DIODES AP393ASG-13

AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
General Description
Features
•
•
•
•
•
•
•
•
•
•
•
Wide supply
Voltage range: 2.0V to 36V
Single or dual supplies: ±1.0V to ±18V
Very low supply current drain (0.4mA) – independent of
supply voltage
Low input biasing current: 150nA
Low input offset current: ±70nA
Low input offset voltage: ±4mV
Input common-mode voltage range includes ground
Differential input voltage range equal to the power
supply voltage
Low output saturation voltage: 250mV at 4mA
Output voltage compatible with TTL, DTL, ECL, MOS
and CMOS logic systems
MSOP-8L and SOP-8L: Available in “Green” Molding
Compound (No Br, Sb)
Lead Free Finish/ RoHS Compliant (Note 1)
The AP393A consists of two independent precision voltage
comparators with an offset voltage specification as low as
8.0mV max for two comparators which were designed specifically
to operate from a single power supply over a wide range of
voltages. Operation from split power supplies is also possible and
the low power supply current drain is independent of the
magnitude of the power supply voltage. These comparators also
have a unique characteristic in that the input common-mode
voltage range includes ground, even though operated from a
single power supply voltage.
Application areas include limit comparators, simple analog to
digital converters; pulse, square wave and time delay generators;
wide range VCO; MOS clock timers; multivibrators and high
voltage digital logic gates. The AP393A is designed to directly
interface with TTL and CMOS. When operated from both plus
and minus power supplies, the AP393A will directly interface with
MOS logic where their low power drain is a distinct advantage
over standard comparators.
Applications
•
•
•
•
•
•
High precision comparators
Reduced VOS drift over temperature
Eliminates need for dual supplies
Allows sensing near ground
Compatible with all forms of logic
Power drain suitable for battery operation
Ordering Information
A P 3 9 3 A XX G - X
Package
Lead Free
Packing
M8 : MSOP-8L
S : SOP-8L
G : Green
U : Tube
13 : Tape & Reel
Device
Package
Code
Packaging
(Note 2)
AP393AM8G-U
AP393AM8G-13
AP393ASG-U
AP393ASG-13
M8
M8
S
S
MSOP-8L
MSOP-8L
SOP-8L
SOP-8L
Notes:
Tube
Part Number
Quantity
Suffix
80
-U
NA
NA
100
-U
NA
NA
13” Tape and Reel
Part Number
Quantity
Suffix
NA
NA
2500/Tape & Reel
-13
NA
NA
2500/Tape & Reel
-13
1. EU Directive 2002/95/EC (RoHS). All applicable RoHS exemptions applied, see EU Directive 2002/95/EC Annex Notes.
2. Pad layout as shown on Diodes Inc. suggested pad layout document AP02001, which can be found on our website at
http://www.diodes.com/datasheets/ap02001.pdf.
AP393A Rev. 3
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Pin Assignments
( Top View )
OUTPUT 1
1
INVERTING INPUT 1
2
NON-INVERTING INPUT 1
3
GND
4
AP393A
8
V+
7
OUTPUT 2
6
5
INVERTING INPUT 2
NON-INVERTING INPUT 2
MSOP-8L/ SOP-8L
Pin Descriptions
Pin Name
Pin No.
