The “Absolute Maximum Ratings” are those values beyond which
the safety of the device cannot be guaranteed. The device should not be
operated at these limits. The parametric values defined in the Electrical
Characteristics tables are not guaranteed at the absolute maximum rating.
The “Recommended Operating Conditions” table will define the conditions
for actual device operation.
Note 2:
ESD testing conforms to MIL-STD-883, Method 3015.
Commercial Version
DC Electrical Characteristics
(Note 3)
V
EE
= −4.2V
to
−5.7V,
V
CC
=
V
CCA
=
GND, T
C
=
0
°
C to
+
85
°
C
Symbol
V
OH
V
OL
V
OHC
V
OLC
V
OLZ
V
BB
V
DIFF
V
CM
V
IH
Parameter
Output HIGH Voltage
Output LOW Voltage
Output HIGH Voltage
Output LOW Voltage
Cut-Off LOW Voltage
Output Reference Voltage
Input Voltage Differential
Common Mode Voltage
Single-Ended
Input HIGH Voltage
V
IL
Single-Ended
Input LOW Voltage
I
IL
I
IH
I
IHZ
I
CBO
I
EE
I
EEZ
Input LOW Current
Input HIGH Current D
N
Input HIGH Current OE
Input Leakage Current
Power Supply Current, Normal
Power Supply Current, Cut-Off
−10
−85
−152
−30
−75
−1830
0.50
250
360
−1530
mV
µA
µA
µA
µA
mA
mA
−1110
−870
mV
−1380
150
V
CC
−
2.0
V
CC
−
0.5
−1320
Min
−1025
−1830
−1035
−1610
−1950
−1260
Typ
−955
−1705
Max
−870
−1620
Units
mV
mV
mV
mV
mV
mV
mV
V
Guaranteed HIGH Signal for All
Inputs (with one input tied to V
BB
)
V
BB (Max)
+
V
DIFF
Guaranteed LOW Signal for All
Inputs (with one input tied to V
BB
)
V
BB (Min)
−
V
DIFF
V
IN
=
V
IL (Min)
V
IN
=
V
IH (Max)
, D
1
=
V
BB
, D
1
=
V
IL (Min)
V
IN
=
V
IH (Max)
, D
1
=
V
BB
, D
1
=
V
IL (Min)
V
IN
=
V
EE
, D
1
=
V
BB
, D
1
=
V
IL (Min)
D
1
=
V
BB
, D
1
=
V
IL (Min)
D
1
–D
4
=
V
BB
, D
1
–D
4
=
V
IL (Min)
, OE
=
LOW
V
IN
=
V
IH (Max)
or V
IL (Min)
V
IN
=
V
IH (Min)
or V
IL (Max)
V
IN
=
V
IH (Min)
or V
IL (Max)
I
VBB
= −1
mA
Required for Full Output Swing
Conditions
Loading with
25Ω to
−2.0V
Loading with
25Ω to
−2.0V
OE
=
LOW
Note 3:
The specified limits represent the “worst case” value for the parameter. Since these values normally occur at the temperature extremes, additional
noise immunity and guardbanding can be achieved by decreasing the allowable system operating ranges. Conditions for testing shown in the tables are cho-
sen to guarantee operation under “worst case” conditions.
AC Electrical Characteristics
V
EE
= −
4.2V to
−
5.7V, V
CC
=
V
CCA
=
GND
Symbol
t
PLH
t
PHL
t
PZH
t
PHZ
t
TLH
t
THL
Parameter
Propagation Delay
Data to Output
Propagation Delay
OE to Output
Transition Time, D
n
to Q
n
20% to 80%, 80% to 20%
T
C
=
0°C
Min
0.65
1.8
1.2
0.45
Max
2.10
4.00
2.90
1.50
T
C
= +25°C
Min
0.65
1.8
1.2
0.45
Max
2.10
4.00
2.90
1.50
T
C
= +85°C
Min
0.65
1.8
1.2
0.45
Max
2.10
4.00
2.90
1.50
Units
ns
ns
ns
Figures 1, 2
Conditions
3
www.fairchildsemi.com
100316
Industrial Version
DC Electrical Characteristics
(Note 4)
V
EE
= −4.2V
to
−5.7V,
V
CC
=
V
CCA
=
GND
Symbol
V
OH
V
OL
V
OHC
V
OLC
V
OLZ
V
BB
V
DIFF
V
CM
V
IH
Parameter
Output HIGH Voltage
Output LOW Voltage
Output HIGH Voltage
Output LOW Voltage
Cut-Off LOW Voltage
Output Reference Voltage
Input Voltage Differential
Common Mode Voltage
Single-Ended
Input HIGH Voltage
V
IL
Single-Ended
Input LOW Voltage
I
IL
I
IH
I
IHZ
I
CBO
I
EE
I
EEZ
Input LOW Current
Input HIGH Current, D
N
Input HIGH Current, OE
Input Leakage Current
−10
−85
−152
−30
−75
−1830
0.50
240
360
−10
−85
−152
−30
−75
−1535
−1830
0.50
240
360
−1530
mV
µA
µA
µA
mA
−1115
−870
−1110
−870
mV
−1395
150
V
CC
−
2.0
V
CC
−
0.5
T
C
= −40°C
Min
−1085
−1830
−1095
−1575
−1900
−1255
−1380
150
V
CC
−
2.0
V
CC
−
0.5
Max
−870
−1585
T
C
=
0°C to
+85°C
Min
−1025
−1830
−1035
−1610
−1950
−1260
Max
−870
−1620
Units
mV
mV
mV
mV
mV
mV
mV
V
Guaranteed HIGH Signal for All
Inputs (with one input tied to V
BB
)
V
BB (Max)
+
V
DIFF
Guaranteed LOW Signal for All
Inputs (with one input tied to V
BB
)
V
BB (Min)
−
V
DIFF
V
IN
=
V
IL (Min)
V
IN
=
V
IH (Max)
, D
1
=
V
BB
,
D
1
=
V
IL (Min)
V
IN
=
V
EE
, D
1
=
V
BB
,
D
1
=
V
IL (Min)
Power Supply Current,
Normal
Power Supply Current,
Cut-Off
mA
D
1
–D
4
=
V
BB
, D
1
–D
4
=
V
IL (Min)
,
OE
=
LOW
D
1
=
V
BB
, D
1
=
V
IL (Min)
Conditions
V
IN
=
V
IH (Max)
or V
IL (Min)
V
IN
=
V
IH (Min)
or V
IL (Max)
or V
IL (Max)
I
VBB
= −1
mA
Required for Full Output Swing
Loading with
25Ω to
−2.0V
Loading with
25Ω to
−2.0V
OE
=
LOW, V
IN
=
V
IH (Min)
Note 4:
The specified limits represent the “worst case” value for the parameter. Since these values normally occur at the temperature extremes, additional
noise immunity and guardbanding can be achieved by decreasing the allowable system operating ranges. Conditions for testing shown in the tables are cho-
sen to guarantee operation under “worst case” conditions.
