CAT5251YI-50-TE13 ON Semiconductor, CAT5251YI-50-TE13 Datasheet - Page 10

CAT5251YI-50-TE13

Manufacturer Part Number
CAT5251YI-50-TE13
Description
Manufacturer
ON Semiconductor
Datasheet

Specifications of CAT5251YI-50-TE13

Number Of Elements
4
# Of Taps
256
Resistance (max)
50KOhm
Power Supply Requirement
Single
Interface Type
Serial (SPI)
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
24
Lead Free Status / Rohs Status
Compliant
illustrated in Figure 7. These three−byte instructions
exchange data between the WCR and one of the Data
Registers. The WCR controls the position of the wiper. The
response of the wiper to this action will be delayed by t
A transfer from the WCR (current wiper position), to a Data
Register is a write to non−volatile memory and takes a
minimum of t
between one of the four potentiometers and one of its
associated registers; or the transfer can occur between all
potentiometers and one associated register.
complete, as illustrated in Figure 6. These instructions
transfer data between the host/processor and the CAT5251;
either between the host and one of the data registers or
directly between the host and the Wiper Control Register.
These instructions are:
The basic sequence of the three byte instructions is
Four instructions require a two−byte sequence to
XFR Data Register to Wiper Control Register
This transfers the contents of one specified Data
Register to the associated Wiper Control Register.
XFR Wiper Control Register to Data Register
This transfers the contents of the specified Wiper
SI
SI
ID3 ID2 ID1 ID0
WR
ID3 ID2 ID1 ID0
0
0
Device ID
Device ID
to complete. The transfer can occur
1
1
SI
0
0
1
1
ID3 ID2 ID1 ID0
A3
A3
0
0
0
Figure 8. Increment/Decrement
Device ID
Address
Internal
A2 A1 A0
Address
1
Internal
0
A2 A1 A0
0
Figure 7. Three−Byte Instruction Sequence
0
Figure 6. Two−Byte Instruction Sequence
1
A3
0
I3
I3
Instruction
A2
Address
Opcode
Internal
0
Instruction
I2
http://onsemi.com
Opcode
I2
WRL
A1
I1
I1
.
A0
I0 R1 R0
10
I0
Register
Address
I3
Data
Instruction
Register
Increment/Decrement Command
and 9). The Increment/Decrement command is different
from the other commands. Once the command is issued the
master can clock the selected wiper up and/or down in one
segment steps; thereby providing a fine tuning capability to
the host. For each SCK clock pulse (t
HIGH, the selected wiper will move one resistor segment
towards the R
pulse while SI is LOW, the selected wiper will move one
resistor segment towards the R
Address
Opcode
R1
Data
I2
The final command is Increment/Decrement (Figures 8
See Instructions format for more detail.
Instruction
Control Register to the specified associated Data
Register.
Global XFR Data Register to Wiper Control
Register
This transfers the contents of all specified Data
Registers to the associated Wiper Control Registers.
Global XFR Wiper Counter Register to Data
Register
This transfers the contents of all Wiper Control Registers
to the specified associated Data Registers.
R0 P1 P0
Pot/WCR
P1 P0
I1 I0 R1 R0 P1
Address
Pot/WCR
Address
Register
Address
D7 D6 D5 D4 D3 D2 D1 D0
H
Sequence
terminal. Similarly, for each SCK clock
N
C
1
I
Data Register D[7:0]
N
C
Pot/WCR
2
I
Address
P0
WCR[7:0]
or
N
C
n
I
L
terminal.
D
E
C
1
HIGH
D
C
E
n
) while SI is

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