ChipFind - Datasheet

Part Number MC74LCX240

Download:  PDF   ZIP
MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
1
REV 3
©
Motorola, Inc. 1996
9/95
Low-Voltage CMOS
Octal Buffer
With 5V-Tolerant Inputs and Outputs
(3-State, Inverting)
The MC74LCX240 is a high performance, inverting octal buffer
operating from a 2.7 to 3.6V supply. High impedance TTL compatible
inputs significantly reduce current loading to input drivers while TTL
compatible outputs offer improved switching noise performance. A VI
specification of 5.5V allows MC74LCX240 inputs to be safely driven from
5V devices. The MC74LCX240 is suitable for memory address driving
and all TTL level bus oriented transceiver applications.
Current drive capability is 24mA at the outputs. The Output Enable
(OE) input, when HIGH, disables the outputs by placing them in a HIGH Z
condition.
·
Designed for 2.7 to 3.6V VCC Operation
·
5V Tolerant -- Interface Capability With 5V TTL Logic
·
Supports Live Insertion and Withdrawal
·
IOFF Specification Guarantees High Impedance When VCC = 0V
·
LVTTL Compatible
·
LVCMOS Compatible
·
24mA Balanced Output Sink and Source Capability
·
Near Zero Static Supply Current in All Three Logic States (10
µ
A)
Substantially Reduces System Power Requirements
·
Latchup Performance Exceeds 500mA
·
ESD Performance: Human Body Model >2000V; Machine Model >200V
Pinout: 20­Lead (Top View)
19
20
18
17
16
15
14
2
1
3
4
5
6
7
VCC
13
8
12
9
11
10
2OE
1O0
2D0
1O1
2D1
1O2
2D2
1O3
2D3
1OE
1D0
2O0
1D1
2O1
1D2
2O2
1D3
2O3
GND
PIN NAMES
Function
Output Enable Inputs
Data Inputs
3­State Outputs
Pins
nOE
1Dn, 2Dn
1On, 2On
MC74LCX240
LOW­VOLTAGE CMOS
OCTAL BUFFER
DW SUFFIX
PLASTIC SOIC
CASE 751D­04
DT SUFFIX
PLASTIC TSSOP
CASE 948E­02
20
1
20
1
M SUFFIX
PLASTIC SOIC EIAJ
CASE 967­01
20
1
SD SUFFIX
PLASTIC SSOP
CASE 940C­03
20
1
MC74LCX240
MOTOROLA
LCX DATA
BR1339 -- REV 3
2
LOGIC DIAGRAM
1OE
1
1D0
2
1O0
18
1D1
4
1O1
16
1D2
6
1O2
14
1D3
8
1O3
12
2OE
19
2D0
17
2O0
3
2D1
15
2O1
5
2D2
13
2O2
7
2D3
11
2O3
9
INPUTS
OUTPUTS
1OE
2OE
1Dn
2Dn
1On, 2On
L
L
H
L
H
L
H
X
Z
H = High Voltage Level; L = Low Voltage Level; Z = High
Impedance State; X = High or Low Voltage Level and Transitions
Are Acceptable, for ICC reasons, DO NOT FLOAT Inputs
MC74LCX240
LCX DATA
BR1339 -- REV 3
3
MOTOROLA
ABSOLUTE MAXIMUM RATINGS*
Symbol
Parameter
Value
Condition
Unit
VCC
DC Supply Voltage
­0.5 to +7.0
V
VI
DC Input Voltage
­0.5
VI
+7.0
V
VO
DC Output Voltage
­0.5
VO
+7.0
Output in 3­State
V
­0.5
VO
VCC + 0.5
Note 1.
V
IIK
DC Input Diode Current
­50
VI < GND
mA
IOK
DC Output Diode Current
­50
VO < GND
mA
+50
VO > VCC
mA
IO
DC Output Source/Sink Current
±
50
mA
ICC
DC Supply Current Per Supply Pin
±
100
mA
IGND
DC Ground Current Per Ground Pin
±
100
mA
TSTG
Storage Temperature Range
­65 to +150
°
C
* Absolute maximum continuous ratings are those values beyond which damage to the device may occur. Exposure to these conditions or conditions
beyond those indicated may adversely affect device reliability. Functional operation under absolute­maximum­rated conditions is not implied.
1. Output in HIGH or LOW State. IO absolute maximum rating must be observed.
RECOMMENDED OPERATING CONDITIONS
Symbol
Parameter
Min
Typ
Max
Unit
VCC
Supply Voltage
Operating
Data Retention Only
2.0
1.5
3.3
3.3
3.6
3.6
V
VI
Input Voltage
0
5.5
V
VO
Output Voltage
(HIGH or LOW State)
(3­State)
0
0
VCC
5.5
V
IOH
HIGH Level Output Current, VCC = 3.0V ­ 3.6V
­24
mA
IOL
LOW Level Output Current, VCC = 3.0V ­ 3.6V
24
mA
IOH
HIGH Level Output Current, VCC = 2.7V ­ 3.0V
­12
mA
IOL
LOW Level Output Current, VCC = 2.7V ­ 3.0V
12
mA
TA
Operating Free­Air Temperature
­40
+85
°
C
t/
V
Input Transition Rise or Fall Rate, VIN from 0.8V to 2.0V,
VCC = 3.0V
0
10
ns/V
DC ELECTRICAL CHARACTERISTICS
TA = ­40
°
C to +85
°
C
Symbol
Characteristic
Condition
Min
Max
Unit
VIH
HIGH Level Input Voltage (Note 2.)