AC Electrical Characteristics
V
EE
= −
4.2V to
−
5.7V, V
CC
=
V
CCA
=
GND
Symbol
t
PLH
t
PHL
t
PZH
t
PHZ
t
TLH
t
THL
Parameter
Propagation Delay
Data to Output
Propagation Delay
OE to Output
Transition Time
20% to 80%, 80% to 20%
T
C
= −40°C
Min
0.65
1.80
1.20
0.45
Max
2.10
4.00
2.90
1.50
T
C
= +25°C
Min
0.65
1.80
1.20
0.45
Max
2.10
4.00
2.90
1.50
T
C
= +85°C
Min
0.65
1.80
1.20
0.45
Max
2.10
4.00
ns
2.90
1.50
ns
Units
ns
Figures 1Figure
2
Conditions
www.fairchildsemi.com
4
100316
Test Circuitry
Notes:
V
CC
, V
CCA
= +2V,
V
EE
= −2.5V
L1 and L2
=
equal length 50Ω impedance lines
R
T
=
50Ω terminator internal to scope
Decoupling 0.1
µF
from GND to V
CC
and V
EE
All unused outputs are loaded with 25Ω to GND
C
L
=
Fixture and stray capacitance
≤
3 pF
FIGURE 1. AC Test Circuit
Switching Waveforms
FIGURE 2. Propagation Delay, Cut-Off and Transition Times
[color=#000][font=宋体, Verdana, Arial, Helvetica, sans-serif][align=left][color=#000][size=5][color=darkred][b]I saw this article is about the charger problem of Apple products, I recommend it to you, ...
[i=s]This post was last edited by paulhyde on 2014-9-15 03:35[/i] Talk about the prospects of FPGA/CPLD and the difficulties in learning, [win a USB Blaster], [color=#ff0000]Second round[/color] 1. Fo...
[i=s]This post was last edited by ienglgge on 2018-10-26 17:54[/i] ubuntu 16.04,ros needs to install the corresponding package [url]https://github.com/ros-drivers/camera_umd[/url] When running rosrun ...
Traditional broadcasting systems generally need to be operated manually at a fixed time, and can only realize one-way broadcasting with few functions. Traditional bell ringing equipment has a singl...[Details]
1. Circuit composition
The whole circuit consists of two parts:
1. Power saving control circuit
As shown in the figure below. Including delay circuit and drive circuit.
(1) Delay ci...[Details]
1. Introduction
With the growth of parking demand, the scale of parking lots is becoming larger and larger. A lot of research has been done on intelligent parking lots in China, but most of th...[Details]
Converged processors meet scalability requirements
In current embedded system design, solutions based on MCU, DSP, FPGA and ASIC account for more than 90% of the market share. These solutions ...[Details]
LED lamps and bulbs are now rapidly replacing incandescent, halogen and CFL (compact fluorescent lamp) light sources in many general lighting applications. Flyback DC/DC converters are the power su...[Details]
1. Overview
At present, an information revolution is in the ascendant around the world, led by microelectronics, computers and communication technologies, and centered on information technolog...[Details]
1 Introduction
With the improvement of people's quality of life, lamps are no longer just basic indoor lighting tools, but also a kind of practical art for architectural decoration. When ther...[Details]
At present, how various communication technologies will evolve after 3G is a focus of great concern in the industry. Especially for TD-SCDMA, whether it can achieve smooth evolution to the next gen...[Details]
Overview
By transmitting ultrasonic energy into the human body and receiving and processing the returning reflected signals, phased array ultrasound systems can generate images of organs and s...[Details]
The future energy storage hotspot is not coal or iron ore, but lithium. This lightest metal in nature may be the heaviest resource in the future energy landscape. China launched an ambitious electr...[Details]
In order to prevent the lithium battery from being damaged by abnormal conditions such as overcharge, over discharge, and overcurrent, a lithium battery protection device is usually used to prevent...[Details]
Currently, high-frequency and high-efficiency DCDC converters are increasingly used in automotive electronic systems.
High switching frequency can use smaller power inductors and output filter...[Details]
1 Introduction
With the development of computer technology and information technology in the world, the global information age has arrived. All countries are formulating their own development p...[Details]
Button cells (also called button cells) are those batteries with equal or larger diameter and height. The current size range of alkaline button cells is specified as follows: diameter 4.8mm-11.4mm,...[Details]
1. Electromagnetic compatibility design
Electromagnetic compatibility refers to the ability of electronic equipment to work in a coordinated and effective manner in various electromagnetic env...[Details]