NSC LMH0056SQ Hd/sd sdi reclocker with 4:1 input multiplexer Datasheet

August 2006
LMH0056
HD/SD SDI Reclocker with 4:1 Input Multiplexer
General Description
Features
The LMH0056 HD/SD SDI Reclocker with 4:1 Input Multiplexer is a monolithic integrated circuit that retimes bit-serial
digital video data conforming to the SMPTE 259M (A & C)
and SMPTE 292M standards. The LMH0056 operates at
serial data rates of 143 Mbps, 270 Mbps, 1.483 Gbps and
1.485 Gbps. The LMH0056 supports DVB-ASI operation at
270 Mbps. The LMH0056 includes an integrated 4:1 input
multiplexer for selecting one of four input data streams for
retiming.
The LMH0056 automatically detects the incoming data rate
and adjusts itself to retime the incoming data to suppress
accumulated jitter. The LMH0056 recovers the serial datarate clock and optionally provides it as an output. The
LMH0056 has two differential serial data outputs; the second
output may be selected as a low-jitter, data-rate clock output.
Controls and indicators are: serial clock or second serial
data output select, manual rate select input, SD/HD rate
indicator output, lock detect output, auto/manual data bypass and output mute. The serial data inputs, outputs, and
serial data-rate clock outputs are differential LVPECL compatible. The CML serial data and serial data-rate clock outputs are suitable for driving 100Ω differentially terminated
networks. The control logic inputs and outputs are LVCMOS
compatible.
The LMH0056 is powered from a single 3.3V supply. Power
dissipation is typically 350 mW. The device is housed in a
48-pin LLP package.
n Supports SMPTE 259M (A & C) and SMPTE 292M
serial digital video standards
n Supports 143 Mbps, 270 Mbps, 1.483 Gbps, and 1.485
Gbps serial data rate operation
n Supports DVB-ASI at 270 Mbps
n Single 3.3V supply operation
n 350 mW typical power consumption
n Integrated 4:1 multiplexed input
n Two differential, reclocked outputs
n Choice of second reclocked output or low-jitter,
differential, data-rate clock output
n Single 27 MHz external crystal or reference clock input
n Manual rate select input
n SD/HD operating rate indicator output
n Lock Detect indicator output
n Output mute function for data and clock
n Auto/Manual reclocker bypass
n Differential LVPECL compatible serial data inputs and
outputs
n LVCMOS control inputs and indicator outputs
n 48-Pin LLP package
n Industrial temperature range: -40˚C to +85˚C
Applications
n SDTV/HDTV serial digital video interfaces for:
— Digital video routers and switchers
— Digital video processing and editing equipment
— DVB-ASI equipment
— Video standards and format converters
Typical Application
20201901
© 2006 National Semiconductor Corporation
DS202019
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LMH0056 HD/SD SDI Reclocker with 4:1 Input Multiplexer
PRELIMINARY
LMH0056
Block Diagram
20201903
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LMH0056
Connection Diagram
20201902
The exposed die attach pad is the negative electrical terminal for this device. It must be connected to the negative power supply voltage.
48-Pin LLP
Order Number LMH0056SQ
See NS Package Number SQA-48C
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LMH0056
Pin Descriptions
Pin
Name
Description
1
SDI0
Data Input 0 true
2
SDI0
Data Input 0 complement
3
VCC
Positive power supply input
4
SDI1
Data Input 1 true
5
SDI1
Data Input 1 complement
6
VCC
Positive power supply input
7
SDI2
Data Input 2 true
8
SDI2
Data Input 2 complement
9
VCC
Positive power supply input
10
SDI3
Data Input 3 true
11
SDI3
Data Input 3 complement
12
VCC
Positive power supply input
13
VEE
Negative power supply input
14
VCC
Positive power supply input
15
BYPASS/AUTO BYPASS
Bypass / Auto Bypass mode select
16
OUTPUT MUTE
Data and Clock Output Mute input (active low)
