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AD1893

更新时间: 2024-11-20 22:49:55
品牌 Logo 应用领域
亚德诺 - ADI 转换器
页数 文件大小 规格书
20页 219K
描述
Low Cost SamplePort 16-Bit Stereo Asynchronous Sample Rate Converter

AD1893 数据手册

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Low Cost SamplePort®  
16-Bit Stereo Asynchronous  
Sample Rate Converter  
a
AD1893  
SYSTEM DIAGRAM  
FEATURES  
Low Cost  
LQFP and PDIP Packages  
3 V Supply Performance Specified—Very Low Power  
Automatically Senses Sample Frequencies—No  
Programming Required  
Rejects Sample Clock Jitter  
Accommodates Dynamically Changing Asynchronous  
Sample Clocks  
8 kHz to 56 kHz Sample Clock Frequency Range  
Approximately 1:2 to 2:1 Ratio Between Sample  
Clocks  
EXAMPLE  
FREQUENCIES:  
DAT 48kHz OR  
CD 44.1kHz OR  
BROADCAST 32kHz  
EXAMPLE  
FREQUENCIES:  
DAT 48kHz OR  
CD 44.1kHz OR  
BROADCAST 32kHz  
AD1893  
OUTPUT SAMPLE CLOCK  
OUTPUT SERIAL DATA  
INPUT SAMPLE CLOCK  
INPUT SERIAL DATA  
–96 dB THD+N at 1 kHz  
96 dB Dynamic Range  
Optimal Clock Tracking Control—Slow/Fast Settling  
Modes  
Linear Phase in All Modes  
Automatic Output Mute  
Flexible Four-Wire Serial Interfaces with Right-Justified  
Mode  
The AD1893 uses multirate digital signal processing techniques  
to construct an output sample stream from the input sample  
stream. The input word width is 4 to 16 bits for the AD1893.  
Shorter input words are automatically zero-filled in the LSBs.  
The output word width is 24 bits. The user can receive as many  
of the output bits as desired. Internal arithmetic is performed  
with 22-bit coefficients and 27-bit accumulation. The digital  
samples are processed with unity gain.  
Power-Down Mode  
On-Chip Oscillator  
The input and output control signals allow for considerable  
flexibility for interfacing to a variety of DSP chips, AES/EBU  
receivers and transmitters and for I2S compatible devices. Input  
and output data can be independently right- or left- (with or  
without a one bit clock delay) justified to the left/right clock  
edge. In the right-justified mode, the MSB is delayed 16-bit  
clock periods from the left/right clock edge transition. Input and  
output data can also be independently justified to the word  
clock rising edge. The data justification options are encoded on  
two mode pins for both the input port and the output port. The  
bit clocks can also be independently configured for rising edge  
active or falling edge active operation.  
APPLICATIONS  
Consumer CD-R, DAT, DCC, MD and 8 mm Video Tape  
Recorders Including Portables  
Digital Audio Communication/Network Systems  
Computer Multimedia Systems  
PRODUCT OVERVIEW  
The AD1893 SamplePort is a fully digital, stereo Asynchronous  
Sample Rate Converter (ASRC) that solves sample rate interfacing  
and compatibility problems in digital audio equipment. Concep-  
tually, this converter interpolates the input data up to a very high  
internal sample rate with a time resolution of 300 ps, then deci-  
mates down to the desired output sample rate. The AD1893 is  
intended for 16-bit low cost, non-varispeed applications where low  
voltage, low power (i.e., battery-powered) operation is required.  
Refer to the AD1890/AD1891 data sheet for other products in the  
SamplePort family. This device is asynchronous because the fre-  
quency and phase relationships between the input and output  
sample clocks (both are inputs to the AD1893 ASRC) are arbitrary  
and need not be related by a simple integer ratio. There is no need  
to explicitly select or program the input and output sample clock  
frequencies, as the AD1893 automatically senses the relationship  
between the two clocks. The input and output sample clock fre-  
quencies can nominally range from 8 kHz to 56 kHz, and the ratio  
between them can vary from approximately 1:2 to 2:1.  
The AD1893 SamplePort ASRC has on-chip digital coefficients  
that correspond to a highly oversampled 0 Hz to 20 kHz low-  
pass filter with a flat passband, a very narrow transition band,  
and a high degree of stopband attenuation. A subset of these  
filter coefficients are dynamically chosen on the basis of the  
filtered ratio between the input sample clock (LR_I) and the  
output sample clock (LR_O), and these coefficients are then  
used in an FIR convolver to perform the sample rate conversion.  
Refer to the Theory of Operation section of this data sheet for a  
more thorough functional description. The low-pass filter has  
been designed so that full 20 kHz bandwidth is maintained  
when the input and output sample clock frequencies are as low  
as 44.1 kHz. If the output sample rate drops below the input  
sample rate, the bandwidth of the input signal is automatically  
(continued on Page 4)  
SamplePort is a registered trademark of Analog Devices, Inc.  
REV. A  
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: 781/329-4700  
Fax: 781/326-8703  
World Wide Web Site: http://www.analog.com  
© Analog Devices, Inc., 1998  

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