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AD9952YSV-REEL7 PDF预览

AD9952YSV-REEL7

更新时间: 2024-02-02 00:58:07
品牌 Logo 应用领域
亚德诺 - ADI DSP外围设备微控制器和处理器外围集成电路时钟
页数 文件大小 规格书
28页 453K
描述
400 MSPS 14-Bit, 1.8 V CMOS Direct Digital Synthesizer

AD9952YSV-REEL7 技术参数

是否Rohs认证: 不符合生命周期:Obsolete
零件包装代码:QFP包装说明:EXPOSED PAD, PLASTIC, MS-026ABC, TQFP-48
针数:48Reach Compliance Code:not_compliant
ECCN代码:EAR99HTS代码:8542.39.00.01
风险等级:5.2Is Samacsys:N
边界扫描:NO最大时钟频率:400 MHz
JESD-30 代码:S-PQFP-G48JESD-609代码:e0
长度:7 mm低功率模式:NO
端子数量:48最高工作温度:105 °C
最低工作温度:-40 °C封装主体材料:PLASTIC/EPOXY
封装代码:HTFQFP封装形状:SQUARE
封装形式:FLATPACK, HEAT SINK/SLUG, THIN PROFILE, FINE PITCH峰值回流温度(摄氏度):220
认证状态:Not Qualified座面最大高度:1.2 mm
最大供电电压:1.89 V最小供电电压:1.71 V
标称供电电压:1.8 V表面贴装:YES
技术:CMOS温度等级:INDUSTRIAL
端子面层:Tin/Lead (Sn/Pb)端子形式:GULL WING
端子节距:0.5 mm端子位置:QUAD
处于峰值回流温度下的最长时间:30宽度:7 mm
uPs/uCs/外围集成电路类型:DSP PERIPHERAL, NUMERIC CONTROLLED OSCILLATORBase Number Matches:1

AD9952YSV-REEL7 数据手册

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AD9952  
INSTRUCTION BYTE  
The instruction byte contains the following information:  
Table 7.  
MSB  
D6  
D5  
D4  
D3  
D2  
D1  
LSB  
A0  
W
R/  
X
X
A4  
A3  
A2  
A1  
serial port is in LSB first format. The instruction byte must be  
written in the format indicated by Control Register 0x00 <8>. If  
the AD9952 is in LSB first mode, the instruction byte must be  
written from least significant bit to most significant bit.  
W
R/ —Bit 7 of the instruction byte determines whether a read  
or write data transfer will occur after the instruction byte write.  
Logic High indicates read operation. Logic 0 indicates a write  
operation.  
For MSB first operation, the serial port controller will generate  
the most significant byte (of the specified register) address first  
followed by the next lesser significant byte addresses until the  
I/O operation is complete. All data written to (read from) the  
AD9952 must be (will be) in MSB first order. If the LSB mode is  
active, the serial port controller will generate the least signifi-  
cant byte address first followed by the next greater significant byte  
addresses until the I/O operation is complete. All data written to  
(read from) the AD9952 must be (will be) in LSB first order.  
X, X—Bits 6 and 5 of the instruction byte are Don’t Care.  
A4, A3, A2, A1, A0—Bits 4, 3, 2, 1, 0 of the instruction byte  
determine which register is accessed during the data transfer  
portion of the communications cycle.  
SERIAL INTERFACE PORT PIN DESCRIPTION  
SCLK—Serial Clock. The serial clock pin is used to synchronize  
data to and from the AD9952 and to run the internal state  
machines. SCLK maximum frequency is 25 MHz.  
Example Operation  
To write the amplitude scale factor register in MSB first format,  
apply an instruction byte of 0x02 [serial address is 00010(b)].  
From this instruction, the internal controller will generate an  
internal byte address of 0x07 (see the register map) for the first  
data byte written and an internal address of 0x08 for the next  
byte written. Since the amplitude scale factor register is two  
bytes wide, this ends the communication cycle.  
CSB—Chip Select Bar. CSB is active low input that allows more  
than one device on the same serial communications line. The  
SDO and SDIO pins will go to a high impedance state when this  
input is high. If driven high during any communications cycle,  
that cycle is suspended until  
is reactivated low. Chip select  
CS  
can be tied low in systems that maintain control of SCLK.  
SDIO—Serial Data I/O. Data is always written into the AD9952  
on this pin. However, this pin can be used as a  
bidirectional data line. Bit 7 of Register Address 0x00 controls  
the configuration of this pin. The default is Logic 0, which  
configures the SDIO pin as bidirectional.  
To write the amplitude scale factor register in LSB first format,  
apply an instruction byte of 0x40. From this instruction, the  
internal controller will generate an internal byte address of  
0x08 (see the register map) for the first data byte written and an  
internal address of 0x07for the next byte written. Since the  
amplitude scale factor register is two bytes wide, this ends the  
communication cycle.  
SDO—Serial Data Out. Data is read from this pin for protocols  
that use separate lines for transmitting and receiving data. In the  
case where the AD9952 operates in a single bidirectional I/O  
mode, this pin does not output data and is set to a high imped-  
ance state.  
Power-Down Functions of the AD9952  
The AD9952 supports an externally controlled or hardware  
power-down feature as well as the more common software pro-  
grammable power-down bits found in previous ADI DDS products.  
IOSYNC—It synchronizes the I/O port state machines without  
affecting the addressable registers contents. An active high in-  
put on the IOSYNC pin causes the current communication  
cycle to abort. After IOSYNC returns low (Logic 0), another  
communication cycle may begin, starting with the instruction  
byte write.  
The software control power-down allows the DAC, comparator,  
PLL, input clock circuitry, and digital logic to be individually  
powered down via unique control bits (CFR1<7:4>). With the  
exception of CFR1<6>, these bits are not active when the exter-  
nally controlled power-down pin (PWRDWNCTL) is high.  
External power-down control is supported on the AD9952 via  
the PWRDWNCTL input pin. When the PWRDWNCTL input  
pin is high, the AD9952 will enter a power-down mode based  
on the CFR1<3> bit. When the PWRDWNCTL input pin is low,  
the external power-down control is inactive.  
MSB/LSB TRANSFERS  
The AD9952 serial port can support both most significant bit  
(MSB) first or least significant bit (LSB) first data formats. This  
functionality is controlled by the Control Register 0x00 <8> bit.  
The default value of Control Register 0x00 <8> is low (MSB  
first). When Control Register 0x00 <8> is set high, the AD9952  
Rev. 0 | Page 23 of 28  

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