NC7NP34L8X [FAIRCHILD]

TinyLogic ULP Triple Buffer; TinyLogic ULP三重缓冲
NC7NP34L8X
型号: NC7NP34L8X
厂家: FAIRCHILD SEMICONDUCTOR    FAIRCHILD SEMICONDUCTOR
描述:

TinyLogic ULP Triple Buffer
TinyLogic ULP三重缓冲

文件: 总8页 (文件大小:144K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
June 2003  
Revised March 2004  
NC7NP34  
TinyLogic ULP Triple Buffer  
General Description  
Features  
The NC7NP34 is a triple buffer from Fairchild’s Ultra Low  
Power (ULP) Series of TinyLogic . Ideal for applications  
where battery life is critical, this product is designed for  
ultra low power consumption within the VCC operating  
Space saving US8 package  
Ultra small MicroPak Pb-free package  
0.9V to 3.6V VCC supply operation  
3.6V overvoltage tolerant I/O’s at VCC from 0.9V to 3.6V  
tPD  
range of 0.9V to 3.6V VCC  
.
The internal circuit is composed of a minimum of inverter  
stages, including the output buffer, to enable ultra low static  
and dynamic power.  
4.0 ns typ for 3.0V to 3.6V VCC  
5.0 ns typ for 2.3V to 2.7V VCC  
6.0 ns typ for 1.65V to 1.95V VCC  
7.0 ns typ for 1.40V to 1.60V VCC  
11.0 ns typ for 1.10V to 1.30V VCC  
27.0 ns typ for 0.90V VCC  
The NC7NP34 is designed for optimized power and speed,  
and is fabricated with an advanced CMOS technology to  
achieve high speed, low noise operation while maintaining  
extremely low CMOS power dissipation.  
Power-Off high impedance inputs and outputs  
Static Drive (IOH/IOL  
)
±2.6 mA @ 3.00V VCC  
±2.1 mA @ 2.30V VCC  
±1.5 mA @ 1.65V VCC  
±1.0 mA @ 1.40V VCC  
±0.5 mA @ 1.10V VCC  
±20 µA @ 0.9V VCC  
Low noise switching using design techniques of  
Quiet Series noise/EMI reduction circuitry  
Ultra low dynamic power  
Ordering Code:  
Product  
Order Number Package  
Code  
Package Description  
Supplied As  
Number Top Mark  
NC7NP34K8X  
NC7NP34L8X  
MAB08A  
MAC08A  
NP34  
X7  
8-Lead US8, JEDEC MO-187, Variation CA 3.1mm Wide 3k Units on Tape and Reel  
8-Lead MicroPak, 1.6 mm Wide  
5k Units on Tape and Reel  
Battery Life vs. V Supply Voltage  
CC  
TinyLogic ULP and ULP-A with up to 50% less power consumption can  
extend your battery life significantly.  
Battery Life = (Vbattery *Ibattery*.9)/(Pdevice)/24hrs/day  
Where, Pdevice = (ICC * VCC) + (CPD + CL) * VCC2 * f  
Assumes ideal 3.6V Lithium Ion battery with current rating of 900mAH and  
derated 90% and device frequency at 10MHz, with CL = 15 pF load  
TinyLogic is a registered trademark of Fairchild Semiconductor Corporation.  
Quiet Series and MicroPak are trademarks of Fairchild Semiconductor Corporation.  
© 2004 Fairchild Semiconductor Corporation  
DS500809  
www.fairchildsemi.com  
Logic Symbol  
Connection Diagrams  
IEEE/IEC  
Pin Assignments for US8  
Pin Descriptions  
(Top View)  
Pin Names  
A1, A2, A3  
Y1, Y2, Y3  
Description  
Input  
Pin One Orientation Diagram  
Output  
Function Table  
Y = A  
Input  
Output  
A
L
Y
L
H
H
AAA represents Product Code Top Mark - see ordering code  
H = HIGH Logic Level  
L = LOW Logic Level  
Note: Orientation of Top Mark determines Pin One location. Read the Top  
Product Code Mark left to right, Pin One is the lower left pin (see diagram).  