Description
OUTPUT 1
1
Channel 1 Output
INVERTING INPUT 1
2
Channel 1 Negative Input
NON-INVERTING INPUT 1
3
Channel 1 Positive Input
GND
4
Ground
NON-INVERTING INPUT 2
5
Channel 2 Positive Input
INVERTING INPUT 2
6
Channel 2 Negative Input
OUTPUT 2
7
Channel 2 Output
V+
8
VCC
AP393A Rev. 3
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Block Diagram
OUTPUT 1
INVERTING INPUT 1
1
8
V+
2
7
OUTPUT 2
A
-
NON-INVERTING INPUT 1 3
GND
B
+ +
-
6
5
4
INVERTING INPUT 2
NON-INVERTING INPUT 2
V+
3.5μA
Q2
+INPUT
100μA
3.5μA
100μA
Q3
Q1
Q4
OUTPUT
Q5
-INPUT
Q6
Q8
AP393A Rev. 3
Q7
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Absolute Maximum Ratings
Symbol
VCC
VIN
VIN
ICC
Parameter
Supply Voltage
Differential Input Voltage (Note 10)
Input Voltage
Input Current (VIN-0.3V) (Note 5)
MSOP-8L
SOP-8L
PD
Power Dissipation (Note 3)
TOP
TST
Output Short-Circuit to Ground (Note 4)
Operating Junction Temperature Range
Storage Temperature Range
Rating
40
40
-0.3 to +40
50
670
510
Continuous
0 to +70
-65 to +150
Unit
V
V
V
mA
mW
o
C
C
o
Recommended Operating Conditions
Symbol
VCC
VCC
VIN
VIN
TA
Parameter
Supply Voltage (Single)
Supply Voltage (Dual Supplies, V+ VS GND)
Differential Input Voltage (Single) (Note 10)
Differential Input Voltage (Dual Supplies) (Note 10)
Operating Ambient Temperature
Electrical Characteristics
Symbol
VOFFSET
IBIAS
IOFFSET
ICC
IO(Sink)
VSAT
IO(Leak)
AP393A Rev. 3
Parameter
Input Offset Voltage
Input Bias Current
Min
+2
±1
0
-18
0
Max
+36
±18
±36
+18
70
Unit
V
V
V
V
o
C
( VCC = 5V, TA = 25oC, unless otherwise stated )
Conditions
(Note 11)
IIN(+) or IIN(-) with Output In
Linear Range, VCM = 0V
(Note 7)
IIN(+) - IIN(-) VCM = 0V
Input Offset Current
Input Common Mode Voltage +
V = 30V (Note 8)
Range
V+ = 5V
Supply Current
RL = ∞
V+ = 36V
RL ≥ 15kΩ, V+ = 15V
Voltage Gain
VO = 1V to 11V
VIN = TTL Logic Swing,
Large Signal Response Time VREF = 1.4V, VRL = 5V,
RL = 5.1kΩ
VRL = 5V, RL = 5.1kΩ
Response Time
(Note 9)
VIN(-) = 1V, VIN(+) = 0,
Output Sink Current
VO ≤ 1.5V
VIN(-) = 1V, VIN(+) = 0,
Saturation Voltage
ISINK ≤ 4mA
VIN(-) = 0, VIN(+) = 1V,
Output Leakage Current
VO = 5V
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Min
-
Typ.
4.0
Max
8.0
Unit
mV
-
150
300
nA
-
70
125
nA
0
-
V+ -1.5
V
-
0.4
1
1
2.5
mA
50
200
-
V/mV
-
300
-
ns
-
1.3
-
μs
6.0
16
-
mA
-
250
400
mV
-
0.1
-
nA
MAY 2008
© Diodes Incorporated
AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Electrical Characteristics
Symbol
VOFFSET
IOFFSET
IBIAS
VSAT
IO(Leak)
θJA
θJC
Notes:
Parameter
Input Offset Voltage
Input Offset Current
Input Bias Current
( VCC = 5V ) ( Note 6 )
Conditions
(Note 11)
IIN(+) -IIN(-), VCM = 0V
IIN(+) or IIN(-) with Output In
Linear Range, VCM = 0V
(Note 7)
Input Common Mode Voltage +
V =30V (Note 8)
Range
VIN(-) = 1V, VIN(+) = 0,
Saturation Voltage
ISINK ≤ 4mA
VIN(-) = 0, VIN(+) = 1V,
Output Leakage Current
VO = 30V
Keep All VIN’s ≥ 0V (or V-, if
Differential Input Voltage
Used), (Note 10)
Thermal Resistance
MSOP-8L (Note 12)
Junction-to-Ambient
SOP-8L (Note 12)
Thermal Resistance
MSOP-8L (Note 12)
Junction-to-Case
SOP-8L (Note 12)
Min
-
Typ.
