Datasheet
Table Of Contents
- 1.0 Electrical Characteristics
- 2.0 Typical Performance Curves
- FIGURE 2-1: Rise Time vs. Supply Voltage.
- FIGURE 2-2: Rise Time vs. Capacitive Load.
- FIGURE 2-3: Rise and Fall Times vs. Temperature.
- FIGURE 2-4: Fall Time vs. Supply Voltage.
- FIGURE 2-5: Fall Time vs. Capacitive Load.
- FIGURE 2-6: Propagation Delay vs. Input Amplitude.
- FIGURE 2-7: Propagation Delay Time vs. Supply Voltage.
- FIGURE 2-8: Propagation Delay Time vs. Temperature.
- FIGURE 2-9: Quiescent Current vs. Supply Voltage.
- FIGURE 2-10: Quiescent Current vs. Temperature.
- FIGURE 2-11: Output Resistance (Output High) vs. Supply Voltage.
- FIGURE 2-12: Output Resistance (Output Low) vs. Temperature.
- FIGURE 2-13: Supply Current vs. Capacitive Load.
- FIGURE 2-14: Supply Current vs. Capacitive Load.
- FIGURE 2-15: Supply Current vs. Capacitive Load.
- FIGURE 2-16: Supply Current vs. Frequency.
- FIGURE 2-17: Supply Current vs. Frequency.
- FIGURE 2-18: Supply Current vs. Frequency.
- FIGURE 2-19: Crossover Energy vs. Supply Voltage.
- 3.0 Pin Descriptions
- 4.0 Application Information
- 5.0 Packaging Information

© 2007 Microchip Technology Inc. DS22022B-page 3
MCP1403/4/5
1.0 ELECTRICAL
CHARACTERISTICS
Absolute Maximum Ratings †
Supply Voltage ................................................................+20V
Input Voltage ...............................(V
DD
+ 0.3V) to (GND – 5V)
Input Current (V
IN
>V
DD
)................................................50 mA
† Notice: Stresses above those listed under "Maximum
Ratings" may cause permanent damage to the device. This is
a stress rating only and functional operation of the device at
those or any other conditions above those indicated in the
operational sections of this specification is not intended.
Exposure to maximum rating conditions for extended periods
may affect device reliability.
DC CHARACTERISTICS (NOTE 2)
Electrical Specifications: Unless otherwise indicated, T
A
= +25°C, with 4.5V ≤ V
DD
≤ 18V.
Parameters Sym Min Typ Max Units Conditions
Input
Logic ‘1’, High Input Voltage V
IH
2.4 1.5 — V
Logic ‘0’, Low Input Voltage V
IL
—1.30.8V
Input Current I
IN
–1 — 1 µA 0V ≤ V
IN
≤ V
DD
Input Voltage V
IN
-5 — V
DD
+0.3 V
Output
High Output Voltage V
OH
V
DD
– 0.025 — — V DC Test
Low Output Voltage V
OL
— — 0.025 V DC Test
Output Resistance, High R
OH
—2.23.0Ω I
OUT
= 10 mA, V
DD
= 18V
Output Resistance, Low R
OL
—2.83.5Ω I
OUT
= 10 mA, V
DD
= 18V
Peak Output Current I
PK
—4.5—AV
DD
= 18V (Note 2)
Latch-Up Protection With-
stand Reverse Current
I
REV
— >1.5 — A Duty cycle ≤ 2%, t ≤ 300 µsec.
Switching Time (Note 1)
Rise Time t
R
—1528nsFigure 4-1, Figure 4-2
C
L
= 2200 pF
Fall Time t
F
—1828nsFigure 4-1, Figure 4-2
C
L
= 2200 pF
Delay Time t
D1
—4048nsFigure 4-1, Figure 4-2
Delay Time t
D2
—4048nsFigure 4-1, Figure 4-2
Power Supply
Supply Voltage V
DD
4.5 — 18.0 V
Power Supply Current I
S
—1.02.0mAV
IN
= 3V (Both Inputs)
I
S
— 0.15 0.25 mA V
IN
= 0V (Both Inputs)
Note 1: Switching times ensured by design.
2: Tested during characterization, not production tested.