DS92LX2121SQE National Semiconductor, DS92LX2121SQE Datasheet - Page 32

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DS92LX2121SQE

Manufacturer Part Number
DS92LX2121SQE
Description
SERDES, 10-50MHZ, 40LLP
Manufacturer
National Semiconductor
Datasheet

Specifications of DS92LX2121SQE

Data Rate
1.05Gbps
No. Of Inputs
21
No. Of Outputs
1
Supply Voltage Range
1.71V To 1.89V
Driver Case Style
LLP
No. Of Pins
40
Base Number
2121
Operating Temperature Range
-40°C To +85°C
Serdes Function
Serializer
Ic Input Type
LVCMOS
Ic Output Type
LVCMOS
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
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LOCK pin and confirm LOCK = H before performing any I
communication across the link.
For Remote Wakeup to function properly:
The SER can also be put into standby mode by programming
the DES remote wake up control register 0x01 b[2]
REM_WAKEUP to 0.
POWERDOWN
The SER has a PDB input pin to ENABLE or Powerdown the
device. The modes can be controlled by the host and is used
to disable the Link to save power when the remote device is
not operational. An auto mode is also available. In this mode,
the PDB pin is tied High and the SER switches over to an
internal oscillator when the PCLK stops or not present. When
a PCLK starts again, the SER will then lock to the valid input
PCLK and transmits the data to the DES. In powerdown
mode, the high-speed driver outputs are static (HIGH).
The DES has a PDB input pin to ENABLE or Powerdown the
device. This pin can be controlled by the system and is used
to disable the DES to save power. An auto mode is also avail-
able. In this mode, the PDB pin is tied High and the DES will
enter powerdown when the serial stream stops. When the
serial stream starts up again, the DES will lock to the input
stream and assert the LOCK pin and output valid data. In
powerdown mode, the Data and PCLK outputs are set by the
OSS_SEL control register.
POWER UP REQUIREMENTS AND PDB PIN
The VDD (VDDn and VDDIO) supply ramp should be faster
than 1.5 ms with a monotonic rise. If slower then 1.5 ms then
The chipset needs to be configured in Camera mode:
Serializer M/S = 0 and Deserializer M/S = 1
The SER expects remote wake up by default at power on.
Configure the control channel driver of the DES to be in
remote wake up mode by setting DES register 0x26 to
0xC0.
Perform remote wake up on SER by setting DES register
0x01 b[2] to 1.
Return the control channel driver of the DES to the normal
operation mode by setting DES register 0x26 to 0.
FIGURE 29. Programmable PCLK Strobe Select
2
C
32
a capacitor on the PDB pin is needed to ensure PDB arrives
after all the VDD have settled to the recommended operating
voltage. When PDB pin is pulled to VDDIO, it is recommended
to use a 10 kΩ pull-up and a 22 uF cap to GND to delay the
PDB input signal.
SIGNAL QUALITY ENHANCERS
Des - Receiver Input Equalization (EQ)
The receiver inputs provided input equalization filter in order
to compensate for loss from the media. The level of equal-
ization is controlled via register setting.
EMI REDUCTION
Des - Receiver Staggered Output
The Receiver staggered outputs allows for outputs to switch
in a random distribution of transitions within a defined window.
Outputs transitions are distributed randomly. This minimizes
the number of outputs switching simultaneously and helps to
reduce supply noise. In addition it spreads the noise spectrum
out reducing overall EMI.
Des Spread Spectrum Clocking Compatibilty
The DS92LX2122 parallel data and clock outputs have pro-
grammable SSCG ranges from 70 kHz and +-2% (4% total)
from 20 MHz to 50 MHz. The modulation rate and modulation
frequency variation of output spread is controlled through the
SSC control registers.
PIXEL CLOCK EDGE SELECT (TRFB/RRFB)
The TRFB/RRFB selects which edge of the Pixel Clock is
used. For the SER, this register determines the edge that the
data is latched on. If TRFB register is 1, data is latched on the
Rising edge of the PCLK. If TRFB register is 0, data is latched
on the Falling edge of the PCLK. For the DES, this register
determines the edge that the data is strobed on. If RRFB reg-
ister is 1, data is strobed on the Rising edge of the PCLK. If
RRFB register is 0, data is strobed on the Falling edge of the
PCLK.
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