-
Max
9
150
Unit
mV
nA
-
-
400
nA
0
-
V+ -2.0
V
-
-
700
mV
-
-
1.0
μA
-
-
36
V
208
165
39
26
o
C/W
o
C/W
3. For operating at high temperatures, the AP393A must be derated based on a 125°C maximum junction temperature and a
thermal resistance of 170°C/W which applies for the device soldered in a printed circuit board, operating in a still air ambient.
The low bias dissipation and the “ON-OFF” characteristic of the outputs keeps the chip dissipation very small (PD <100mW), provided the
output transistors are allowed to saturate.
4. Short circuits from the output to V+ can cause excessive heating and eventual destruction. When considering short circuits to
ground, the maximum output current is approximately 20mA independent of the magnitude of V+.
5. 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 output states will re-establish when the input voltage, which is negative,
again returns to a value greater than -0.3V.
6. The AP393A temperature specifications are limited to 0°C < TOP < +70°C.
7. The direction of the input current is out of the IC due to the PNP input stage. This current is essentially constant, independent
of the state of the output so no loading change exists on the reference or input lines.
8. The input common-mode voltage or 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 at 25°C, but either or both inputs can go to 36V without damage,
independent of the magnitude of V+.
9. The response time specified is for a 100mV input step with 5mV overdrive. For larger overdrive signals 300ns can be
obtained, see typical performance characteristics section.
10. Positive excursions of input voltage may exceed the power supply level. As long as the other voltage remains within the
common-mode range, the comparator will provide a proper output state. The low input voltage state must not be less than
-0.3V (or 0.3V below the magnitude of the negative power supply, if used).
11. At output switch point, VO ~ 1.4V, RS=0Ω with V+ from 5V to 30V; and over the full input common-mode range (0V to V+-1.5V), at 25°C.
12. Test condition for MSOP-8L and SOP-8L: Device mounted on FR-4 substrate PC board, 2oz copper, with minimum recommended pad layout.
AP393A Rev. 3
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Application Information
The AP393A is high gain, wide bandwidth devices, like most comparators, can easily oscillate if the output lead is inadvertently
allowed to capacitively couple to the inputs via stray capacitance. This shows up only during the output voltage transition intervals as the
comparator change states. Power supply bypassing is not required to solve this problem. Standard PC board layout is helpful as it
reduces stray input-output coupling. Reducing the input resistors to < 10kΩ reduces the feedback signal levels and finally, adding even a
small amount (1.0 to 10 mV) of positive feedback (hysteresis) causes such a rapid transition that oscillations due to stray feedback are
not possible. Simply socketing the IC and attaching resistors to the pins will cause input-output oscillations during the small transition
intervals unless hysteresis is used. If the input signal is a pulse waveform, with relatively fast rise and fall times, hysteresis is not required.
All input pins of any unused comparators should be tied to the negative supply.
The bias network of the AP393A establishes a drain current independent of the magnitude of the power supply voltage over the
range of from 2.0 VDC to 30 VDC. It is usually unnecessary to use a bypass capacitor across the power supply line.
The differential input voltage may be larger than V+ without damaging the device (Note 10). Protection should be provided to
prevent the input voltages from going negative more than -0.3 VDC (at 25°C). An input clamp diode can be used as shown in the
applications section.
The output of the AP393A is the uncommitted collector of a grounded-emitter NPN output transistor. Many collectors can be tied
together to provide an output OR’ing function. An output pull-up resistor can be connected to any available power supply voltage within
the permitted supply voltage range and there is no restriction on this voltage due to the magnitude of the voltage applied to the
+
V terminal of the AP393A package. The output can also be used as a simple SPST switch to ground (when a pull-up resistor is not used).
+
The amount of current the output device can sink is limited by the drive available (which is independent of V ) and the β of this device.
When the maximum current limit is reached (approximately 16mA), the output transistor will come out of saturation and the output voltage
will rise very rapidly. The output saturation voltage is limited by the approximately 60Ω rSAT of the output transistor. The low offset voltage
of the output transistor (1.0 mV) allows the output to clamp essentially to ground level for small load currents.
