AD5220BRMZ50 Analog Devices Inc, AD5220BRMZ50 Datasheet - Page 5

IC DGTL POT SNGL 128POS 8USOIC

AD5220BRMZ50

Manufacturer Part Number
AD5220BRMZ50
Description
IC DGTL POT SNGL 128POS 8USOIC
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD5220BRMZ50

Taps
128
Resistance (ohms)
50K
Number Of Circuits
1
Temperature Coefficient
800 ppm/°C Typical
Memory Type
Volatile
Interface
Up/Down Counter
Voltage - Supply
2.7 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,
Resistance In Ohms
50K
Number Of Elements
1
# Of Taps
128
Resistance (max)
50KOhm
Power Supply Requirement
Single
Interface Type
Serial (3-Wire)
Single Supply Voltage (typ)
3/5V
Dual Supply Voltage (typ)
Not RequiredV
Single Supply Voltage (min)
2.7V
Single Supply Voltage (max)
5.5V
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
8
Package Type
MSOP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD5220BRMZ50
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Part Number:
AD5220BRMZ50-RL7
Manufacturer:
CY
Quantity:
2 223
REV.
Figure 19. Midscale Transition Glitch
V
CLK
Figure 16. 50 k
vs. Code
WB
Figure 13.
Mode Tempco (10 k and 50 k )
–10
–12
–18
–24
–30
–36
–42
–48
–54
60
53
46
39
32
25
18
11
–3
–6
4
6
0
1k
A
0
DATA = 40
V
V
V
DD
IN
B
= +2.5V
= V A = 100mV rms
= +5V
16
10k
50k
H
32
TIME 500ns / DIV
VERSION
AND 100k
FREQUENCY – Hz
10k
CODE – Decimal
V
48
WB
A
B
V
V
V
f = 100kHz
Gain vs. Frequency
DD
A
B
+
/ T Potentiometer
2.5V
= +5.5V
= 0V
W
64
= +5.5V
+
OP42
–55 C < T
V
DD
VERSION
80
100k
00
40
20
10
08
04
02
01
= +5.5V
H
H
H
H
H
H
H
H
DATA
40
96
H
A
v 3F
< +85 C
112
H
150mV
100mV
128
50mV
0mV
5V
0V
1M
Figure 20. Total Harmonic Distortion
Plus Noise vs. Frequency
0.0001
0.001
–10
Figure 14.
–12
–18
–24
–30
–36
–42
–48
–54
Figure 17. 100 k Gain vs. Fre-
quency vs. Code
1.00
0.10
0.01
60
53
46
39
32
25
18
11
–3
–6
4
6
0
1k
10
0
DATA = 40
V
V
V
DD
IN
B
T
V
OFFSET GND = +2.5V
R
= +2.5V
= V A = 100mV rms
A
DD
AB
= +5V
16
= +25 C
10k
= +5.0V
= 10k
H
TEST CKT 32
NONINVERTING
100
32
VERSION
FREQUENCY – Hz
10k
FREQUENCY – Hz
CODE – Decimal
R
50k
48
WB
A
B
–5–
+
/ T Rheostat
2.5V
W
AND 100k
64
1k
+
40
OP42
–55 C < T
V
R
V
00
20
10
08
04
02
01
TEST CKT 31
DD
A
WB
H
H
H
H
H
H
H
H
INVERTING
= NO CONNECT
80
100k
= +5.5V
MEASURED
96
10k
VERSION
A
< +85 C
112
100k
128
1M
Figure 21. Normalized Gain Flatness
vs. Frequency
V
Figure 15. 10 k Gain vs. Frequency
vs. Code
WB
–12
–18
–24
–30
–36
–42
–48
–54
–5.8
–5.9
–6.0
–6.1
–6.2
–6.3
–6.4
–6.5
–6.6
–6.7
–6.8
Figure 18. Digital Feedthrough
–6
6
0
1k
10
DATA = 40
V
V
V
DATA = 40
V
V
V
DD
IN
B
= +2.5V
DD
IN
B
= V A = 100mV rms
= +5V
A
B
= +2.5V
= V
= +5V
+
100
A
2.5V
H
W
= 50mV rms
TIME 2 s / DIV
H
+
10k
FREQUENCY – Hz
FREQUENCY – Hz
OP42
1k
A
B
+
2.5V
W
V
V
f = 100kHz
DD
A
10k
+
AD5220
OP42
100k
= V
= +5.5V
B
10k
= 0V
100k
50k
00
40
20
10
08
04
02
01
100k
H
H
H
H
H
H
H
H
20mV/
DIV
1M
1M

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