2.7V
VCC
3.6V
2.0
V
VIL
LOW Level Input Voltage (Note 2.)
2.7V
VCC
3.6V
0.8
V
VOH
HIGH Level Output Voltage
2.7V
VCC
3.6V; IOH = ­100
µ
A
VCC ­ 0.2
V
VCC = 2.7V; IOH = ­12mA
2.2
VCC = 3.0V; IOH = ­18mA
2.4
VCC = 3.0V; IOH = ­24mA
2.2
VOL
LOW Level Output Voltage
2.7V
VCC
3.6V; IOL = 100
µ
A
0.2
V
VCC = 2.7V; IOL= 12mA
0.4
VCC = 3.0V; IOL = 16mA
0.4
VCC = 3.0V; IOL = 24mA
0.55
2. These values of VI are used to test DC electrical characteristics only.
MC74LCX240
MOTOROLA
LCX DATA
BR1339 -- REV 3
4
DC ELECTRICAL CHARACTERISTICS
(continued)
TA = ­40
°
C to +85
°
C
Symbol
Characteristic
Condition
Min
Max
Unit
II
Input Leakage Current
2.7V
VCC
3.6V; 0V
VI
5.5V
±
5.0
µ
A
IOZ
3­State Output Current
2.7
VCC
3.6V; 0V
VO
5.5V;
VI = VIH or V IL
±
5.0
µ
A
IOFF
Power­Off Leakage Current
VCC = 0V; VI or VO = 5.5V
10
µ
A
ICC
Quiescent Supply Current
2.7
VCC
3.6V; VI = GND or VCC
10
µ
A
2.7
VCC
3.6V; 3.6
VI or VO
5.5V
±
10
µ
A
ICC
Increase in ICC per Input
2.7
VCC
3.6V; VIH = VCC ­ 0.6V
500
µ
A
AC CHARACTERISTICS (tR = tF = 2.5ns; CL = 50pF; RL = 500
)
Limits
TA = ­40
°
C to +85
°
C
VCC = 3.0V to 3.6V
VCC = 2.7V
Symbol
Parameter
Waveform
Min
Max
Max
Unit
tPLH
tPHL
Propagation Delay
Input to Output
1
1.5
1.5
6.5
6.5
7.5
7.5
ns
tPZH
tPZL
Output Enable Time to
High and Low Level
2
1.5
1.5
8.0
8.0
9.0
9.0
ns
tPHZ
tPLZ
Output Disable Time From
High and Low Level
2
1.5
1.5
7.0
7.0
8.0
8.0
ns
tOSHL
tOSLH
Output­to­Output Skew
(Note 3.)
1.0
1.0
ns
3. 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 HIGH­to­LOW (tOSHL) or LOW­to­HIGH (tOSLH); parameter
guaranteed by design.
DYNAMIC SWITCHING CHARACTERISTICS
TA = +25
°
C
Symbol
Characteristic
Condition
Min
Typ
Max
Unit
VOLP
Dynamic LOW Peak Voltage (Note 4.)
VCC = 3.3V, CL = 50pF, VIH = 3.3V, VIL = 0V
0.8
V
VOLV
Dynamic LOW Valley Voltage (Note 4.)
VCC = 3.3V, CL = 50pF, VIH = 3.3V, VIL = 0V
0.8
V
4. Number of outputs defined as "n". Measured with "n­1" outputs switching from HIGH­to­LOW or LOW­to­HIGH. The remaining output is
measured in the LOW state.
CAPACITIVE CHARACTERISTICS
Symbol
Parameter
Condition
Typical
Unit
CIN
Input Capacitance
VCC = 3.3V, VI = 0V or VCC
7
pF
COUT
Output Capacitance
VCC = 3.3V, VI = 0V or VCC
8
pF
CPD
Power Dissipation Capacitance
10MHz, VCC = 3.3V, VI = 0V or VCC
25
pF
MC74LCX240
LCX DATA
BR1339 -- REV 3
5
MOTOROLA
WAVEFORM 1 ­ PROPAGATION DELAYS
tR = tF = 2.5ns, 10% to 90%; f = 1MHz; tW = 500ns
2.7V
0V
VOH
VOL
1Dn, 2Dn
1On, 2On
tPLH
tPHL
WAVEFORM 2 ­ OUTPUT ENABLE AND DISABLE TIMES
tR = tF = 2.5ns, 10% to 90%; f = 1MHz; tW = 500ns
2.7V
0V
0V
1OE, 2OE
1On, 2On
tPZH
3.0V
tPHZ
tPZL
tPLZ
1On, 2On
1.5V
1.5V
1.5V
1.5V
1.5V
1.5V
Figure 1. AC Waveforms
1.5V
VCC
VOH ­ 0.3V
VOL + 0.3V
GND
OPEN
PULSE
GENERATOR
RT
DUT
VCC
RL
R1
CL
6V
GND
TEST
SWITCH
tPLH, tPHL
Open
tPZL, tPLZ
6V
Open Collector/Drain tPLH and tPHL
6V
tPZH, tPHZ
GND
CL = 50pF or equivalent (Includes jig and probe capacitance)
RL = R1 = 500
or equivalent
RT = ZOUT of pulse generator (typically 50
)
Figure 2. Test Circuit