Typical Circuit
( VCC = 5.0VDC )
+5.0VDC
V+
+VIN
3.0K
+
AP393A
+VREF
100K
+
VO
AP393A
-
1/4 MM54CXX
Basic Comparator
Driving CMOS
V+
+5VDC
100K
V+
0
1:100KHz
VO
75 pF
10K
+
4.3K
1/2 AP393A
AP393A
+
1/4 DM54XX
V+
100K
100K
100K
Squarewave Oscillator
Driving TTL
AP393A Rev. 3
6 of 15
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Typical Circuit
( Continued ) ( VCC = 5.0VDC )
V+
R1
1M
D1
1N914 *
V+
15K
200K
R2
D2
100K 1N914
80 pF
6µs
-
1M
V+
0
-
0.1µF
VO
1/2 AP393A
VO
1/2 AP393A
+15VDC
60µs
tOt1
t2
-V+
0
2.0K
100K
+
+
200K
1M
1M
CRYSTAL
f=100KHz
*For large ratios of R1/R2, D1 can
be omitted
Crystal Controlled Oscillator
Pulse Generator
V+
V+
100K
100K
10
+VC
FREQUENCY
CONTROL
VOLTAGE
INPUT
500pF
3.0K
5.1K
0.1µF
0.01µF
+
3.0K
+
1/2 AP393A
OUTPUT1
1/2 AP393A
-
V+/2
20K
50K
20K
OUTPUT2
-
V+/2
1/2 AP393A
+
Two-Decade High Frequency VCO
V*=+30VDC
+250mVDC < VC < +50VDC
700Hz < fO < 100KHz
V+
V+
+VIN
+
3K
-
+VREF
3.0K
1/2 AP393A
1/2 AP393A
VO
+VIN
+VREF
-
VO
+
10M
Non-Inverting Comparator with
Hysteresis
Basic Comparator
AP393A Rev. 3
10K
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Typical Circuit
( Continued ) ( VCC = 5.0VDC )
V+
3K
-
+VIN
V+
VO
1/2 AP393A
1M
V+
6.2K
-
1/2 AP393A
+
VO
+
STROBE
INPUT
*
1M
1M
* OR LOGIC GATE WITHOUT PULL-UP
RESISTOR
Inverting Comparator with
Hysteresis
Output Strobing
V+
V+
+0.375V
1K
100K
A
B
C
100K
200K
3K
39K
1/2 AP393A
f
1/2 AP393A
A
+
B
100K
V+
0
"0" "1"
3K
+0.075V
1K
100K
C
1K
100K
f
+
100K
1K
V+
0
"0" "1"
Or Gate
AND Gate
V+
V+ (12VDC)
R4
3K
100K
10K
+VREF HI
2RS
+
100K
1/2 AP393A
V+
0
"0" "1"
D1
A
10K
1/2 AP393A
VOUT
-
+
RS
D2
+VIN
B
D3
+
C
D4
D
1/2 AP393A
2RS
ALL DIODES 1N914
+VREF LOW
2N2222
-
Limit Comparator
Large Fan-in AND Gate
AP393A Rev. 3
LAMP
12 ESB
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Typical Circuit
( Continued ) ( VCC = 5.0VDC )
V+
+
+VIN1
-VIN2
100K
VO
1/2 AP393A
2N2222
-
5.1K
-
100K
3.0K
1/2 AP393A
+
+
1/2 AP393A
-
Comparing Input Voltages of
Opposite Polarity
V
ORing the Outputs
V+
+
+
100K
100K
0
5.1K
5.1K 5.1K
t0
100pF
1M
1N914
1M
-
-
VIN
10K
1N914
1/2 AP393A
VO
1/2 AP393A
VO
+
+
20M
0.001µF
1ms
t0
Zero Crossing Detector
(Single Power Supply)
t1
0
1N914
1M
10K
V
PW
One-Shot Multivibrator
V+
51K
100K
V+
0
S
100K
S
+
1/2 AP393A
V+
0
15K
100K
R
R
+15V
0
VO
-
Bi-Stable Multivibrator
AP393A Rev. 3
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Typical Circuit
( Continued ) ( VCC = 5.0VDC )
V+
100K
1M
1M
10M
15K
560K
-
+VIN
100K
1/2 AP393A
-
+4V
+
1µs
t0
1/2 AP393A
100pF
0
V+
40µs
0
t1
VO
+
10M
240K
62K
One-Shot Multivibrator with Input Lock Out
V+
3.0K
10K
15K
10M
200K
10K
+
1/2 AP393A
V3
V+
VO3
0
-
V+
VC1
10K
1/2 AP393A
0
t0
t4
+VIN
10K
+
1/2 AP393A
V2
INPUT GATING SIGNAL
V+
VO2
10M
51K
10K
V+
V3
VC1 V2
V1
V+
0
-
0
t3
C1
0.001µF
+
t0
3.0K
10M
51K
-
