MCP41100-I/SN Microchip Technology, MCP41100-I/SN Datasheet - Page 2

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MCP41100-I/SN

Manufacturer Part Number
MCP41100-I/SN
Description
IC POT DIGITL 100K 1CH SPI 8SOIC
Manufacturer
Microchip Technology
Datasheet

Specifications of MCP41100-I/SN

Package / Case
8-SOIC (3.9mm Width)
Taps
256
Resistance (ohms)
100K
Number Of Circuits
1
Temperature Coefficient
800 ppm/°C Typical
Memory Type
Non-Volatile
Interface
SPI, 3-Wire Serial
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Resistance In Ohms
100K
Number Of Pots
Single
Taps Per Pot
256
Resistance
100 KOhms
Buffered Wiper
Buffered
Digital Interface
Serial
Operating Supply Voltage
2.7 V to 5.5 V
Supply Current
340 uA
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Description/function
256 Step SPI 100k Ohm with SPI Interface
Mounting Style
SMD/SMT
Supply Voltage (max)
5.5 V
Supply Voltage (min)
2.7 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MCP41100-I/SN
Manufacturer:
MICROCHIP
Quantity:
6 600
Part Number:
MCP41100-I/SN
Manufacturer:
MICROCHIP/微芯
Quantity:
20 000
Part Number:
MCP41100-I/SN
0
MCP41XXX/42XXX
1.0
DC CHARACTERISTICS: 10 k VERSION
DS11195C-page 2
Electrical Characteristics: Unless otherwise indicated, V
+85°C). Typical specifications represent values for V
Rheostat Mode
Nominal Resistance
Rheostat Differential Non Linearity
Rheostat Integral Non Linearity
Rheostat Tempco
Wiper Resistance
Wiper Current
Nominal Resistance Match
Potentiometer Divider
Resolution
Monotonicity
Differential Non-Linearity
Integral Non-Linearity
Voltage Divider Tempco
Full Scale Error
Zero Scale Error
Resistor Terminals
Voltage Range
Capacitance (C
Capacitance
Dynamic Characteristics (All dynamic characteristics use V
Bandwidth -3dB
Settling Time
Resistor Noise Voltage
Crosstalk
Digital Inputs/Outputs (CS, SCK, SI, SO) See Figure 2-12 for RS and SHDN pin operation
Schmitt Trigger High-Level Input Voltage
Schmitt Trigger Low-Level Input Voltage
Hysteresis of Schmitt Trigger Inputs
Low-Level Output Voltage
High-Level Output Voltage
Input Leakage Current
Pin Capacitance (All inputs/outputs)
Power Requirements
Operating Voltage Range
Supply Current, Active
Supply Current, Static
Power Supply Sensitivity
Note
1:
2:
3:
4:
5:
6:
ELECTRICAL CHARACTERISTICS
V
Rheostat position non-linearity R-INL is the deviation from an ideal value measured between the maximum resistance and the minimum
resistance wiper positions. R-DNL measures the relative step change from the ideal between successive tap positions. I
V
INL and DNL are measured at V
specification limits of ±1 LSB max are specified monotonic operating conditions. See Figure 2-25 for test circuit.
Resistor terminals A,B and W have no restrictions on polarity with respect to each other. Full-scale and zero-scale error were measured
using Figure 2-25.
Measured at V
Supply current is independent of current through the potentiometers.
Parameters
AB
A
DD
or C
= V
= 3V and I
B
DD
)
, no connection on wiper.
W
W
pin where the voltage on the adjacent V
= 400 µA for V
C
R-DNL
IN
V
V
V
V
V
R
R-INL
V
e
V
Sym
DNL
I
I
PSS
PSS
V
V
DD
WFSE
WFSE
WZSE
WZSE
A,B,W
BW
V
R
R
INL
V
, C
W
C
NWB
V
DDA
DDS
AB
R/R
C
I
W
HYS
I
t
R
N
N
W
OL
OH
LI
DD
S
W
W
IH
W
IL
T
/ T
with the device configured in the voltage divider or potentiometer mode. V
/ T
OUT
= 5V for 10 k
DD
= 5V, V
V
0.7V
DD
DD
Min
2.7
-1
-1
-1
-1
-1
-2
-2
-1
8
8
8
0
0
0
- 0.5
= +2.7V to 5.5V, T
DD
SS
DD
version. See Figure 2-26 for test circuit.
= 0V, V
= 5V)
0.05V
0.0015
0.0015
±1/4
±1/4
±1/4
±1/4
+0.7
+0.7
0.01
Typ
800
-0.7
-0.7
340
0.2
5.6
-95
10
52
73
15
10
1
1
2
9
W
pin is swinging full-scale.
B
DD
= 0V, T
0.3V
A
0.0035
0.0035
Max
0.40
V
100
125
500
= -40°C to +85°C (TSSOP devices are only specified at +25°C and
5.5
12
+1
+1
+1
+1
+1
+2
+2
+1
A
1
0
0
1
DD
= +25°C.
DD
ppm/°C
ppm/°C Code 80h
nV/ Hz V
Units
MHz
%/%
%/%
LSB
LSB
LSB
LSB
LSB
LSB
LSB
LSB
Bits
Bits
mA
k
µS
dB
µA
µA
µA
pF
pF
pF
%
V
V
V
V
V
T
Note 2
Note 2
V
V
MCP42010 only, P0 to P1; T
Note 3
Note 3
Code FFh, V
Code FFh, V
Code 00h, V
Code 00h, V
Note 4
f = 1 MHz, Code = 80h, see Figure 2-30
f = 1 MHz, Code = 80h, see Figure 2-30
V
Output Load = 30
V
from Code 00h to Code 80h, Output Load = 30 pF
V
I
I
CS = V
V
V
SO = Open, Code FFh (Note 6)
CS, SHDN, RS = V
V
V
OL
OH
A
A
A
A
DD
DD
B
DD
DD
DD
DD
= +25°C (Note 1)
= 0V, Measured at Code 80h,
= V
= Open, Code 80h f =1 kHz
= V
= 2.1 mA, V
= -400 µA, V
= 5.5V, I
= 2.7V, I
= 5.0V, T
= 5.5V, CS = V
= 4.5V - 5.5V, V
= 2.7V - 3.3V, V
DD
DD
DD
,V
, V
, V
B
B
IN
DD
DD
DD
DD
W
W
= 0V, ±1% Error Band, Transition
= 0V (Note 5)
A
2003 Microchip Technology Inc.
= V
= 1 mA, code 00h
= 1 mA, code 00h
DD
= +25°C, f
= 5V, see Figure 2-25
= 3V, see Figure 2-25
= 5V, see Figure 2-25
= 3V, see Figure 2-25
DD
P
SS
= 5V
DD
Conditions
F
SS
= 5V
A
A
or V
, f
= 4.5V, Code 80h
= 2.7V, Code 80h
= 5.5V, SO = Open (Note 6)
A
SCK
= V
DD
c
= 1 MHz
DD
, includes V
= 10 MHz,
A
= +25°C
and V
W
= 50 µA for
B
= 0V. DNL
A
SHDN=0

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