欢迎访问ic37.com |
会员登录 免费注册
发布采购

DAC904 参数 Datasheet PDF下载

DAC904图片预览
型号: DAC904
PDF下载: 下载PDF文件 查看货源
内容描述: 14位, 165MSPS数位类比转换器 [14-Bit, 165MSPS DIGITAL-TO-ANALOG CONVERTER]
分类和应用: 转换器
文件页数/大小: 23 页 / 789 K
品牌: TI [ TEXAS INSTRUMENTS ]
 浏览型号DAC904的Datasheet PDF文件第7页浏览型号DAC904的Datasheet PDF文件第8页浏览型号DAC904的Datasheet PDF文件第9页浏览型号DAC904的Datasheet PDF文件第10页浏览型号DAC904的Datasheet PDF文件第12页浏览型号DAC904的Datasheet PDF文件第13页浏览型号DAC904的Datasheet PDF文件第14页浏览型号DAC904的Datasheet PDF文件第15页  
DAC TRANSFER FUNCTION  
The total output current, IOUTFS, of the DAC904 is the sum-  
mation of the two complementary output currents:  
+VA  
DAC904  
IOUTFS = IOUT + IOUT  
(1)  
The individual output currents depend on the DAC code and  
can be expressed as:  
IOUT = IOUTFS (Code/16384)  
(2)  
(3)  
IOUT  
RL  
IOUT  
RL  
IOUT = IOUTFS (16383 Code/16384)  
where Codeis the decimal representation of the DAC data  
input word. Additionally, IOUTFS is a function of the reference  
current IREF, which is determined by the reference voltage  
FIGURE 2. Equivalent Analog Output.  
and the external setting resistor, RSET  
.
+VD = 5V. Note that the compliance range decreases to  
about 1V for a selected output current of IOUTFS = 2mA.  
Care should be taken that the configuration of the DAC904  
does not exceed the compliance range to avoid degradation  
of the distortion performance and integral linearity.  
IOUTFS = 32 IREF = 32 VREF/RSET  
(4)  
In most cases the complementary outputs will drive resistive  
loads or a terminated transformer. A signal voltage will  
develop at each output according to:  
Best distortion performance is typically achieved with the  
maximum full-scale output signal limited to approximately  
0.5V. This is the case for a 50doubly-terminated load and  
a 20mA full-scale output current. A variety of loads can be  
adapted to the output of the DAC904 by selecting a suitable  
transformer while maintaining optimum voltage levels at  
IOUT and IOUT. Furthermore, using the differential output  
configuration in combination with a transformer will be instru-  
mental for achieving excellent distortion performance. Com-  
mon-mode errors, such as even-order harmonics or noise,  
can be substantially reduced. This is particularly the case  
with high output frequencies and/or output amplitudes below  
full-scale.  
VOUT = IOUT RLOAD  
(5)  
(6)  
VOUT = IOUT RLOAD  
The value of the load resistance is limited by the output  
compliance specification of the DAC904. To maintain speci-  
fied linearity performance, the voltage for IOUT and IOUT  
should not exceed the maximum allowable compliance range.  
The two single-ended output voltages can be combined to  
find the total differential output swing:  
For those applications requiring the optimum distortion and  
noise performance, it is recommended to select a full-scale  
output of 20mA. A lower full-scale range down to 2mA may  
be considered for applications that require a low power  
consumption, but can tolerate a reduced performance level.  
(7)  
(2 Code 16383)  
VOUTDIFF = VOUT VOUT  
=
IOUTFS RLOAD  
16384  
ANALOG OUTPUTS  
The DAC904 provides two complementary current outputs,  
IOUT and IOUT. The simplified circuit of the analog output  
stage representing the differential topology is shown in  
Figure 2. The output impedance of 200k12pF for IOUT  
and IOUT results from the parallel combination of the differen-  
tial switches, along with the current sources and associated  
parasitic capacitances.  
INPUT CODE (D13 - D0)  
IOUT  
IOUT  
11 1111 1111 1111  
10 0000 0000 0000  
00 0000 0000 0000  
20mA  
10mA  
0mA  
0mA  
10mA  
20mA  
TABLE I. Input Coding versus Analog Output Current.  
OUTPUT CONFIGURATIONS  
The signal voltage swing that may develop at the two  
outputs, IOUT and IOUT, is limited by a negative and positive  
compliance. The negative limit of 1V is given by the break-  
down voltage of the CMOS process, and exceeding it will  
compromise the reliability of the DAC904, or even cause  
permanent damage. With the full-scale output set to 20mA,  
the positive compliance equals 1.25V, operating with  
The current output of the DAC904 allows for a variety of  
configurations, some of which are illustrated below. As men-  
tioned previously, utilizing the converters differential outputs  
will yield the best dynamic performance. Such a differential  
output circuit may consist of an RF transformer (see Figure 3)  
or a differential amplifier configuration (see Figure 4). The  
DAC904  
SBAS095C  
11  
www.ti.com  
 复制成功!