74LCX08M [ONSEMI]

低电压四路 2 输入 AND 门极,带 5V 耐压输入;
74LCX08M
型号: 74LCX08M
厂家: ONSEMI    ONSEMI
描述:

低电压四路 2 输入 AND 门极,带 5V 耐压输入

PC 栅 光电二极管 逻辑集成电路 触发器
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74LCX08  
Low Voltage Quad 2-Input AND Gate with 5V  
Tolerant Inputs  
General Description  
The LCX08 contains four 2-input AND gates. The inputs  
tolerate voltages up to 7V allowing the interface of 5V  
systems to 3V systems.  
Features  
5V tolerant inputs  
2.3V–3.6V V specifications provided  
The 7ꢀLVX08 is fabricated with advanced CMOS tech-  
nology to achieve high speed operation while maintain-  
ing CMOS low power dissipation.  
CC  
5.5ns t max. (V = 3.3V), 10µA I max.  
PD  
CC  
CC  
Power down high impedance inputs and outputs  
2ꢀmA output drive (V = 3.0V)  
CC  
Implements proprietary noise/EMI reduction circuitry  
Latch-up performance exceeds JEDEC 78 conditions  
ESD performance:  
– Human body model > 2000V  
– Machine model > 150V  
Leadless DQFN package  
Ordering Information  
Package  
Order Number  
7ꢀLCX08M  
Number  
Package Description  
M1ꢀA  
1ꢀ-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-012, 0.150" Narrow  
1ꢀ-Lead Small Outline Package (SOP), EIAJ TYPE II, 5.3mm Wide  
7ꢀLCX08SJ  
M1ꢀD  
(1)  
7ꢀLCX08BQX  
MLP1ꢀA  
1ꢀ-Terminal Depopulated Quad Very-Thin Flat Pack No Leads (DQFN), JEDEC  
MO-2ꢀ1, 2.5 x 3.0mm  
7ꢀLCX08MTC  
MTC1ꢀ  
1ꢀ-Lead Thin Shrink Small Outline Package (TSSOP), JEDEC MO-153, ꢀ.ꢀmm  
Wide  
Note:  
1. DQFN package available in Tape and Reel only.  
Device also available in Tape and Reel. Specify by appending suffix letter “X” to the ordering number.  
All packages are lead free per JEDEC: J-STD-020B standard.  
Publication Order Number:  
74LCX08/D  
©1995 Semiconductor Components Industries, LLC.  
August-2017, Rev. 2  
Connection Diagrams  
Logic Symbol  
Pin Assignments for SOIC, SOP, and TSSOP  
IEEE/IEC  
Pad Assignments for DQFN  
(Top View)  
(Bottom View)  
Pin Description  
Pin Names  
Description  
A , B  
Inputs  
n
n
O
Outputs  
n
No Connect  
DAP  
Note: DAP (Die Attach Pad)  
www.onsemi.com  
2
Absolute Maximum Ratings  
Stresses exceeding the absolute maximum ratings may damage the device. The device may not function or be  
operable above the recommended operating conditions and stressing the parts to these levels is not recommended.  
In addition, extended exposure to stresses above the recommended operating conditions may affect device reliability.  
The absolute maximum ratings are stress ratings only.  
Symbol  
Parameter  
Rating  
V
Supply Voltage  
–0.5V to +7.0V  
–0.5V to +7.0V  
CC  
V
DC Input Voltage  
I
(2)  
V
DC Output Voltage, Output in HIGH or LOW State  
–0.5V to V + 0.5V  
O
IK  
CC  
I
DC Input Diode Current, V < GND  
–50mA  
I
I
DC Output Diode Current  
OK  
V
< GND  
–50mA  
+50mA  
O
V
> V  
CC  
O
I
DC Output Source/Sink Current  
DC Supply Current per Supply Pin  
DC Ground Current per Ground Pin  
Storage Temperature  
50mA  
O
I
100mA  
CC  
I
100mA  
GND  
T
–65°C to +150°C  
STG  
Note:  
2. I Absolute Maximum Rating must be observed.  
O
(3)  
Recommended Operating Conditions  
The Recommended Operating Conditions table defines the conditions for actual device operation. Recommended  
operating conditions are specified to ensure optimal performance to the datasheet specifications. ON  
Semiconductor does not recommend exceeding them or designing to absolute maximum ratings.  
