MCP42050-E/SL Microchip Technology, MCP42050-E/SL Datasheet - Page 14

IC POT DGTL 50K 2CH SPI 14SOIC

MCP42050-E/SL

Manufacturer Part Number
MCP42050-E/SL
Description
IC POT DGTL 50K 2CH SPI 14SOIC
Manufacturer
Microchip Technology
Datasheet

Specifications of MCP42050-E/SL

Temperature Coefficient
800 ppm/°C Typical
Taps
256
Resistance (ohms)
50K
Number Of Circuits
2
Memory Type
Non-Volatile
Interface
SPI, 3-Wire Serial
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
14-SOIC (3.9mm Width), 14-SOL
Resistance In Ohms
50K
End To End Resistance
50kohm
Track Taper
Linear
No. Of Steps
256
Supply Voltage Range
2.7V To 5.5V
Control Interface
Serial, SPI
No. Of Pots
Dual
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MCP42050-E/SL
Manufacturer:
MICROCHIP
Quantity:
12 000
MCP41XXX/42XXX
4.1
Digital potentiometer applications can be divided into
two categories: rheostat mode and potentiometer, or
voltage divider, mode.
4.1.1
In the rheostat mode, the potentiometer is used as a
two-terminal resistive element. The unused terminal
should be tied to the wiper, as shown in Figure 4-2.
Note that reversing the polarity of the A and B terminals
will not affect operation.
FIGURE 4-2:
configuration for the digital potentiometer. Acting
as a resistive element in the circuit, resistance is
controlled by changing the wiper setting.
Using the device in this mode allows control of the total
resistance between the two nodes. The total measured
resistance would be the least at code 00h, where the
wiper is tied to the B terminal. The resistance at this
code is equal to the wiper resistance, typically 52
the 10 k
(MCP4X050), and 100 k
the 10 k
(assuming 10 k
would then increase with this LSB size until the total
measured resistance at code FFh would be 9985.94 .
The wiper will never directly connect to the A terminal
of the resistor stack.
In the 00h state, the total resistance is the wiper resis-
tance. To avoid damage to the internal wiper circuitry in
this configuration, care should be taken to ensure the
current flow never exceeds 1 mA.
For dual devices, the variation of channel-to-channel
matching of the total resistance from A to B is less than
1%. The device-to-device matching, however, can vary
up to 30%. In the rheostat mode, the resistance has a
positive temperature coefficient. The change in wiper-
to-end terminal resistance over temperature is shown
in Figure 2-8. The most variation over temperature will
occur in the first 6% of codes (code 00h to 0Fh) due to
the wiper resistance coefficient affecting the total resis-
tance. The remaining codes are dominated by the total
resistance tempco R
DS11195C-page 14
Modes of Operation
device, the LSB size would be 39.0625
MCP4X010 devices, 125
RHEOSTAT MODE
MCP4XXXX
A
B
total resistance). The resistance
AB
W
Two-terminal or rheostat
, typically 800 ppm/°C.
(MCP4X100) devices. For
Resistor
for the 50 k
for
4.1.2
In the potentiometer mode, all three terminals of the
device are tied to different nodes in the circuit. This
allows the potentiometer to output a voltage propor-
tional to the input voltage. This mode is sometimes
called voltage divider mode. The potentiometer is used
to provide a variable voltage by adjusting the wiper
position between the two endpoints as shown in
Figure 4-3. Note that reversing the polarity of the A and
B terminals will not affect operation.
FIGURE 4-3:
divider mode.
In this configuration, the ratio of the internal resistance
defines the temperature coefficient of the device. The
resistor matching of the R
performs with a typical temperature coefficient of
1 ppm/°C (measured at code 80h). At lower codes, the
wiper resistance temperature coefficient will dominate.
Figure 2-3 shows the effect of the wiper. Above the
lower codes, this figure shows that 70% of the states
will typically have a temperature coefficient of less than
5 ppm/°C. 30% of the states will typically have a
ppm/°C of less than 1.
POTENTIOMETER MODE
Three terminal or voltage
A
B
V
MCP4XXXX
WB
2003 Microchip Technology Inc.
1
W
resistor to the R
V
2
AB
resistor

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