5.0-30V  
VICR=0V - (VCC-1.5)V  
-
±150  
50*  
VICR  
ICC  
Input Common Mode VCC=5.0-30V  
Voltage Range  
0
VCC-  
2.0V  
V
Supply Current  
-
-
1.0*  
2.5*  
mA  
RL=,VCC=5.0  
RL=,VCC=30V  
VCC=15V, RL=15KΩ  
AVOL  
t1  
Voltage Gain  
-
-
200*  
300*  
-
-
V/mV  
ns  
Large Signal  
Response Time  
VIN=TTL Logic Swing,  
Vref=1.4V, VCC=5.0V,  
RL=5.1K, VRL=5.0V  
t2  
Response Time  
(Note 6)  
-
6.0*  
-
1.3*  
-
-
VCC=5.0V, RL=5.1K,  
µs  
mA  
mV  
nA  
VRL=5.0V  
Isink  
Vsat  
IOL  
Output Sink Current  
VI(-)=1.0V, VI(+)=0V,  
V01.5V, VCC=5.0V  
-
-
Saturation Voltage  
VI(-)=1.0V, VI(+)=0V,  
Isink4.0mA, VCC=5.0V  
700  
Output Leakage  
Current  
VI(+)=1.0V, VI(-)=0V,  
V0=5.0V  
0.1*  
V0=30V  
1000  
VCC  
VIDR  
Differential Input  
Voltage Range  
V
All VINGND or V-Supply  
(if used)  
*=@25°C  
3
KK2903  
TYPICAL PERFORMANCE CHARACTERISTICS  
(VCC=1.5V, TA=+25°C, (each comporator))  
Figure 1. Input Bias Current versus Power Supply  
Voltage  
Figure 2. Output Saturation Voltage versus Output  
Sink Current  
Figure 3. Output Saturation Voltage versus Output Sink Current  
Figure 5. Power Supply Current versus Power  
Supply Voltage  
Figure 4. Power Supply Current versus Power  
Supply Voltage  
4
KK2903  
N SUFFIX PLASTIC DIP  
(MS – 001BA)  
A
Dimension, mm  
5
4
8
1
Symbol  
MIN  
8.51  
6.1  
MAX  
10.16  
7.11  
B
A
B
C
D
F
5.33  
F
L
0.36  
1.14  
0.56  
C
1.78  
SEATING  
PLANE  
-T-  
K
2.54  
7.62  
G
H
J
N
M
J
G
H
D
0°  
10°  
3.81  
8.26  
0.36  
0.25 (0.010) M  
T
2.92  
7.62  
0.2  
K
L
M
N
NOTES:  
1. Dimensions “A”, “B” do not include mold flash or protrusions.  
Maximum mold flash or protrusions 0.25 mm (0.010) per side.  
0.38  
D SUFFIX SOIC  
(MS - 012AA)  
Dimension, mm  
A
8
5
Symbol  
MIN  
4.8  
MAX  
5
A
B
C
D
F
B
H
P
3.8  
4
1.35  
0.33  
0.4  
1.75  
0.51  
1.27  
1
4
G
R x 45  
C
-T-  
SEATING  
PLANE  
1.27  
5.72  
G
H
J
K
M
D
J
F
M
0.25 (0.010) M T C  
0°  
8°  
0.1  
0.25  
0.25  
6.2  
K
M
P
NOTES:  
0.19  
5.8  
1. Dimensions A and B do not include mold flash or protrusion.  
2. Maximum mold flash or protrusion 0.15 mm (0.006) per side  
0.25  
0.5  
R
for A; for B 0.25 mm (0.010) per side.  
5

相关型号:

KK2903N

暂无描述
KODENSHI

KK2904

Low Power Dual Operational Amplifier
KODENSHI

KK2931CD

Low-Powered Adjustable Voltage Regulator with low drop-out voltage
KODENSHI

KK3000A

暂无描述
LGE

KK3000A1900-2500V Y89KKG

可控硅、晶闸管
LIUJING

KK300A

暂无描述
LGE

KK300A800-1600V Y30KKE

可控硅、晶闸管
LIUJING

KK311

High Performance Voltage Comparators
KODENSHI

KK317

THREE-TERMINAL ADJUSTABLE OUTPUT POSITIVE VOLTAGE REGULATORS
KODENSHI

KK324

Low Power Quad Operational Amplifier
KODENSHI

KK3270001

CMOS Output Clock Oscillator, 0.032768MHz Nom, SMD, 4 PIN
DIODES

KK3270039

CMOS Output Clock Oscillator, 0.032768MHz Nom, SMD, 4 PIN
DIODES