1
Standard ICs
Single 2-input NOR gate
BU4S01
The BU4S01 is an ultra-compact logic IC with one circuit of the dual-input positive logic NOR gate BU4001B built into
an SMP package.
•
Features
1) Low current dissipation.
2) Super-mini mold package designed for surface
mounting.
3) Wide range of operating power supply voltage.
4) Direct drive of 2 L-TTL inputs and 1 LS-TTL input.
•
Block diagram
•
Absolute maximum ratings (Ta = 25°C)
Parameter Symbol Limits Unit
V
DD VSS – 0.3 ~ VSS + 18 V
Pd 170 mW
I
IN ± 10 mA
Topr
Tstg
V
IN VSS – 0.3 ~ VDD + 0.3 V
Power supply voltage
Power dissipation
Input current
Operating temperature
Storage temperature
Input voltage
∗
1 These values indicate the range limits of the voltage that can be applied to each pin without
destroying it. Operation is not guaranteed at these values.
∗
2 Power dissipation is reduced by 1.7mW for each increase in Ta of 1°C over 25°C.
°C
°C
– 40 ~ + 85
– 55 ~ + 150
•
Recommended operating conditions (Ta = 25°C, VSS = 0V)
Parameter Symbol Min. Typ. Max. Unit
V
DD 3
—
16 V
V
IN 0
—
VDD V
Power supply voltage
Input voltage
2
Standard ICs BU4S01
•
Electrical characteristics
DC characteristics (unless otherwise noted, V
SS = 0V, Ta = 25°C)
Parameter Symbol Min. Typ. Max. Unit
Measurement
circuit
VDD (V)
V
IH
3.5
——
V5VOUT = 0.5V
V
OUT = 1.0V
V
OUT = 1.5V
V
OUT = 4.5V
V
OUT = 9.0V
V
OUT = 13.5V
Fig.1
7.0
——
V10
11.0
——
V15
| IOUT | < 1µ
A
| I
OUT | < 1µ
A
| I
OUT | < 1µ
A
| I
OUT | < 1µ
A
V
IL
——
1.5 V 5
——
3.0 V 10
——
4.0 V 15
I
IH
——
0.3 µ
A15V
IH = 15V
I
IL
——
– 0.3 µ
A15V
IL = 0V
V
OH
4.95
——
V5
V
IN = VSS9.95
——
V10
14.95
——
V15
V
OL
——
0.05 V 5
V
IN = VDD
——
0.05 V 10
——
0.05 V 15
I
OH
– 0.51
——
mA 5 VOH = 4.6V
V
OH = 2.5V
V
OH = 9.5V
V
OH = 13.5V
– 2.1
——
mA 5
– 1.3
——
mA 10
– 3.4
——
mA 15
V
IN = VSS
VIN = VDD
VIN = VSS,
V
DD
IOL
0.51
——
mA 5 VOL = 0.4V
V
OL = 0.5V
V
OL = 1.5V
1.3
——
mA 10
3.4
——
mA 15
IDD
——
0.25 µ
A5
——
0.5
µ
A10
——
1.0
µ
A15
Conditions
Input high level voltage
Input low level voltage
Input high level current
Input low level current
Output high level voltage
Output low level voltage
Output high level current
Output low level current
Static current dissipation