AD5258BRMZ1 Analog Devices Inc, AD5258BRMZ1 Datasheet - Page 20

IC POT DGTL I2C1K 64P 10MSOP

AD5258BRMZ1

Manufacturer Part Number
AD5258BRMZ1
Description
IC POT DGTL I2C1K 64P 10MSOP
Manufacturer
Analog Devices Inc
Datasheets

Specifications of AD5258BRMZ1

Memory Type
Non-Volatile
Temperature Coefficient
200 ppm/°C Typical
Taps
64
Resistance (ohms)
1K
Number Of Circuits
1
Interface
I²C, 2-Wire Serial
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Resistance In Ohms
1.00K
End To End Resistance
1kohm
Resistance Tolerance
± 30%
No. Of Steps
64
Supply Voltage Range
2.7V To 5.5V
No. Of Pots
Single
Control Interface
I2C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
AD5258EVAL - BOARD EVAL FOR AD5258 DGTL POT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

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AD5258
DISPLAY APPLICATIONS
CIRCUITRY
A special feature of the AD5258 is its unique separation of
the V
to provide greater flexibility in applications that do not always
provide the needed supply voltages.
In particular, LCD panels often require a V
the range of 3 V to 5 V. The circuit in Figure 44 is the rare
exception in which a 5 V supply is available to power the
digital potentiometer.
1µF
More commonly, only analog 14.4 V and digital logic 3.3 V sup-
plies are available (see Figure 45). By placing discrete resistors
above and below the digital potentiometer, V
off the resistor string itself. Based on the chosen resistor values,
the voltage at V
be safely operated up to 4.8 V. The current draw of V
C1
VCC (~3.3V)
MCU
LOGIC
10kΩ
R6
and V
10kΩ
R5
DD
Figure 44. V
DD
in this case equals 4.8 V, allowing the wiper to
supply pins. The reason for doing this is
5V
AD5258
V
V
SCL
SDA
GND
DD
LOGIC
COM
14.4V
Adjustment Application
A
B
R1
70kΩ
R2
10kΩ
R3
25kΩ
W
+
AD8565
COM
U1
DD
voltage in
can be tapped
3.5V < V
DD
will not
COM
< 4.5V
Rev. C | Page 20 of 24
affect that node’s bias because it is only on the order of
microamps. V
digital supply because V
when writing to the EEPROM. It would be impractical to try to
source 35 mA through the 70 kΩ resistor; therefore, V
not connected to the same node as V
For this reason, V
supply pins that can either be tied together or treated inde-
pendently; V
V
1µF
For a more detailed look at this application, refer to the article,
“Simple V
September 30, 2004, issue of EDN magazine.
C1
DD
VCC (~3.3V)
Figure 45. Circuitry When a Separate Supply Is Not Available for V
biases up the A, B, and W terminals for added flexibility.
MCU
10kΩ
R6
COM
SUPPLIES POWER
TO BOTH THE MCU
AND THE LOGIC
SUPPLY OF THE
DIGITAL
POTENTIOMETER
LOGIC
10kΩ
Adjustment uses any Logic-Supply Voltage” in the
LOGIC
R5
LOGIC
supplies the logic/EEPROM with power, and
is tied to the microcontroller’s (MCU) 3.3 V
AD5258
and V
V
V
SCL
SDA
GND
LOGIC
DD
LOGIC
14.4V
DD
A
B
will draw the 35 mA that is needed
R1
70kΩ
R2
10kΩ
R3
25kΩ
are provided as two separate
W
DD
.
+
AD8565
U1
3.5V < V
LOGIC
COM
DD
is
< 4.5V

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