MCP4431-104E/ML Microchip Technology, MCP4431-104E/ML Datasheet - Page 9

IC POT 100K QUAD 7BIT 20QFN

MCP4431-104E/ML

Manufacturer Part Number
MCP4431-104E/ML
Description
IC POT 100K QUAD 7BIT 20QFN
Manufacturer
Microchip Technology
Datasheets

Specifications of MCP4431-104E/ML

Package / Case
20-VFQFN Exposed Pad
Resistance (ohms)
100K
Taps
129
Number Of Circuits
4
Temperature Coefficient
*
Memory Type
Volatile
Interface
I²C, 2-Wire Serial
Voltage - Supply
1.8 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Number Of Pots
Quad
Taps Per Pot
129
Resistance
100 KOhms
Wiper Memory
Volatile
Digital Interface
I2C
Operating Supply Voltage
1.8 V to 5.5 V
Supply Current
600 uA
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Supply Voltage (max)
5.5 V
Supply Voltage (min)
1.8 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
AC/DC CHARACTERISTICS (CONTINUED)
 2010 Microchip Technology Inc.
DC Characteristics
Rheostat
Differential Non-
linearity
MCP44X1
(Note
MCP44X2 devices
only
(Note
Note 1:
Parameters
4,
4)
2:
3:
4:
5:
6:
7:
8:
9:
10: Supply current is independent of current through the resistor network.
11: When HVC/A0 = V
Note
Resistance is defined as the resistance between terminal A to terminal B.
INL and DNL are measured at V
MCP44X1 only.
MCP44X2 only, includes V
Polarity of resistor terminals A, W and B, with respect to each other, is not restricted.
This specification by design.
Non-linearity is affected by wiper resistance (R
temperature.
The MCP44X1 is externally connected to match the configurations of the MCP44X2, and then tested.
POR/BOR is not rate dependent.
8)
R-DNL
Sym
IHH
, the I
Standard Operating Conditions (unless otherwise specified)
Operating Temperature
All parameters apply across the specified operating ranges unless noted.
V
Typical specifications represent values for V
DD
-0.375
-0.375
-0.375
-0.375
-0.375
-0.375
WZSE
-0.75
-0.75
DD
Min
-0.5
-1.0
-0.5
-1.0
-0.5
-0.5
-0.5
-0.5
= +2.7V to 5.5V, 5 k, 10 k, 50 k, 100 k devices.
current is less due to current into the HVC/A0 pin. See I
W
and V
with V
±0.25
±0.25
±0.25
+0.25
±0.25
±0.25
±0.25
±0.25
±0.25
±0.25
±0.25
±0.25
±0.25
+0.5
+0.5
+0.5
Typ
WFSE
Section 2.0
Section 2.0
Section 2.0
Section 2.0
Section 2.0
Section 2.0
Section 2.0
Section 2.0
A
= V
.
DD
+0.375
+0.375
+0.375
+0.375
+0.375
+0.375
W
+0.75
+0.75
Max
+0.5
+1.0
+0.5
+1.0
+0.5
+0.5
+0.5
+0.5
), which changes significantly over voltage and
and V
–40°C  T
B
= V
Units
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
LSb
SS
.
A
5 k
10 k
50 k
100 k 8-bit
 +125°C (extended)
DD
= 5.5V, T
MCP443X/5X
8-bit
7-bit
8-bit
7-bit
8-bit
7-bit
7-bit
Conditions
A
= +25°C.
5.5V, I
3.0V, I
(Note
1.8V, I
5.5V, I
3.0V, I
(Note
1.8V, I
5.5V, I
3.0V, I
(Note
1.8V, I
5.5V, I
3.0V, I
(Note
1.8V, I
5.5V, I
3.0V, I
(Note
1.8V, I
5.5V, I
3.0V, I
(Note
1.8V, I
5.5V, I
3.0V, I
(Note
1.8V, I
5.5V, I
3.0V, I
(Note
1.8V, I
PU
DS22267A-page 9
specification.
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
7)
7)
7)
7)
7)
7)
7)
7)
= 900 µA
= 480 µA
= 190 µA
= 900 µA
= 480 µA
= 190 µA
= 450 µA
= 240 µA
= 150 µA
= 450 µA
= 240 µA
= 150 µA
= 90 µA
= 48 µA
= 30 µA
= 90 µA
= 48 µA
= 30 µA
= 45 µA
= 24 µA
= 15 µA
= 45 µA
= 24 µA
= 15 µA

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