MCP6401/1R/1U/2/4/6/7/9
Note: Unless otherwise indicated, TA = +25°C, VDD = +1.8V to +6.0V, VSS = GND, VCM = VDD/2, VOUT ≈ VDD/2,
VL = VDD/2, RL = 100 kΩ to VL and CL = 60 pF.
10
VDD = 6.0V
VDD = 1.8V
1
0.1
110000
110k00
11000k00
1100000k00
Frequency (Hz)
1010M0000
FIGURE 2-25:
Frequency.
Output Voltage Swing vs.
0.9
0.8
Falling Edge, VDD = 6.0V
0.7 Rising Edge, VDD = 6.0V
0.6
0.5
0.4
0.3
0.2
0.1
-50 -25
Falling Edge, VDD = 1.8V
Rising Edge, VDD = 1.8V
0 25 50 75 100 125 150
Temperature (°C)
FIGURE 2-28:
Temperature.
Slew Rate vs. Ambient
1000
100
VDD - VOH @ VDD = 1.8V
VOL - VSS @ VDD = 1.8V
10
1
0.1
01.001
VDD - VOH @ VDD = 6.0V
VOL - VSS @ VDD = 6.0V
RL = 10 kΩ
100.10
11000
Output Current (mA)
1100000
FIGURE 2-26:
Output Voltage Headroom
vs. Output Current.
24
21
VDD - VOH @ VDD = 6.0V
VOL - VSS@ VDD = 6.0V
18
15
12
9
6
VDD - VOH @ VDD = 1.8V
3
VOL - VSS @ VDD = 1.8V
0
-50 -25 0 25 50 75 100 125 150
Ambient Temperature (°C)
FIGURE 2-27:
Output Voltage Headroom
vs. Ambient Temperature.
VDD = 6.0V
G = +1 V/V
Time (2 µs/div)
FIGURE 2-29:
Small Signal Non-Inverting
Pulse Response.
VDD = 6.0V
G = -1 V/V
FIGURE 2-30:
Response.
Time (2 µs/div)
Small Signal Inverting Pulse
© 2009-2011 Microchip Technology Inc.
DS22229D-page 13