CD4093BC [FAIRCHILD]
Quad 2-Input NAND Schmitt Trigger; 四2输入与非施密特触发器型号: | CD4093BC |
厂家: | FAIRCHILD SEMICONDUCTOR |
描述: | Quad 2-Input NAND Schmitt Trigger |
文件: | 总8页 (文件大小:91K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
October 1987
Revised January 1999
CD4093BC
Quad 2-Input NAND Schmitt Trigger
■ Equal source and sink currents
■ No limit on input rise and fall time
General Description
The CD4093B consists of four Schmitt-trigger circuits.
Each circuit functions as a 2-input NAND gate with Schmitt-
trigger action on both inputs. The gate switches at different
points for positive and negative-going signals. The differ-
ence between the positive (VT+) and the negative voltage
(VT−) is defined as hysteresis voltage (VH).
■ Standard B-series output drive
■ Hysteresis voltage (any input) TA = 25°C
Typical
V
V
V
DD = 5.0V
DD = 10V
DD = 15V
V
V
V
V
H = 1.5V
H = 2.2V
H = 2.7V
H = 0.1 VDD
All outputs have equal source and sink currents and con-
form to standard B-series output drive (see Static Electrical
Characteristics).
Guaranteed
Applications
Features
■ Wide supply voltage range: 3.0V to 15V
•
•
•
•
•
Wave and pulse shapers
High-noise-environment systems
Monostable multivibrators
Astable multivibrators
NAND logic
■ Schmitt-trigger on each input
with no external components
■ Noise immunity greater than 50%
Ordering Code:
Order Number Package Number
Package Description
CD4093BCM
M14A
14-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-120, 0.150” Narrow Body
14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300” Wide
CD4093BCN
N14A
Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code.
Connection Diagram
Pin Assignments for SOIC and DIP
Top View
© 1999 Fairchild Semiconductor Corporation
DS005982.prf
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Absolute Maximum Ratings(Note 1)
(Note 2)
Recommended Operating
Conditions (Note 2)
DC Supply Voltage (VDD
Input Voltage (VIN
)
−0.5 to +18 VDC
−0.5 to VDD +0.5 VDC
−65°C to +150°C
DC Supply Voltage (VDD
Input Voltage (VIN
Operating Temperature Range (TA)
)
3 to 15 VDC
0 to VDD VDC
)
)
Storage Temperature Range (TS)
Power Dissipation (PD)
Dual-In-Line
−40°C to +85°C
Note 1: “Absolute Maximum Ratings” are those values beyond which the
safety of the device cannot be guaranteed; they are not meant to imply that
the devices should be operated at these limits. The table of “Recom-
mended Operating Conditions” and “Electrical Characteristics” provides
conditions for actual device operation.
700 mW
500 mW
Small Outline
Lead Temperature (TL)
(Soldering, 10 seconds)
Note 2: V = 0V unless otherwise specified.
SS
260°C
DC Electrical Characteristics (Note 2)
−40°C
+25°C
+85°C
Symbol
Parameter
Conditions
Units
Min
Max
Min
Typ
Max
1.0
2.0
4.0
Min
Max
I
Quiescent Device
V
V
V
V
V
V
V
V
V
V
V
= 5V
1.0
2.0
4.0
7.5
µA
µA
µA
DD
DD
DD
DD
Current
= 10V
= 15V
15.0
30.0
V
LOW Level
= V
|I | < 1 µA
OL
IN
DD, O
Output Voltage
= 5V
0.05
0.05
0.05
0
0
0
0.05
0.05
0.05
0.05
0.05
0.05
V
V
V
DD
DD
DD
= 10V
= 15V
V
HIGH Level
= V , |I | < 1 µA
SS O
OH
IN
Output Voltage
= 5V
4.95
9.95
4.95
9.95
5
4.95
9.95
V
V
V
DD
DD
DD
= 10V
= 15V
10
15
14.95
14.95
14.95
V −
Negative-Going Threshold
Voltage (Any Input)
|I | < 1 µA
O
T
V
V
V
= 5V, V = 4.5V
1.3
2.25
4.5
1.5
3.0
4.5
1.8
4.1
6.3
2.25
4.5
1.5
3.0
4.5
2.3
4.65
6.9
V
V
V
DD
DD
DD
O
= 10V, V = 9V
2.85
4.35
O
= 15V, V = 13.5V
6.75
6.75
O
V +
Positive-Going Threshold
Voltage (Any Input)
|I | < 1 µA
O
T
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
= 5V, V = 0.5V
2.75
5.5
3.6
2.75
5.5
3.3
6.2
9.0
1.5
2.2
2.7
3.5
7.0
