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Analog Devices - Nonvolatile Memory/ Dual 1024 Position Programmable Resistors

Numéro de référence ADN2850ACP25
Description Nonvolatile Memory/ Dual 1024 Position Programmable Resistors
Fabricant Analog Devices 
Logo Analog Devices 





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ADN2850ACP25 fiche technique
PRELIMINARY TECHNICAL DATA
a
Nonvolatile Memory, Dual 1024
Position Programmable Resistors
Preliminary Technical Data
ADN2850
FEATURES
Dual, 1024 Position Resolution
25K, 250K Ohm Full Scale Resistance
Low Temperature Coefficient -- 35ppm/°C
Nonvolatile Memory1 Preset Maintains Wiper Settings
Wiper Settings Read Back
Linear Increment/Decrement
Log taper Increment/Decrement
SPI Compatible Serial Interface
+3V to +5V Single Supply or ±2.5V Dual Supply
26 bytes User Nonvolatile Memory for Constant Storage with
Current Monitoring Configurable Function
APPLICATIONS
SONET, SDH, ATM, Gigabit Ethernet, DWDM Laser Diode
Driver Optical Supervisory Systems
GENERAL DESCRIPTION
The ADN2850 provides dual channel, digitally controlled
programmable resistors2 with resolution of 1024 positions. These
devices perform the same electronic adjustment function as a
mechanical rheostat. The ADN2850’s versatile programming via a
standard serial interface allows sixteen mode of operations and
adjustment including scratch pad programming, memory storing
and retrieving, increment/decrement, log taper adjustment, wiper
setting readback, and extra user defined EEMEM.
In the scratch pad programming mode, a specific setting can be
programmed directly to the RDAC2 register, which sets the
resistance between terminals W-and-B. The RDAC register can
also be loaded with a value previously stored in the EEMEM1
register. The value in the EEMEM can be changed or protected.
When changes are made to the RDAC register, the value of the new
setting can be saved into the EEMEM. Thereafter, such value will
be transferred automatically to the RDAC register during system
power ON. It is enabled by the internal preset strobe. EEMEM can
also be retrieved through direct programming and external preset
pin control.
Other key mode of operations include linear step increment and
decrement commands such that the setting in the RDAC register
can be moved UP or DOWN, one step at a time. For logarithmic
changes in wiper setting, a left/right bit shift command adjusts the
level in ±6dB steps.
The ADN2850 is available in the 5mm x 5mm LFCSP-16 Lead
Frame Chip Scale and thin TSSOP-16 packages. All parts are
guaranteed to operate over the extended industrial temperature
range of -40°C to +85°C.
FUNCTIONAL BLOCK DIAGRAM
CS
CLK
SDI
SDO
ADDRE S S
DECO DE
SERIAL
INPUT
REG IS TE R
RD AC1
REGIST ER
EEMEM1
PR
PWR ON
PRESET
WP
R DY
EEMEM
CON TROL
VDD
VSS
GND
RD AC2
REGIST ER
EEMEM2
26 BYTES
USER EEMEM
RD AC1
W1
B1
RD AC1
W2
B2
I1
C URRENT
M ON IT OR
I2
V1
V2
100%
75%
50%
25%
0%
0
256 512 768
D - Co d e in De cim al
Figure 1. RWB(D) vs Decimal Code
1023
Notes:
1. The term nonvolatile memory and EEMEM are used interchangebly
2. The term programmable resistor and RDAC are used interchangebly
REV PrH, 13, AUG 2001
Information furnished by Analog Devices is believed to be accurate and reliable. However, no
responsibility is assumed by Analog Devices for its use; nor for any infringements of patents or
other rights of third parties which may result from its use. No license is granted by implication
or otherwise under any patent or patent rights of Analog Devices.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106 U.S.A.
Tel: 617/329-4700
Fax:617/326-8703

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