AP393
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS
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: 25nA Low input offset current: ±5nA Maximum offset voltage: ±3mV 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 SOP-8L, PDIP-8L package SOP-8L: Available in “Green” Molding Compound (No Br, Sb) (Note 1) Lead Free Finish/RoHS Compliant for Lead Free and “Green” Products (Note 2)
General Description
The AP393 consists of two independent precision voltage comparators with an offset voltage specification as low as 2.0mV 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, squarewave and time delay generators; wide range VCO; MOS clock timers; multivibrators and high voltage digital logic gates. The AP393 is designed to directly interface with TTL and CMOS. When operated from both plus and minus power supplies, the AP393 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
AP393 X XX
Package S : SOP - 8 L N : PDIP -8L
Note:
Lead Free Blank : Standard L : Lead Free G : Green
Packing -U : Tube -13 : Taping
1. SOP-8L is “Green” product only. 2. RoHS revision 13.2.2003. Glass and High Temperature Solder Exemptions Applied, see EU Directive Annex Notes 5 and 7.
Device
AP393S AP393N
Lead-free
Package Code
S N
Packaging
SOP-8L PDIP-8L
Quantity
100 60
Tube Part Number Suffix
-U -U
13” Tape and Reel Quantity Part Number Suffix
2500/Tape & Reel NA -13 NA
Note:
3. 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.
AP393 Rev. 3
1 of 15 www.diodes.com
FEBRUARY 2007
© Diodes Incorporated
AP393
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 SOP-8L 8 AP393 7 6 5 V+ OUTPUT 2 INVERTING INPUT 2 NON-INVERTING INPUT 2
(Top View ) OUTPUT 1 1 INVERTING INPUT 1 2 NON-INVERTING INPUT 1 3 GND 4 PDIP -8L 8 AP393 7 6 5 V+ OUTPUT 2 INVERTING INPUT 2 NON-INVERTING INPUT 2
Pin Descriptions
Pin Name
OUTPUT 1 INVERTING INPUT 1 NON-INVERTING INPUT 1 GND NON-INVERTING INPUT 2 INVERTING INPUT 2 OUTPUT 2 V+
Pin No.
1 2 3 4 5 6 7 8
Description
Channel 1 Output Channel 1 Negative Input Channel 1 Positive Input Ground Channel 2 Positive Input Channel 2 Negative Input Channel 2 Output VCC
AP393 Rev. 3
2 of 15 www.diodes.com
FEBRUARY 2007
© Diodes Incorporated
AP393
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS
Block Diagram
OUTPUT 1
1
8
V+
INVERTING INPUT 1
2 A B ++ -
7
OUTPUT 2
NON-INVERTING INPUT 1 3
-
6
INVERTING INPUT 2
GND
4
5
NON-INVERTING INPUT 2
V+
3.5µA
100µA
3.5µA
100µA
Q2 +INPUT Q1
Q3 Q4 Q5 OUTPUT
-INPUT Q6 Q8 Q7
AP393 Rev. 3
3 of 15 www.diodes.com
FEBRUARY 2007
© Diodes Incorporated
AP393
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS
Absolute Maximum Ratings
Symbol VCC VIN VIN ICC PD TOP TST
( Note 13 )
Parameter Supply Voltage Differential Input Voltage (Note 11) Input Voltage Input Current (VIN-0.3V) (Note 6) PDIP-8L Power Dissipation (Note 4) SOP-8L Output Short-Circuit to Ground (Note 5) Operating Junction Temperature Range Storage Temperature Range
Rating 36 36 -0.3 to +36 50 780 510 Continuous 0 to +70 -65 to +150
Unit V V V mA mW
o o
C C
Electrical Characteristics
Symbol Parameter VOFFSET Input Offset Voltage IBIAS IOFFSET ICC
( VCC = 5V, TA = 25oC, unless otherwise stated )
IO(Sink) VSAT IO(Leak)
Conditions Min. (Note 12) IIN(+) or IIN(-) with Output In Input Bias Current Linear Range, VCM = 0V (Note 8) Input Offset Current IIN(+) - IIN(-) VCM = 0V Input Common Mode Voltage Range V+ = 30V (Note 9) 0 V+ = 5V Supply Current RL = ∞ V+ = 36V RL > 15kΩ, V+ = 15V Voltage Gain 50 VO = 1V to 11V VIN = TTL Logic Swing, Large Signal Response Time VREF = 1.4V, VRL = 5V, RL = 5.1kΩ Response Time VRL = 5V, RL = 5.1kΩ (Note 10) VIN(-) = 1V, VIN(+) = 0, Output Sink Current 6.0 VO < 1.5V VIN(-) = 1V, VIN(+) = 0, Saturation Voltage ISINK < 4mA Output Leakage Current VIN(-) = 0, VIN(+) = 1V, VO = 5V -
Typ. 1.0 25 5.0 0.4 1 200 300 1.3 16 250 0.1
Max. 5.0 250 50 V+ -1.5 1 2.5 400 -
Unit mV nA nA V mA V/mV ns µs mA mV nA
AP393 Rev. 3
4 of 15 www.diodes.com
FEBRUARY 2007
© Diodes Incorporated
AP393
LOW POWER LOW OFFSET VOLTAGE DUAL COMPARATORS
Electrical Characteristics
Symbol Parameter VOFFSET Input Offset Voltage IOFFSET Input Offset Current IBIAS
( VCC = 5V ) ( Note 7 )
VSAT IO(Leak)
Conditions Min. (Note 12) IIN(+) -IIN(-), VCM = 0V IIN(+) or IIN(-) with Output In Linear Range, VCM = 0V Input Bias Current (Note 8) Input Common Mode Voltage Range V+ =30V (Note 9) 0 VIN(-) = 1V, VIN(+) = 0, ISINK < Saturation Voltage 4mA VIN(-) = 0, VIN(+) = 1V, Output Leakage Current VO = 30V Keep All VIN’s > 0V (or V-, if Differential Input Voltage Used), (Note 11)
Typ. -
Max. 9 150 400 V+ -2.0 700 1.0 36
Unit mV nA nA V mV µA V
Note:
4.
5. 6.
7. 8. 9. 10. 11. 12. 13.
For operating at high temperatures, the AP393 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
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