MCP1701T-1802ICB Microchip Technology Inc., MCP1701T-1802ICB Datasheet - Page 5

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MCP1701T-1802ICB

Manufacturer Part Number
MCP1701T-1802ICB
Description
Dropout Positive Voltage Regulator
Manufacturer
Microchip Technology Inc.
Datasheet
2.0
Notes: Unless otherwise specified, V
FIGURE 2-1:
Voltage (V
FIGURE 2-2:
Voltage (V
FIGURE 2-3:
Voltage (V
© 2005 Microchip Technology Inc.
Note:
2.65
2.60
2.55
2.50
2.45
2.40
2.35
2.30
2.25
2.20
2.15
2.10
2.05
2.00
1.95
2.4
2.3
2.2
2.1
2.0
1.9
1.8
1.7
1.6
1.5
1.4
1.3
1.2
3.00
2.85
2.70
2.55
2.40
2.25
2.10
1.95
1.80
1.65
1.50
TYPICAL PERFORMANCE CURVES
3
2
5
V
+25°C
R
R
R
The graphs and tables provided following this note are a statistical summary based on a limited number of
samples and are provided for informational purposes only. The performance characteristics listed herein
are not tested or guaranteed. In some graphs or tables, the data presented may be outside the specified
operating range (e.g., outside specified power supply range) and therefore outside the warranted range.
R
= 5.0V
= 1.8V).
= 3.0V).
= 5.0V).
3
4
+25°C
+85°C
0°C
6
+25°C
+85°C
4
5
-40°C
-40°C
Supply Current vs. Input
Supply Current vs. Input
Supply Current vs. Input
Input Voltage (V)
-40°C
Input Voltage (V)
Input Voltage (V)
5
7
6
6
7
8
7
OUT
8
8
= 1.8V, 3.0V, 5.0V, T
9
V
R
V
R
= 3.0V
9
9
= 1.8V
10
10
10
A
FIGURE 2-4:
Current (V
FIGURE 2-5:
Current (V
FIGURE 2-6:
Temperature.
= +25°C, C
2.10
2.05
2.00
1.95
1.90
1.85
1.80
1.75
1.70
1.65
1.60
1.55
1.50
1.45
1.40
1.35
1.30
1.25
1.20
2.75
2.70
2.65
2.60
2.55
2.50
2.45
2.40
2.35
2.30
2.25
2.20
2.15
2.10
2.05
2.00
2.9
2.8
2.7
2.6
2.5
2.4
2.3
2.2
2.1
2.0
1.9
1.8
1.7
1.6
1.5
1.4
-40
0
0
IN
R
R
20
= 1 µF Tantalum, C
= 3.0V).
= 5.0V).
-20
20
0°C
0°C
40
40
0
+25°C
60
+25°C
Load Current (mA)
Load Current (mA)
Temperature (°C)
Supply Current vs. Load
Supply Current vs. Load
Supply Current vs.
V
60
V
+85°C
-40°C
R
80
R
-40°C
V
20
= 1.8V
= 5.0V
R
+85°C
= 3.0V
100
80
MCP1701
40
120
OUT
100
140 160 180 200
= 1 µF Tantalum.
60
DS21874B-page 5
120
V
I
OUT
IN
V
V
V
V
= V
= 0 µA
80
IN
R
IN
R
140
= 3.0V
= 5.0V
= 4.0V
= 6.0V
R
+ 1V
160
100

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