Diodes 74AUP2G06 User Manual

74AUP2G06
DUAL INVERTERS WITH OPEN DRAIN OUTPUTS
Description
The Advanced Ultra Low Power (AUP) CMOS logic family is designed
for low power and extended battery life in portable applications.
The 74AUP2G06 is composed of two inverters with open drain
outputs designed for operation over a power supply range of 0.8V to
3.6V. The device is fully specified for partial power down applications
using I
current backflow when the device is powered down. The gates
perform the positive Boolean function:
. The I
OFF
AY =
circuitry disables the output preventing damaging
OFF
Features
Advanced Ultra Low Power (AUP) CMOS
Supply Voltage Range from 0.8V to 3.6V
- 4mA Output Drive at 3.0V
Low Static power consumption
< 0.9µA
I
C
Low Dynamic Power Consumption
C
Schmitt Trigger Action at All Inputs Make the Circuit Tolerant
I
ESD Protection per JESD 22
Latch-Up Exceeds 100mA per JESD 78, Class I
Leadless packages per JESD30E
Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)
Halogen and Antimony Free. “Green” Device (Note 3)
Notes: 1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant.
2. See http://www.diodes.com/quality/lead_free.html for more information about Diodes Incorporated’s definitions of Halogen- and Antimony-free, "Green" and Lead-free.
3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and <1000ppm antimony compounds.
= 0.6pF Typical at 3.6V
PD
for Slower Input Rise and Fall Time. The hysteresis is typically
250mV at V
Supports Partial-Power-Down Mode Operation
OFF
Exceeds 200-V Machine Model (A115)
Exceeds 2000-V Human Body Model (A114)
Exceeds 1000-V Charged Device Model (C101)
DFN1410 denoted as X2-DFN1410-6
DFN1010 denoted as X2-DFN1010-6
DFN0910 denoted as X2-DFN0910-6
= 3.0V
CC
Click here for ordering information, located at the end of datasheet
Pin Assignments
Applications
Suited for battery and low power needs
Wide array of products such as:
PCs, networking, notebooks, netbooks, PDAs
Tablet Computers, E-readers
Computer peripherals, hard drives, CD/DVD ROM
TV, DVD, DVR, set top box
Cell Phones, Personal Navigation / GPS
MP3 players ,Cameras, Video Recorders
74AUP2G06
Document number: DS35510 Rev. 2 - 2
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Pin Descriptions
Pin Name Pin NO Function
1A 1 Data Input
GND 2 Ground
2A 3 Data Input
2Y 4 Data Output
VCC
1Y 6 Data Output
5
Supply Voltage
Logic Diagram
74AUP2G06
Function Table
Inputs Output
nA nY
H L
L Z
74AUP2G06
Document number: DS35510 Rev. 2 - 2
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74AUP2G06
Absolute Maximum Ratings (Note 4) (@T
Symbol Description Rating Unit
ESD HBM Human Body Model ESD Protection 2 kV
ESD CDM Charged Device Model ESD Protection 1 kV
ESD MM Machine Model ESD Protection 200 V
VCC
VI
Vo
IIK Input Clamp Current VI<0
IOK Output Clamp Current (VO < 0 )
IO Continuous Output Current (VO = 0 to VCC)
ICC Continuous Current through VCC
I
GND
TJ
T
STG
Note: 4. Stresses beyond the absolute maximum may result in immediate failure or reduced reliability. These are stress values and device operation should be
within recommend values.
Supply Voltage Range -0.5 to +4.6 V
Input Voltage Range -0.5 to +4.6 V
Voltage Applied to Output in High or Low State
Continuous Current through GND -50 mA
Operating Junction Temperature -40 to +150 °C
Storage Temperature -65 to +150 °C
Recommended Operating Conditions (Note 5) (@T
Symbol Parameter Min Max Unit
VCC
VO
IOL
t/V Input Transition Rise or Fall Rate
TA
Note: 5. Unused inputs should be held at VCC or Ground.
Operating Voltage
Input Voltage 0 3.6 V
VI
Output Voltage 0
Low-Level Output Current
Operating Free-Air Temperature -40 +125 °C
74AUP2G06
Document number: DS35510 Rev. 2 - 2
= +25°C, unless otherwise specified.)
A
= +25°C, unless otherwise specified.)
