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ADL5205ACPZ-R7 数据表(PDF) 20 Page - Analog Devices

部件名 ADL5205ACPZ-R7
功能描述  Dual, 35 dB Range, 1 dB Step Size DGA
PDF  32 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADL5205ACPZ-R7 数据表(HTML) 20 Page - Analog Devices

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Data Sheet
ADL5205
Rev. 0 | Page 19 of 31
DIGITAL INTERFACE OVERVIEW
The three digital control interface options of the ADL5205
DGA are, respectively,
Parallel control interface
Serial peripheral interface
Gain step up/down interface
The digital control interface selection is made via two digital
pins, MODE1 and MODE0, as shown in Table 6. Additionally,
there are three power mode control pins, PM, PWUPA, and
PWUPB. PM selects between the high performance and low
power modes, whereas PWUPA and PWUPB enable (power-
up) the corresponding channel. The gain in each channel is
controlled by a 6-bit binary code (A5 to A0 and B5 to B0).
The same physical pins are shared between three interfaces,
resulting in as many as three different functions per digital pin (see
Table 5).
Table 6. Digital Control Interface Selection Truth Table
MODE1
MODE0
Interface
0
0
Parallel
0
1
Serial (SPI)
1
0
Up/down
1
1
Up/down
Parallel Digital Interface
The parallel digital interface uses six gain control bits and a
latch pin per amplifier. The latch pin controls whether the input
data latch is transparent (logic low) or latched (logic high). In
transparent mode, the gain changes as the input gain control bits
change. In latched mode, the gain is determined by the latched
gain setting and is not changed by changing the input gain
control bits.
Serial Peripheral Interface (SPI)
The SPI uses three pins (SDIO, SCLK, and CSA or CSB). The
SPI data register consists of two bytes: six gain control bits (D0
to D5), two attenuation step size address bits (FA0 and FA1),
one read/write bit (R/W), and seven don't care bits (X), as
shown in Figure 53.
The SPI uses a bidirectional pin (SDIO) for writing to the SPI
register and for reading from the SPI register. To write to the SPI
register, pull the CSA or the CSB pin low and apply 16 clock pulses
to shift the 16 bits into the corresponding SPI register, MSB first.
Individual channel SPI registers can be selected by pulling CSA
or CSB low. By simultaneously pulling the CSA and CSB pins
low, the same data can be written to both SPI registers.
SPI register read back operation is described in the SPI Read
section. Because there is only one SDIO line, the control register
of each channel must be read back individually.
SPI fast attack mode is controlled by the FA_A or FA_B pins. A
logic high on the FA_A pin or FA_B pin results in an attenuation
selected by the FA1 and the FA0 bits in the SPI register.
Table 7. SPI 2-Bit Attenuation Step Size Truth Table
FA1
FA0
Step Size (dB)
0
0
2
0
1
4
1
0
8
1
1
16
Up/Down Interface
The up/down interface uses two digital pins to control the gain.
When the UPDN_DAT_x pin is low, the gain for the
corresponding channel is increased by a clock pulse on the
UPDN_CLK_x pin (rising and falling edges). When the
UPDN_DAT_x pin is high, the corresponding gain is decreased
by a clock pulse on the UPDN_CLK_x pin. Reset is detected
when the rising edge of UPDN_CLK_x latches one polarity on
UPDN_DAT_x, and the falling edge latches the opposite
polarity. Reset results in the minimum gain code of 111111.
UPDN_DAT_x
UP
DN
RESET
UPDN_CLK_x
Figure 52. Up/Down Gain Control Timing
The step size is selectable by the GS1 and GS0 pins. The default
step size is 1 dB. The gain code count rails at the top and
bottom of the control range.
Table 8. Step Size Control Truth Table
GS1
GS0
Step Size (dB)
0
0
1
0
1
2
1
0
4
1
1
8
D0
D1
D2
D3
D4
D5
FA0 FA1 R/W
X
X
X
X
X
X
X
DON’T CARE (7 BITS)
READ/WRITE
FAST ATTACK ATTENUATION STEP SIZE ADDRESS
GAIN CONTROL
LSB
DATA
MSB LSB MSB
Figure 53. 16-Bit SPI Register



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