CAT5241YI-00 ON Semiconductor, CAT5241YI-00 Datasheet - Page 10

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CAT5241YI-00

Manufacturer Part Number
CAT5241YI-00
Description
Manufacturer
ON Semiconductor
Datasheet

Specifications of CAT5241YI-00

Number Of Elements
4
# Of Taps
64
Resistance (max)
100KOhm
Power Supply Requirement
Single
Interface Type
Serial (2-Wire/I2C)
Single Supply Voltage (typ)
3.3/5V
Dual Supply Voltage (typ)
Not RequiredV
Single Supply Voltage (min)
2.5V
Single Supply Voltage (max)
6V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
20
Package Type
TSSOP
Lead Free Status / RoHS Status
Compliant
Wiper Control and Data Registers
Wiper Control Register (WCR)
Registers, one for each potentiometer. The Wiper Control
Register output is decoded to select one of 64 switches along
its resistor array. The contents of the WCR can be altered in
four ways: it may be written by the host via Write Wiper
Control Register instruction; it may be written by
transferring the contents of one of four associated Data
Registers via the XFR Data Register instruction, it can be
modified one step at a time by the Increment/decrement
instruction (see Instruction section for more details).
Finally, it is loaded with the content of its data register zero
(DR0) upon power−up.
its contents when the CAT5241 is powered−down. Although
the register is automatically loaded with the value in DR0
upon power−up, this may be different from the value present
at power−down.
Table 12. INSTRUCTION SET
Read Wiper Control
Register
Write Wiper Control
Register
Read Data Register
Write Data Register
XFR Data Register to
Wiper Control Register
XFR Wiper Control
Register to Data
Register
Global XFR Data
Registers to Wiper
Control Registers
Global XFR Wiper
Control Registers to
Data Register
Increment/Decrement
Wiper Control Register
The CAT5241 contains four 6−bit Wiper Control
The Wiper Control Register is a volatile register that loses
Instruction
I3
1
1
1
1
1
1
0
1
0
I2
(Note: 1/0 = data is one or zero)
0
0
0
1
1
1
0
0
0
I1
0
1
1
0
0
1
0
0
1
I0
1
0
1
0
1
0
1
0
0
Instruction Set
WCR1/P1
http://onsemi.com
1/0
1/0
1/0
1/0
1/0
1/0
1/0
0
0
10
WCR0/P0
Data Registers (DR)
Registers. These can be read or written directly by the host.
Data can also be transferred between any of the four Data
Registers and the associated Wiper Control Register. Any
data changes in one of the Data Registers is a non−volatile
operation and will take a maximum of 5 ms.
settings for the potentiometer, the Data Registers can be used
as standard memory locations for system parameters or user
preference data.
Instructions
These instructions are:
1/0
1/0
1/0
1/0
1/0
1/0
1/0
0
0
Each potentiometer has four 6−bit non−volatile Data
If the application does not require storage of multiple
Four of the nine instructions are three bytes in length.
Read Wiper Control Register – read the current wiper
position of the selected potentiometer in the WCR
Write Wiper Control Register – change current wiper
position in the WCR of the selected potentiometer
Read Data Register – read the contents of the selected
Data Register
Write Data Register – write a new value to the
selected Data Register.
1/0
1/0
1/0
1/0
1/0
1/0
R1
0
0
0
1/0
1/0
1/0
1/0
1/0
1/0
R0
0
0
0
Read the contents of the Wiper
Control Register pointed to by P1−P0
Write new value to the Wiper Control
Register pointed to by P1−P0
Read the contents of the Data
Register pointed to by P1−P0 and
R1−R0
Write new value to the Data Register
pointed to by P1−P0 and R1−R0
Transfer the contents of the Data
Register pointed to by P1−P0 and
R1−R0 to its associated Wiper Control
Register
Transfer the contents of the Wiper
Control Register pointed to by P1−P0
to the Data Register pointed to by
R1−R0
Transfer the contents of the Data
Registers pointed to by R1−R0 of all
four pots to their respective Wiper
Control Registers
Transfer the contents of both Wiper
Control Registers to their respective
data Registers pointed to by R1−R0 of
all four pots
Enable Increment/decrement of the
Control Latch pointed to by P1−P0
Operations

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