A
= 0.8V
V
CC
VCC = 1.1V
VCC = 1.4V
VCC = 1.65V
VCC = 2.3V
VCC = 3.0V
V
= 0.8V to 3.6V
CC
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-0.5 to VCC +0.5
50 mA
-50 mA
±20 mA
50 mA
0.8 3.6 V
VCC
20 µA
1.1
1.7
1.9
3.1
4
200 ns/V
V
V
mA
December 2013
© Diodes Incorporated
Electrical Characteristics (@T
= +25°C, unless otherwise specified.)
A
Symbol Parameter Test Conditions
0.8V to 1.65V
High-Level Input
V
IH
Voltage
1.65V to 1.95V
2.3V to 2.7V 1.6 1.6
3.0V to 3.6V 2.0 2.0
0.8V to 1.65V
VIL
Low-Level Input voltage
1.65V to 1.95V
2.3V to 2.7V 0.7 0.7
3.0V to 3.6V 0.9 0.9
I
= 20A
OL
0.8V to 3.6V 0.1 0.1
IOL = 1.1mA
IOL = 1.7mA
Low-Level Output
VOL
Voltage
IOL = 1.9mA
IOL = 2.3mA
IOL = 3.1mA
IOL = 2.7mA
Input Current
II
Z State
IOZ
Leakage Current Power Down
I
OFF
Leakage Current Delta Power Down
I
OFF
Leakage Current Supply Current
ICC
Additional Supply
ICC
Current
IOL = 4mA
A or B Input, VI = GND to 3.6V
VO = 3.6V, Vi = 3.6V
VI or VO = 0V to 3.6V
VI or VO = 0V to 3.6V
VI = GND or VCC, IO = 0
One input at V Other inputs at V
-0.6V
CC
or GND
CC
0V to 3.6V ±0.1 ±0.5 A
0V to 0.2V ±0.2 ±0.6 A
0.8V to 3.6V 0.5
Symbol Parameter Test Conditions
0.8V to 1.65V
High-Level Input Voltage
V
IH
1.65V to 1.95V
2.3V to 2.7V 1.6
3.0V to 3.6V 2.0
0.8V to 1.65V
Low-Level Input voltage
VIL
1.65V to 1.95V
2.3V to 2.7V 0.7
3.0V to 3.6V 0.9
I
= 20A
OL
IOL = 1.1mA
IOL = 1.7mA
Low-Level Output Voltage
VOL
IOL = 1.9mA
IOL = 2.3mA
IOL = 3.1mA
IOL = 2.7mA
IOL = 4mA
Input Current
II
Z State
IOZ
Leakage Current Power Down Leakage Current
I
OFF
Delta Power Down Leakage
I
OFF
Current Supply Current
ICC
Additional Supply Current
ICC
A or B Input, VI = GND to 3.6V
VO = 3.6V, Vi = 3.6V
VI or VO = 0V to 3.6V
VI or VO = 0V to 3.6V
VI = GND or VCC, IO = 0
Input at V at V
-0.6V Other inputs
CC
or GND
CC
74AUP2G06
Document number: DS35510 Rev. 2 - 2
www.diodes.com
74AUP2G06
T
= +25°C TA = -40 to +85°C
V
CC
1.1V
A
Min Max Min Max
0.80 X V
0.65 X V
CC
CC
0.30 X V
0.35 X V
0.3 X VCC
CC
CC
0.80 X VCC
0.65 X VCC
0.30 X VCC
0.35 X VCC
0.3 X VCC
1.4V 0.31 0.37
1.65V 0.31 0.35
2.3V
3V
0.31 0.33
0.44 0.45
0.31 0.33
0.44 0.45
3.6V ±0.1 ±0.5 A
0V ±0.2 ±0.6 A
3.3V 40
T
V
CC
A
Min Max
0.80 X V
0.70 X V
= -40°C to +125°C
CC
CC
0.25 X V
0.30 X V
0.9 A
50 A
0.8V to 3.6V 0.11
1.1V
0.33 X VCC
1.4V 0.41
1.65V 0.39
2.3V
3V
0.36
0.50
0.36
0.50
0V to 3.6V ± 0.75 A
3.6V ± 0.75 A
0V ± 0.75 A
0V to 0.2V ± 2.5 A
0.8V to 3.6V 1.4 A
3.3V 75 A
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Unit
V
V
V
Unit
V
CC
CC
V
V
December 2013
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