Pad Assignments for MicroPak  
(Top Thru View)  
www.fairchildsemi.com  
2
Absolute Maximum Ratings(Note 1)  
Recommended Operating  
Conditions (Note 3)  
0.5V to +4.6V  
Supply Voltage (VCC  
DC Input Voltage (VIN  
DC Output Voltage (VOUT  
HIGH or LOW State (Note 2)  
CC = 0V  
DC Input Diode Current (IIK) VIN < 0V  
DC Output Diode Current (IOK  
)
)
0.5V to +4.6V Supply Voltage  
0.9V to 3.6V  
0V to 3.6V  
)
Input Voltage (VIN  
)
0.5V to VCC +0.5V  
0.5V to 4.6V  
±50 mA  
Output Voltage (VOUT  
)
V
HIGH or LOW State  
CC = 0V  
Output Current in IOH/IOL  
0V to VCC  
0V to 3.6V  
V
)
V
V
OUT < 0V  
50 mA  
+50 mA  
± 50 mA  
V
V
V
V
V
V
CC = 3.0V to 3.6V  
CC = 2.3V to 2.7V  
CC = 1.65V to 1.95V  
CC = 1.40V to 1.60V  
CC = 1.10V to 1.30V  
CC = 0.9V  
±2.6 mA  
±2.1 mA  
OUT > VCC  
DC Output Source/Sink Current (IOH/IOL  
DC VCC or Ground Current per  
Supply Pin (ICC or Ground)  
)
±1.5 mA  
±1.0 mA  
± 50 mA  
±0.5 mA  
Storage Temperature Range (TSTG  
)
65°C to +150°C  
±20 µA  
Free Air Operating Temperature (TA)  
40°C to +85°C  
Minimum Input Edge Rate (t/V)  
V
IN = 0.8V to 2.0V, VCC = 3.0V  
10 ns/V  
Note 1: Absolute Maximum Ratings: are those values beyond which the  
safety of the device cannot be guaranteed. The device should not be oper-  
ated at these limits. The parametric values defined in the Electrical Charac-  
teristics tables are not guaranteed at the absolute maximum ratings. The  
Recommended Operating Conditionstable will define the conditions for  
actual device operation.  
Note 2: IO Absolute Maximum Rating must be observed.  
Note 3: Unused inputs must be held HIGH or LOW. They may not float.  
DC Electrical Characteristics  
VCC  
T
A = +25°C  
TA = −40°C to +85°C  
Symbol  
Parameter  
Units  
Conditions  
(V)  
Min  
0.65 x VCC  
Max  
Min  
Max  
VIH  
HIGH Level  
0.90  
0.65 x VCC  
0.65 x VCC  
0.65 x VCC  
0.65 x VCC  
1.6  
Input Voltage  
1.10 VCC 1.30 0.65 x VCC  
1.40 VCC 1.60 0.65 x VCC  
1.65 VCC 1.95 0.65 x VCC  
V
2.30 VCC 2.70  
3.00 VCC 3.60  
0.90  
1.6  
2.1  
2.1  
VIL  
LOW Level  
0.35 x VCC  
0.35 x VCC  
0.35 x VCC  
0.35 x VCC  
0.7  
0.35 x VCC  
0.35 x VCC  
0.35 x VCC  
0.35 x VCC  
0.7  
Input Voltage  
1.10 VCC 1.30  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
0.90  
V
0.9  
0.9  
VOH  
HIGH Level  
V
V
V
V
V
V
CC 0.1  
CC 0.1  
CC 0.1  
CC 0.1  
CC 0.1  
CC 0.1  
V
V
V
V
V
V
CC 0.1  
CC 0.1  
CC 0.1  
CC 0.1  
CC 0.1  
CC 0.1  
Output Voltage  
1.10 VCC 1.30  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
I
OH = −20 µA  
V
1.10 VCC 1.30 0.75 x VCC  
0.70 x VCC  
0.99  
I
I
I
I
I
OH = −0.5 mA  
OH = −1.0 mA  
OH = −1.5 mA  
OH = −2.1 mA  
OH = −2.6 mA  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
1.07  
1.24  
1.95  
2.61  
1.22  
1.87  
2.55  
3
www.fairchildsemi.com  
DC Electrical Characteristics (Continued)  
VCC  
T
A = +25°C  
Max  
TA = −40°C to +85°C  
Symbol  
Parameter  
LOW Level  
Units  
Conditions  
(V)  
Min  
Min  
Max  
0.1  
VOL  
0.90  
0.1  
0.1  
Output Voltage  
1.10 VCC 1.30  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
1.10 VCC 1.30  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