2.65
5.35
8.1
3.5
7.0
V
V
V
V
V
V
DD
DD
DD
DD
DD
DD
O
= 10V, V = 1V
7.15
O
= 15V, V = 1.5V
8.25 10.65 8.25
10.5
2.0
10.5
2.0
O
V
Hysteresis (V + − V −)
= 5V
0.5
1.0
1.5
2.35
4.3
0.5
1.0
1.5
0.35
0.70
1.20
H
T
T
(Any Input)
= 10V
= 15V
4.0
4.0
6.3
6.0
6.0
I
LOW Level Output
Current (Note 3)
= V
DD
OL
IN
= 5V, V = 0.4V
0.52
1.3
0.44
1.1
0.88
2.25
8.8
0.36
0.9
mA
mA
mA
DD
DD
DD
O
= 10V, V = 0.5V
O
= 15V, V = 1.5V
3.6
3.0
2.4
O
I
HIGH Level Output
Current (Note 3)
= V
SS
OH
IN
= 5V, V = 4.6V
−0.52
−1.3
−3.6
0.44 −0.88
−1.1 −2.25
−0.36
−0.9
−2.4
mA
mA
mA
µA
DD
DD
DD
DD
DD
O
= 10V, V = 9.5V
O
= 15V, V = 13.5V
−3.0
−8.8
O
−5
I
Input Current
= 15V, V = 0V
−0.3
−10
−0.3
−1.0
IN
IN
−5
= 15V, V = 15V
0.3
10
0.3
1.0
µA
IN
Note 3: I
and I are tested one output at a time.
OL
OH
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2
AC Electrical Characteristics (Note 4)
T
A = 25°C, CL = 50 pF, RL = 200k, Input t , t = 20 ns, unless otherwise specified
r f
Symbol
, t
Parameter
Conditions
Min
Typ
Max
Units
t
t
Propagation Delay Time
V
V
V
V
V
V
= 5V
300
120
80
450
210
160
145
75
ns
ns
ns
ns
ns
ns
pF
pF
PHL PLH
DD
DD
DD
DD
DD
DD
= 10V
= 15V
= 5V
, t
Transition Time
90
THL TLH
= 10V
= 15V
50
40
60
C
C
Input Capacitance
(Any Input)
(Per Gate)
5.0
24
7.5
IN
Power Dissipation Capacitance
PD
Note 4: AC Parameters are guaranteed by DC correlated testing.
3
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Typical Applications
Gated Oscillator
Assume t + t >> t
+ t
then:
1
2
PHL
PLH
t
t
= RC n [V /V −]
DD T
0
1
= RC n [(V − V −)/(V − V +)]
DD
T
DD
T
+/V −]
t
= RC n [V
T
2
T
Gated One-Shot
(a) Negative-Edge Triggered
(b) Positive-Edge Triggered
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4
Typical Performance Characteristics
Typical Transfer
Characteristics
Guaranteed Trigger Threshold
Voltage vs VDD
Guaranteed Hysteresis vs VDD
Guaranteed Hysteresis vs VDD
Input and Output Characteristics
V
V
= V
− V
V
= V +
NML
NMH
IH(MIN)
OL
IH(MIN) T (MIN)
= V
− V
V
− V
= V − V −
IL(MAX) DD T (MAX)
OH
IL(MAX)
DD
5
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AC Test Circuits and Switching Time Waveforms
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6
Physical Dimensions inches (millimeters) unless otherwise noted
14-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-120, 0.150” Narrow Body
Package Number M14A
7
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Physical Dimensions inches (millimeters) unless otherwise noted (Continued)
14-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-001, 0.300” Wide
Package Number N14A
LIFE SUPPORT POLICY
FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT
DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD
SEMICONDUCTOR CORPORATION. As used herein:
1. Life support devices or systems are devices or systems
which, (a) are intended for surgical implant into the
body, or (b) support or sustain life, and (c) whose failure
to perform when properly used in accordance with
instructions for use provided in the labeling, can be rea-
sonably expected to result in a significant injury to the
user.
2. A critical component in any component of a life support
device or system whose failure to perform can be rea-
sonably expected to cause the failure of the life support
device or system, or to affect its safety or effectiveness.
www.fairchildsemi.com
Fairchild does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and Fairchild reserves the right at any time without notice to change said circuitry and specifications.
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