參數資料
型號: AD5556
廠商: Analog Devices, Inc.
英文描述: Dual 8-,10-,12-Bit High Bandwidth Multiplying DACs with Serial Interface
中文描述: 雙8 - ,10 - 12位高帶寬倍增DAC的串行接口
文件頁數: 12/16頁
文件大?。?/td> 683K
代理商: AD5556
AD5546/AD5556
DIGITAL SECTION
The AD5546/AD5556 have 16-/14-bit parallel inputs. The
devices are double-buffered with 16-/14-bit registers. The
double-buffered feature allows the update of several AD5546/
AD5556 simultaneously. For AD5546, the input register is
loaded directly from a 16-bit controller bus when the WR pin is
brought low. The DAC register is updated with data from the
input register when LDAC is brought high. Updating the DAC
register updates the DAC output with the new data (see
Figure 19). To make both registers transparent, tie WR low and
LDAC high. The asynchronous RS pin resets the part to zero
scale if MSB pin = 0, and midscale if MSB pin = 1.
Rev. 0 | Page 12 of 16
ESD PROTECTION CIRCUITS
All logic input pins contain back-biased ESD protection Zeners
connected to ground (GND) and V
DD
, as shown in Figure 20. As
a result, the voltage level of the logic input should not be greater
than the supply voltage.
0
5k
DIGITAL
INPUTS
DGND
V
DD
Figure 20. Equivalent ESD Protection Circuits
AMPLIFIER SELECTION
In addition to offset voltage, the bias current is important in op
amp selection for precision current output DACs. An input bias
current of 30 nA in the op amp contributes to 1 LSB in the
AD5546’s full-scale error. Op amps OP1177 and AD8628 are
good candidates for the I-V conversion.
REFERENCE SELECTION
The initial accuracy and the rated output of the voltage refer-
ence determine the full span adjustment. The initial accuracy is
usually a secondary concern in precision, as it can be trimmed.
Figure 25 shows an example of a trimming circuit. The zero
scale error can also be minimized by standard op amp nulling
techniques.
The voltage reference temperature coefficient and long-term
drift are primary considerations. For example, a 5 V reference
with a TC of 5 ppm/
o
C means that the output changes by 25 μV
per degree Celsius. As a result, the reference that operates at
55
o
C contributes an additional 750 μV full-scale error.
Similarly, the same 5 V reference with a ±50 ppm long-term
drift means that the output may change by ±250 μV over time.
Therefore, it is practical to calibrate a system periodically to
maintain its optimum precision.
相關PDF資料
PDF描述
AD5552BR 5 V, Serial-Input Voltage-Output, 14-Bit DACs
AD5551 5 V, Serial-Input Voltage-Output, 14-Bit DACs
AD5551BR 5 V, Serial-Input Voltage-Output, 14-Bit DACs
AD5552 5 V, Serial-Input Voltage-Output, 14-Bit DACs
AD5554BRS Quad, Current-Output Serial-Input, 16-Bit/14-Bit DACs
相關代理商/技術參數
參數描述
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