Datasheet
December 2010
© 2001 Fairchild Semiconductor Corporation www.fairchildsemi.com
NC7SP04 • Rev. 1.0.5
NC7SP04 — TinyLogic
®
ULP Inverter
NC7SP04 — TinyLogic
®
ULP Inverter
Features
0.9V to 3.6V V
CC
Supply Operation
3.6V Over-Voltage Tolerant I/Os at V
CC
from
0.9V to 3.6V
Propagation Delay (t
PD
):
4.0ns Typical for 3.0V to 3.6V V
CC
5.0ns Typical for 2.3V to 2.7V V
CC
6.0ns Typical for 1.65V to 1.95V V
CC
7.0ns Typical for 1.40V to 1.60V V
CC
11.0ns Typical for 1.10V to 1.30V V
CC
27.0ns Typical for 0.90V V
CC
Power-Off High-Impedance Inputs and Outputs
Static Drive (I
OH
/I
OL
):
± 2.6mA at 3.00V V
CC
± 2.1mA at 2.30V V
CC
± 1.5mA at 1.65V V
CC
± 1.0mA at 1.40V V
CC
± 0.5mA at 1.10V V
CC
± 20µA at 0.9V V
CC
Quiet Series™ Noise / EMI Reduction Circuitry
Ultra Small MicroPak™ Packages
Ultra Low Dynamic Power
Description
The NC7SP04 is a single inverter 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 V
CC
operating range of 0.9V to 3.6V.
The internal circuit is composed of a minimum of
inverter stages, including the output buffer, to enable
ultra low static and dynamic power.
The NC7SP04, for lower drive requirements, is uniquely
designed for optimized power and speed and is
fabricated with an advanced CMOS technology to
achieve best-in-class speed of operation, while
maintaining extremely low CMOS power dissipation.
Related Resources
AN-5055 — Portability and Ultra Low Power
TinyLogic®
Ordering Information
Part Number Top Mark Package Packing Method
NC7SP04P5X P04 5-Lead SC70, EIAJ SC-88a, 1.25mm Wide
3000 Units on
Tape & Reel
NC7SP04L6X J6 6-Lead MicroPak™, 1.00mm Wide
5000 Units on
Tape & Reel
NC7SP04FHX J6 6-Lead, MicroPak2™, 1x1mm Body, .35mm Pitch
5000 Units on
Tape & Reel
Notes:
1. TinyLogic ULP and ULP-A with up to 50% less power
consumption can extend battery life significantly.
2. Battery Life=(V
battery
x I
battery
x 0.9) / (P
device
) / 24hrs/day;
where, P
device
=(I
CC
x V
CC
) + (C
PD
+ C
L
)
x V
CC
2
x f.
3. Assumes ideal 3.6V Lithium Ion battery with current
rating of 900mAH and derated 90% and device
frequency at 10MHz, with C
L
=15pF load.
Figure 1. Battery Life vs. V
CC
Supply Voltage