MCP1703T-3302E/CB Microchip Technology, MCP1703T-3302E/CB Datasheet - Page 5

IC REG LDO 3.3V 250MA SOT-23A

MCP1703T-3302E/CB

Manufacturer Part Number
MCP1703T-3302E/CB
Description
IC REG LDO 3.3V 250MA SOT-23A
Manufacturer
Microchip Technology
Datasheets

Specifications of MCP1703T-3302E/CB

Package / Case
SOT-23A-3
Regulator Topology
Positive Fixed
Voltage - Output
3.3V
Voltage - Input
Up to 16V
Voltage - Dropout (typical)
0.525V @ 250mA
Number Of Regulators
1
Current - Output
250mA (Min)
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Number Of Outputs
1
Polarity
Positive
Input Voltage Max
16 V
Output Voltage
3.3 V
Output Type
Fixed
Dropout Voltage (max)
0.65 V at 250 mA
Output Current
250 mA
Line Regulation
0.1 % / V
Load Regulation
1 %
Voltage Regulation Accuracy
2 %
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Limit (min)
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
MCP1703T-3302E/CBTR

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MCP1703T-3302E/CB
Manufacturer:
MICROCHIP
Quantity:
45 000
Part Number:
MCP1703T-3302E/CB
Manufacturer:
MICROCHIP
Quantity:
180
Part Number:
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Manufacturer:
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Quantity:
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Part Number:
MCP1703T-3302E/CB
0
2.0
Note: Unless otherwise indicated: V
T
Note: Junction Temperature (T
temperature. The test time is small enough such that the rise in Junction temperature over the Ambient temperature is not significant.
FIGURE 2-1:
Voltage.
FIGURE 2-2:
Voltage.
FIGURE 2-3:
Voltage.
 2010 Microchip Technology Inc.
A
Note:
= +25°C, V
6.00
5.00
4.00
3.00
2.00
1.00
0.00
6.00
5.00
4.00
3.00
2.00
1.00
0.00
6.00
5.00
4.00
3.00
2.00
1.00
TYPICAL PERFORMANCE CURVES
2
2
6
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.
+25°C
IN
4
4
0°C
+90°C
= V
8
+130°C
OUT(MAX)
6
6
+90°C
Quiescent Current vs. Input
Quiescent Current vs. Input
Quiescent Current vs. Input
10
Input Voltage (V)
Input Voltage (V)
Input Voltage (V)
8
8
-45°C
0°C
J
-45°C
) is approximated by soaking the device under test to an ambient temperature equal to the desired junction
10
10
12
+ V
+130°C
+130°C
DROPOUT(MAX)
+90°C
12
12
R
-45°C
14
V
I
OUT
OUT
V
I
= 1.8V, C
V
I
OUT
OUT
OUT
OUT
14
14
= 0 µA
0°C
= 1.2V
= 0 µA
= 0 µA
= 2.5V
= 5.0V
16
16
16
+25°C
+25°C
OUT
or 2.7V, whichever is greater.
18
18
18
= 1 µF Ceramic (X7R), C
FIGURE 2-4:
Current.
FIGURE 2-5:
Current.
FIGURE 2-6:
Junction Temperature.
120
100
120
100
3.00
2.50
2.00
1.50
1.00
0.50
0.00
80
60
40
20
80
60
40
20
0
0
-45
0
0
IN
V
V
-20
OUT
IN
= 1 µF Ceramic (X7R), I
= 3.5V
40
50
= 2.5V
Junction Temperature (°C)
5
Load Current (mA)
Load Current (mA)
Ground Current vs. Load
Ground Current vs. Load
Quiescent Current vs.
100
80
V
V
30
V
V
OUT
IN
OUT
IN
= 6.0V
V
V
= 2.7V
= 5.0V
MCP1703
V
V
OUT
IN
= 1.2V
OUT
IN
= 3.5V
= 6.0V
= 2.5V
55
120
150
= 5.0V
DS22049E-page 5
80
I
OUT
L
V
V
160
200
OUT
IN
= 100 µA,
= 2.7V
= 0 mA
105
= 1.2V
200
250
130

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