Symbol  
Parameter  
Min.  
Max.  
Units  
V
Supply Voltage  
Operating  
CC  
2.0  
1.5  
0
3.6  
3.6  
5.5  
V
Data Retention  
Input Voltage  
V
V
V
I
V
Output Voltage, HIGH or LOW State  
Output Current  
0
V
CC  
O
I
/ I  
OH OL  
V
V
V
= 3.0V–3.6V  
= 2.7V–3.0V  
= 2.3V–2.7V  
2ꢀ  
12  
8
mA  
CC  
CC  
CC  
T
Free-Air Operating Temperature  
Input Edge Rate, V = 0.8V–2.0V, V = 3.0V  
–ꢀ0  
0
85  
10  
°C  
A
t / V  
ns/V  
IN  
CC  
Note:  
3. Unused inputs must be held HIGH or LOW. They may not float.  
www.onsemi.com  
3
DC Electrical Characteristics  
T = –40°C to +85°C  
A
Symbol  
Parameter  
V
(V)  
Conditions  
Min.  
1.7  
Max.  
Units  
CC  
V
HIGH Level Input Voltage  
2.3–2.7  
2.7–3.6  
2.3–2.7  
2.7–3.6  
2.3–3.6  
2.3  
V
IH  
2.0  
V
LOW Level Input Voltage  
HIGH Level Output Voltage  
0.7  
0.8  
V
V
IL  
V
I
I
I
I
I
I
I
I
I
I
= –100µA  
= –8mA  
= –12mA  
= –18mA  
= –2ꢀmA  
= 100µA  
= 8mA  
V
– 0.2  
OH  
OH  
OH  
OH  
OH  
OH  
OL  
OL  
OL  
OL  
OL  
CC  
1.8  
2.2  
2.ꢀ  
2.2  
2.7  
3.0  
V
LOW Level Output Voltage  
2.3–3.6  
2.3  
0.2  
0.6  
0.ꢀ  
0.ꢀ  
0.55  
5.0  
10  
V
OL  
2.7  
= 12mA  
= 16mA  
= 2ꢀmA  
3.0  
I
Input Leakage Current  
2.3–3.6  
0
0 V 5.5V  
µA  
µA  
µA  
I
I
I
Power-Off Leakage Current  
Quiescent Supply Current  
V or V = 5.5V  
I O  
OFF  
I
2.3–3.6  
V = V or GND  
10  
CC  
I
CC  
3.6V V 5.5V  
10  
I
I  
Increase in I per Input  
2.3–3.6  
V
= V – 0.6V  
500  
µA  
CC  
CC  
IH  
CC  
AC Electrical Characteristics  
T = –40°C to +85°C, R = 500Ω  
A
L
V
= 3.3V 0.3V,  
V
= 2.7V,  
V = 2.5V 0.2V,  
CC  
CC  
CC  
C = 50pF  
C = 50pF  
C = 30pF  
L
L
L
Symbol  
Parameter  
Propagation Delay  
Output to Output Skew  
Min.  
Max.  
5.5  
Min.  
Max.  
Min.  
Max.  
Units  
ns  
t
, t  
1.5  
1.5  
6.2  
1.5  
6.6  
PHL PLH  
(ꢀ)  
t
, t  
1.0  
ns  
OSHL OSLH  
Note:  
ꢀ. Skew is defined as the absolute value of the difference between the actual propagation delay for any two  
separate outputs of the same device. The specification applies to any outputs switching in the same direction,  
either HIGH-to-LOW (t ) or LOW-to-HIGH (t ).  