V+
t0 t2
3.0K
V+
+
1/2 AP393A
0
t0 t1
VO1
V1
-
t0 t1 t2 t3 t4
51K
t
Time Delay Generator
AP393A Rev. 3
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Split-Supply Applications
( V+ = +15VDC and V- = -15 VDC )
V+
51K
51K
2K
10K
3.9K
-
2.4K
2.4K
φA
1/2 AP393A
+
+
1/2 AP393A
8.2K
1/2 AP393A
2K
-
φB
+
5.1K
1/2 AP393A
-
50pF
6.8K
V-
MOS Clock Driver
V+
+
+
VIN
V+
5.1K
1/2 AP393A
VO
VIN
V-
5.1K
1/2 AP393A
-5 VDC
-
VO
V
Comparator With a
Negative Reference
Zero Crossing Detector
AP393A Rev. 3
+
+
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Typical Characteristics
Supply Current
Input Current
Response Time for Various Input
Overdrives—Negative Transition
Response Time for Various Input
Overdrives—Positive Transition
Output Saturation Voltage
AP393A Rev. 3
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LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Marking Information
(1) MSOP-8L
( Top View )
8
5
A~Z : Green package
Logo
YMX
~
AP393A
Part Number
Month : A~L=01~12
Year : "7" = 2007
"8" = 2008
4
1
(2) SOP-8L
( Top View )
8
5
Logo
Part No.
AP393A
YY WW X X
1
4
G : Green
~
Internal code
Xth week : 01~52
Year : "07" = 2007
"08" = 2008
AP393A Rev. 3
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LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
Package Information
(All Dimensions in mm)
8x-0.45
4.4
4.8/5.0
2.95/3.05
(1) Package Type: MSOP-8L
8x-1.4
6x-0.65
1
Land Pattern Recommendation
(Unit:mm)
"A"
0/0.15
2.95/3.05
0.05
0.25
0.15Typ.
0.75/0.95
0.3
0.65Bsc.
DETAIL "A"
0.4/0.8
0.95Ref.
0°/8
°
Gauge plane
0.254
0.08/0.25
5.79/6.20
3.70/4.10
(2) Package Type: SOP-8L
Gauge Plane
Seating Plane
0.38/1.27
Detail "A"
7°~9°
0.3/0.5
1.27typ
0.20typ
1.75max.
1.30/1.50
0.35max. 45°
7°~9°
Detail "A"
0.78
3.70/4.10
4.80/5.30
5.4
8x-0.60
8x-1.55
6x-1.27
Land Pattern Recommendation
(Unit: mm)
AP393A Rev. 3
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AP393A
LOW POWER LOW OFFSET VOLTAGE DUAL
COMPARATORS
IMPORTANT NOTICE
Diodes Incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes without further
notice to any product herein. Diodes Incorporated does not assume any liability arising out of the application or use of any product described herein; neither
does it convey any license under its patent rights, nor the rights of others. The user of products in such applications shall assume all risks of such use and will
agree to hold Diodes Incorporated and all the companies whose products are represented on our website, harmless against all damages.
LIFE SUPPORT
Diodes Incorporated products are not authorized for use as critical components in life support devices or systems without the expressed written approval of the
President of Diodes Incorporated.
AP393A Rev. 3
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