ADN2850BCP250 Analog Devices Inc, ADN2850BCP250 Datasheet - Page 23

IC DGTL RHEO DL 1024POS 16LFCSP

ADN2850BCP250

Manufacturer Part Number
ADN2850BCP250
Description
IC DGTL RHEO DL 1024POS 16LFCSP
Manufacturer
Analog Devices Inc
Datasheets

Specifications of ADN2850BCP250

Taps
1024
Resistance (ohms)
250K
Number Of Circuits
2
Temperature Coefficient
35 ppm/°C Typical
Memory Type
Non-Volatile
Interface
4-Wire SPI Serial
Voltage - Supply
3 V ~ 5.5 V, ±2.25 V ~ 2.75 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-LFCSP
Resistance In Ohms
250K
Number Of Elements
2
# Of Taps
1024
Resistance (max)
250KOhm
Power Supply Requirement
Single/Dual
Interface Type
Serial (4-Wire/SPI)
Single Supply Voltage (typ)
5V
Dual Supply Voltage (typ)
±2.5V
Single Supply Voltage (min)
3V
Single Supply Voltage (max)
5.5V
Dual Supply Voltage (min)
±2.25V
Dual Supply Voltage (max)
±2.75V
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
16
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
For Use With
EVAL-ADN2850-25EBZ - BOARD EVALUATION FOR ADN2850-25
Lead Free Status / RoHS Status
Not Compliant, Contains lead / RoHS non-compliant
where:
I
V
transistors.
V
k is the Boltzmann’s constant, 1.38e-23 Joules/Kelvin.
q is the electron charge, 1.6e-19 coulomb.
T is the temperature in Kelvin.
I
I
Figure 38 shows a conceptual circuit.
The output voltage represents the average incoming optical
power. The output voltage of the log stage does not have to be
accurate from device to device, as the responsivity of the
photodiode will change between devices. An op amp stage is
shown after the log amp stage, which compensates for V
variation over temperature.
Equation 19 is ideal. If the reference current is 1 mA at room
temperature, characterization shows that there is an additional
30 mV offset between V
yields
The offset is caused by the transistors self-heating and the
thermal gradient effect. As seen in Figure 39, the error between
an approximation and the actual performance ranges is less
than 0% to –4% from 0.1 mA to 0.1 μA.
S1
PD
REF
1
T
, V
(V
and I
is the thermal voltage, which is equal to k × T/q
is the photodiode current.
is the reference current.
Figure 38. Conceptual Incoming Optical Power Monitoring Circuit
V
T
2
ADN2850
= 26 mV @ 25°C)
V
V
are V
2
DD
SS
S2
B
V
are saturation current.
1
1
BE
W
=
1
, base-emitted voltages of the diode connector
. 0
B
026
2
W
2
ln
–5V
Q
1
. 0
V
GND
2
I
1
I
10nF
PD
001
and V
PD
Q
TIA
2
R
V
LOG AMP
+
I
G
2
REF
1
. 0
. A curve fit approximation
AD623
0.75 BIT RATE
03
IN AMP
LPF
(1 + 100k/R
VT COMPENSATION
G
) × (V
POST
AMP
°C
PRC
THERMISTOR
1
– V
CDR
2
)
DATA
CLOCK
LOG
AVERAGE
POWER
T
(19)
Rev. C | Page 23 of 28
RESISTANCE SCALING
The ADN2850 offers 25 kΩ or 250 kΩ nominal resistance.
When users need lower resistance but must maintain the
number of adjustment steps, they can parallel multiple devices. For
example, Figure 40 shows a simple scheme of paralleling two
channels of RDACs. To adjust half the resistance linearly per
step, program both RDACs concurrently with the same settings.
Figure 40 shows that the digital rheostat change steps linearly.
Alternatively, pseudo log taper adjustment is usually preferred in
applications such as audio control. Figure 41 shows another type
of resistance scaling. In this configuration, the smaller the R2
with respect to R
of the circuit behaves.
The equation is approximated as
Users should also be aware of the need for tolerance matching
as well as for temperature coefficient matching of the components.
Figure 40. Reduce Resistance by Half with Linear Adjustment Characteristics
Figure 41. Resistor Scaling with Pseudo Log Adjustment Characteristics
0.30
0.25
0.20
0.15
0.10
0.05
0
0.1µ
R
E
QUIVALENT
Figure 39. V
AB
=
, the more the pseudo log taper characteristic
R
B1
WB
DEVICE 1
DEVICE 2
DEVICE 3
CURVE FIT
2
B1
– V
+
R
51
WB
1
Error Versus Input Current.
,
I
PD
W1
200
10µ
+
W1
(A)
51
B2
+
R
,
200
1024
I
T
REF
×
A
W2
100µ
= 25°C
R
= 1mA
ERROR
ADN2850
1m
12
9
6
3
0
–3
–6
(17)

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