OSHL  
OSLH  
www.onsemi.com  
4
Dynamic Switching Characteristics  
T = 25°C  
A
Symbol  
Parameter  
V
(V)  
Conditions  
Typical  
0.8  
Unit  
CC  
V
Quiet Output Dynamic Peak V  
3.3  
C = 50pF, V = 3.3V, V = 0V  
V
OLP  
OL  
L
IH  
IL  
2.5  
3.3  
2.5  
C = 30pF, V = 2.5V, V = 0V  
0.6  
L
IH  
IL  
V
Quiet Output Dynamic Valley V  
C = 50pF, V = 3.3V, V = 0V  
–0.8  
–0.6  
V
OLV  
OL  
L
IH  
IL  
C = 30pF, V = 2.5V, V = 0V  
L
IH  
IL  
Capacitance  
Symbol  
Parameter  
Conditions  
Typical  
Units  
pF  
C
Input Capacitance  
V
= Open, V = 0V or V  
CC  
7
8
IN  
CC  
CC  
CC  
I
C
Output Capacitance  
V
V
= 3.3V, V = 0V or V  
CC  
pF  
OUT  
I
C
Power Dissipation Capacitance  
= 3.3V, V = 0V or V , f = 10MHz  
25  
pF  
PD  
I
CC  
www.onsemi.com  
5
AC Loading and Waveforms (Generic for LCX Family)  
Test  
Switch  
t
t
, t  
Open  
PLH PHL  
, t  
6V at V = 3.3 0.3V  
PZL PLZ  
CC  
V
x 2 at V = 2.5 0.2V  
CC  
CC  
t
, t  
GND  
PZH PHZ  
Figure 1. AC Test Circuit (C includes probe and jig capacitance)  
L
3-STATE Output High Enable and  
Waveform for Inverting and Non-Inverting Functions  
Disable Times for Logic  
Setup Time, Hold Time and Recovery Time for Logic  
Propagation Delay. Pulse Width and t Waveforms  
rec  
3-STATE Output Low Enable and  
Disable Times for Logic  
t
and t  
fall  
rise  
V
CC  
Symbol  
3.3V 0.3V  
1.5V  
2.7V  
1.5V  
1.5V  
2.5V 0.2V  
V
V
V
/ 2  
/ 2  
mi  
CC  
CC  
V
1.5V  
mo  
V
V
+ 0.3V  
– 0.3V  
V
+ 0.3V  
V
+ 0.15V  
– 0.15V  
x
y
OL  
OL  
OL  
V
V
V
– 0.3V  
V
OH  
OH  
OH  
Figure 2. Waveforms (Input Characteristics; f = 1MHz, t = t = 3ns)  
r
f
www.onsemi.com  
6
Schematic Diagram (Generic for LCX Family)  
www.onsemi.com  
7
Tape and Reel Specification  
Tape Format for DQFN  
Package Designator  
Tape Section  
Number of Cavities  
125 (Typ.)  
Cavity Status  
Empty  
Cover Tape Status  
Sealed  
BQX  
Leader (Start End)  
Carrier  
3000  
Filled  
Sealed  
Trailer (Hub End)  
75 (Typ.)  
Empty  
Sealed  
Tape Dimensions inches (millimeters)  
Reel Dimensions inches (millimeters)  
Tape Size  
A
B
C
D
N
W1  
W2  
12mm  
13.0 (330.0)  
0.059 (1.50)  
0.512 (13.00) 0.795 (20.20) 2.165 (55.00)  
0.488 (12.4)  
0.724 (18.4)  
www.onsemi.com  
8
ON Semiconductor and  
are trademarks of Semiconductor Components Industries, LLC dba ON Semiconductor or its subsidiaries in the United States and/or other countries.  
ON Semiconductor owns the rights to a number of patents, trademarks, copyrights, trade secrets, and other intellectual property. A listing of ON Semiconductor’s product/patent  
coverage may be accessed at www.onsemi.com/site/pdf/PatentMarking.pdf. ON Semiconductor reserves the right to make changes without further notice to any products herein.  
ON Semiconductor makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does ON Semiconductor assume any liability  
arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages.  
Buyer is responsible for its products and applications using ON Semiconductor products, including compliance with all laws, regulations and safety requirements or standards,  
regardless of any support or applications information provided by ON Semiconductor. “Typical” parameters which may be provided in ON Semiconductor data sheets and/or  
specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer  
application by customer’s technical experts. ON Semiconductor does not convey any license under its patent rights nor the rights of others. ON Semiconductor products are not  
designed, intended, or authorized for use as a critical component in life support systems or any FDA Class 3 medical devices or medical devices with a same or similar classification  
in a foreign jurisdiction or any devices intended for implantation in the human body. Should Buyer purchase or use ON Semiconductor products for any such unintended or unauthorized  
application, Buyer shall indemnify and hold ON Semiconductor and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and  
expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such  
claim alleges that ON Semiconductor was negligent regarding the design or manufacture of the part. ON Semiconductor is an Equal Opportunity/Affirmative Action Employer. This  
literature is subject to all applicable copyright laws and is not for resale in any manner.  
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