MCP4132-502E/MS Microchip Technology, MCP4132-502E/MS Datasheet - Page 55

IC RHEO DGTL SNGL 5K SPI 8MSOP

MCP4132-502E/MS

Manufacturer Part Number
MCP4132-502E/MS
Description
IC RHEO DGTL SNGL 5K SPI 8MSOP
Manufacturer
Microchip Technology
Datasheets

Specifications of MCP4132-502E/MS

Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,
Taps
129
Resistance (ohms)
5K
Number Of Circuits
1
Temperature Coefficient
150 ppm/°C Typical
Memory Type
Volatile
Interface
SPI Serial
Voltage - Supply
1.8 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Resistance In Ohms
5K
Number Of Pots
Single
Taps Per Pot
128
Resistance
5 KOhms
Wiper Memory
Volatile
Digital Interface
Serial (SPI)
Operating Supply Voltage
2.5 V, 3.3 V, 5 V
Supply Current
1 mA
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
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
7.7
The Increment Command is an 8-bit command. The
Increment Command can only be issued to wiper
memory locations. The format of the command is
shown in
An Increment Command to the wiper memory location
changes that location after a properly formatted
command (8-clocks) have been received.
Increment commands provide a quick and easy
method to modify the value of the wiper location by +1
with minimal overhead.
FIGURE 7-6:
SDI and SDO States.
© 2008 Microchip Technology Inc.
SDI
SDO
Note:
Note 1: Only functions when writing the volatile
A
D
3
1
1
Increment Wiper
2: Valid Address/Command combination.
3: Invalid Address/Command combination
4: If a Command Error (CMDERR) occurs
Normal and High Voltage
Figure
(INCR COMMAND (n+1) )
The
command is supported for compatability
with system that also support MCP414X/
416X/424X/426X devices.
A
D
2
1
1
wiper registers (AD3:AD0) 0h and 1h.
all following SDO bits will be low until the
CMDERR condition is cleared.
(the CS pin is forced to the inactive
state).
at this bit location (*), then all following
SDO bits will be driven low until the CS
pin is driven inactive (V
COMMAND BYTE
7-6.
A
D
1
1
1
High
D
A
0
1
1
Increment Command -
0
1
1
Voltage
1
1 1* 1 Note 1, 2
1
X
0
Increment
IH
X
0 Note 1, 3
).
Wiper
MCP413X/415X/423X/425X
7.7.1
Typically, the CS pin starts at the inactive state (V
but may be already be in the active state due to the
completion of another command.
Figure 6-7
waveforms for a single increment. The increment
operation requires that the CS pin be in the active state
(V
state (V
The 8-bit Increment Command (Command Byte) is
then clocked in on the SDI pin by the SCK pins. The
SDO pin drives the CMDERR bit on the 7th clock.
The wiper value will increment up to 100h on 8-bit
devices and 80h on 7-bit devices. After the wiper value
has reached Full-Scale (8-bit =100h, 7-bit =80h), the
wiper value will not be incremented further. If the Wiper
register has a value between 101h and 1FFh, the
Increment command is disabled. See
additional information on the Increment Command
versus the current volatile wiper value.
The Increment operations only require the Increment
command byte while the CS pin is active (V
for a single increment.
After the wiper is incremented to the desired position,
the CS pin should be forced to V
unexpected transitions on the SCK pin do not cause
the wiper setting to change. Driving the CS pin to V
should occur as soon as possible (within device
specifications) after the last desired increment occurs.
TABLE 7-4:
Current Wiper
3FFh
081h
080h
07Fh
041h
040h
03Fh
001h
000h
IL
7-bit
Pot
or V
Setting
IH
IHH
) and is driven to the active state (V
). Typically, the CS pin will be in the inactive
3FFh
101h
100h
0FFh
080h
07Fh
000h
8-bit
SINGLE INCREMENT
081
001
Pot
through
INCREMENT OPERATION VS.
VOLATILE WIPER VALUE
Reserved
(Full-Scale (W = A))
Full-Scale (W = A)
W = N
W = N (Mid-Scale)
W = N
Zero Scale (W = B)
Properties
Figure 6-8
Wiper (W)
IH
DS22060B-page 55
show
to ensure that
Table 7-4
Command
Operates?
Increment
IL
IL
Yes
Yes
or V
possible
or V
No
No
IHH
IHH
IH
for
IH
),
).
)

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