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AD5258BRMZ10-R71 Fiches technique(PDF) 19 Page - Analog Devices

No de pièce AD5258BRMZ10-R71
Description  Nonvolatile, I2C-Compatible 64-Position, Digital Potentiometer
PDF  24 Pages
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Fabricant  AD [Analog Devices]
Site Internet  http://www.analog.com
Logo AD - Analog Devices

AD5258BRMZ10-R71 Fiches technique(HTML) 19 Page - Analog Devices

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AD5258
Rev. 0 | Page 19 of 24
ESD PROTECTION OF DIGITAL PINS AND
RESISTOR TERMINALS
The AD5258 VDD, VLOGIC, and GND power supplies define the
boundary conditions for proper 3-terminal and digital input
operation. Supply signals present on Terminal A, Terminal B,
and Terminal W that exceed VDD or GND are clamped by the
internal forward biased ESD protection diodes (see Figure 41).
Digital Input SCL and Digital Input SDA are clamped by ESD
protection diodes with respect to VLOGIC and GND as shown in
Figure 42.
GND
A
W
B
VDD
Figure 41. Maximum Terminal Voltages Set by VDD and GND
GND
SCL
SDA
VLOGIC
Figure 42. Maximum Terminal Voltages Set by VLOGIC and GND
POWER-UP SEQUENCE
Because the ESD protection diodes limit the voltage compliance
at Terminal A, Terminal B, and Terminal W (see Figure 41), it is
important to power GND/VDD/VLOGIC before applying any
voltage to Terminal A, Terminal B, and Terminal W; otherwise,
the diode is forward biased such that VDD and VLOGIC are
powered unintentionally and may affect the user’s circuit. The
ideal power-up sequence is in the following order: GND, VDD,
VLOGIC, digital inputs, and then VA, VB, VW. The relative order of
powering VA, VB, VW, and the digital inputs is not important as
long as they are powered after GND/VDD/VLOGIC.
LAYOUT AND POWER SUPPLY BYPASSING
It is good practice to employ compact, minimum lead length
layout design. The leads to the inputs should be as direct as
possible with minimum conductor length. Ground paths should
have low resistance and low inductance.
Similarly, it is also good practice to bypass the power supplies
with quality capacitors for optimum stability. Supply leads to
the device should be bypassed with disc or chip ceramic
capacitors of 0.01 µF to 0.1 µF. Low ESR 1 µF to 10 µF tantalum
or electrolytic capacitors should also be applied at the supplies
to minimize any transient disturbance and low frequency ripple
(see Figure 43). The digital ground should also be joined
remotely to the analog ground at one point to minimize the
ground bounce.
VDD
GND
VDD
C2
10
µF
C1
0.1
µF
AD5258
+
Figure 43. Power Supply Bypassing
MULTIPLE DEVICES ON ONE BUS
The AD5258 has two three-state configurable Address Pins
AD0 and AD1. The state of these two pins is registered upon
power-up and decoded into a corresponding I2C 7-bit address
(see Table 5). This allows up to nine devices on the bus to be
written to, or read from, independently. In the case that the pin
is assigned to be floated, the static voltage will be VLOGIC/2.
EVALUATION BOARD
An evaluation board, along with all necessary software, is
available to program the AD5258 from any PC running
Windows® 98/2000/XP. The graphical user interface, as shown
in Figure 44, is straightforward and easy to use. More detailed
information is available in the user manual that comes with the
board.
Figure 44. AD5258 Evaluation Board Software



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