0.90 to 3.60  
0.1  
0.1  
0.1  
I
OL = 20 µA  
0.1  
0.1  
0.1  
0.1  
0.1  
0.1  
V
0.30 x VCC  
0.31  
0.31  
0.31  
0.31  
±0.1  
0.5  
0.30 x VCC  
0.37  
0.35  
0.33  
0.33  
±0.5  
0.5  
I
I
I
I
I
OL = 0.5 mA  
OL = 1.0 mA  
OL = 1.5 mA  
OL = 2.1 mA  
OL = 2.6 mA  
IIN  
Input Leakage Current  
µA  
µA  
µA  
0 VI 3.6V  
IOFF  
ICC  
Power Off Leakage Current  
Quiescent Supply Current  
0
0 (VI, VO) 3.6V  
VI = VCC or GND  
0.90 to 3.60  
0.9  
0.9  
AC Electrical Characteristics  
VCC  
T
A = +25°C  
TA = −40°C to +85°C  
Figure  
Number  
Symbol  
Parameter  
Units  
Conditions  
(V)  
Min  
Typ  
27.0  
11.0  
7.0  
Max  
Min  
Max  
tPHL  
tPLH  
Propagation Delay  
0.90  
1.10 VCC 1.30  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
0.90  
3.5  
2.5  
2.0  
1.5  
1.0  
21.8  
14.8  
12.0  
9.4  
3.0  
2.0  
1.5  
1.0  
1.0  
34.3  
15.0  
12.2  
9.9  
C
R
L = 10 pF  
L = 1 MΩ  
Figures  
1, 2  
ns  
6.0  
5.0  
4.0  
8.3  
9.0  
tPHL  
tPLH  
Propagation Delay  
30.0  
11.0  
8.0  
1.10 VCC 1.30  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
0.90  
4.0  
3.0  
2.5  
2.0  
1.5  
22.8  
15.5  
12.6  
9.9  
3.5  
2.5  
2.0  
1.5  
1.0  
37.3  
16.5  
13.6  
10.8  
9.5  
C
R
L = 15 pF  
L = 1 MΩ  
Figures  
1, 2  
ns  
ns  
6.0  
5.0  
4.0  
8.7  
tPHL  
tPLH  
Propagation Delay  
32.0  
13.0  
9.0  
1.10 VCC 1.30  
1.40 VCC 1.60  
1.65 VCC 1.95  
2.30 VCC 2.70  
3.00 VCC 3.60  
0
5.0  
4.0  
3.0  
2.0  
1.5  
25.9  
17.8  
14.4  
11.3  
9.2  
4.0  
3.5  
2.0  
1.5  
1.0  
46.3  
18.2  
15.9  
12.8  
10.7  
C
R
L = 30 pF  
L = 1 MΩ  
Figures  
1, 2  
7.0  
6.0  
5.0  
CIN  
Input Capacitance  
Output Capacitance  
Power Dissipation  
Capacitance  
2.0  
pF  
pF  
COUT  
CPD  
0
4.0  
VI = 0V or VCC  
,
0.9 to 3.60  
8.0  
pF  
f = 10 MHz  
www.fairchildsemi.com  
4
AC Loading and Waveforms  
FIGURE 1. AC Test Circuit  
FIGURE 2. AC Waveforms  
VCC  
Symbol  
3.3V ± 0.3V  
1.5V  
2.5V ± 0.2V  
1.8V ± 0.15V  
VCC/2  
1.5V ± 0.10V  
1.2V ± 0.10V  
VCC/2  
0.9V  
VCC/2  
VCC/2  
Vmi  
VCC/2  
VCC/2  
VCC/2  
VCC/2  
Vmo  
1.5V  
VCC/2  
VCC/2  
5
www.fairchildsemi.com  
Tape and Reel Specification  
TAPE FORMAT for US8  
Package  
Tape  
Section  
Number  
Cavities  
125 (typ)  
3000  
Cavity  
Status  
Empty  
Filled  
Cover Tape  
Status  
Designator  
Leader (Start End)  
Carrier  
Sealed  
K8X  
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  
W3  
7.0  
0.059  
0.512  
0.795  
2.165 0.331 + 0.059/0.000  
0.567  
W1 + 0.078/0.039  
(W1 + 2.00/1.00)  
8 mm  
(177.8) (1.50) (13.00) (20.20) (55.00) (8.40 + 1.50/0.00)  
(14.40)  
www.fairchildsemi.com  
6
Physical Dimensions inches (millimeters) unless otherwise noted  
8-Lead US8, JEDEC MO-187, Variation CA 3.1mm Wide  
Package Number MAB08A  
7
www.fairchildsemi.com  
Physical Dimensions inches (millimeters) unless otherwise noted (Continued)  
8-Lead MicroPak, 1.6 mm Wide  
Package Number MAC08A  
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.  
LIFE SUPPORT POLICY  
FAIRCHILDS 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  
www.fairchildsemi.com  
8

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