17
VEE
Negative power supply input
18
XTAL IN/EXT CLK
Crystal or External Oscillator input
19
VEE
Negative power supply input
20
VEE
Negative power supply input
21
VEE
Negative power supply input
22
XTAL OUT
Crystal Oscillator output
23
VEE
Negative power supply input
24
LOCK DETECT
PLL Lock Detect output (active high)
25
VEE
Negative power supply input
26
VEE
Negative power supply input
27
VEE
Negative power supply input
28
SCO/SDO2
Serial Clock or Serial Data Output 2 complement
29
SCO/SDO2
Serial Clock or Serial Data Output 2 true
30
VCC
Positive power supply input
31
VCC
Positive power supply input
32
SDO
Data Output complement
33
SDO
Data Output true
34
VCC
Positive power supply input
35
VCC
Positive power supply input
36
SD/HD
Data Rate Range output
37
SCO_EN
Serial Clock or Serial Data 2 Output select
38
VEE
Negative power supply input
39
VEE
Negative power supply input
40
VEE
Negative power supply input
41
VEE
Negative power supply input
42
VEE
Negative power supply input
43
LF1
Loop Filter
44
LF2
Loop Filter
45
RATE 0
Data Rate select
46
RATE 1
Data Rate select
47
SEL0
Data Input select
48
SEL1
Data Input select
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4
Package Thermal Resistance
Supply Voltage (VCC–VEE)
Lead Temperature (Soldering 4 Sec)
θJA 48-pin LLP
4.0V
Logic Supply Voltage (Vi)
26.1˚C/W
θJC 48-pin LLP
VEE−0.15V to
VCC+0.15V
1.9˚C/W
Storage Temp. Range
−65˚C to +150˚C
Junction Temperature
+150˚C
+260˚C (Pb-free)
ESD Rating (HBM)
2 kV
ESD Rating (MM)
250V
Logic Input Current (single input):
Vi = VEE−0.15V
−5 mA
Vi = VCC+0.15V
+5 mA
Logic Output Voltage (Vo)
Recommended Operating
Conditions
VEE−0.15V to
VCC+0.15V
± 8 mA
Logic Output Source/Sink Current
Serial Data Input Voltage (VSDI)
VEE to VCC
800 mV ± 10%
Differential Serial Input Voltage
VCC to VCC−2.0V
Serial Data Output Sink Current (ISDO)
3.3V ± 5%
Supply Voltage (VCC–VEE)
Logic Input Voltage
Serial Data or Clock Output Sink
Current (ISO)
24 mA
Operating Free Air Temperature (TA)
16 mA max.
−40˚C to +85˚C
DC Electrical Characteristics
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified. (Notes 2, 3)
Symbol
Parameter
Conditions
VIH
Input Voltage High
Level
VIL
Input Voltage Low Level
IIH
Input Current High Level VIH = VCC
IIL
Reference
Logic level
inputs
Typ
2
VEE
Input Current Low Level
VIL = VEE
VOH
Output Voltage High
Level
IOH = −2 mA
VOL
Output Voltage Low
Level
IOL = +2 mA
VSDID
Serial Input Voltage,
Differential
SDI
VCMI
Input Common Mode
Voltage
SDI
VSDOD
Serial Output Voltage,
Differential
100Ω differential load
SCO, SDO
VCMO
Output Common Mode
Voltage
100Ω differential load
SCO, SDO
ILEAK
Min
All logic level
outputs
LF1, LF2
Units
VCC
V
0.8
V
1
20
µA
−1
−20
µA
2
V
VEE + 0.6
V
200
1600
mVP-P
VCC−1.6
VCC−0.2
V
880
mVP-P
720
800
VCC−
VSDOD /2
Leakage Current
Max
V
TBD
µA
ICC
Power Supply Current,
3.3V supply, Total
270 Mbps, NTSC color
bar pattern
105
mA
ICC
Power Supply Current,
3.3V supply, Total
1485 Mbps, NTSC color
bar pattern
105
mA
5
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LMH0056
Absolute Maximum Ratings (Note 1) It
is anticipated that this device will not be offered in a
military qualified version. If Military/Aerospace specified
devices are required, please contact the National Semiconductor Sales Office/Distributors for availability and specifications.
LMH0056
AC Electrical Characteristics
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified. (Note 3)
Symbol
Parameter
Conditions
Reference
Min
Typ
Max
Units
BRSD
Serial Data Rate
SMPTE 259M, A
SDI, SDO
143
Mbps
BRSD
Serial Data Rate
SMPTE 259M, C
SDI, SDO
270
Mbps
BRSD
Serial Data Rate
SMPTE 292M
SDI, SDO
1483,
1485
Mbps
TOLJIT
Serial Input Jitter
Tolerance
143 or 270 Mbps,
(Notes 7, 8, 9)
SDI
TOLJIT
Serial Input Jitter
Tolerance
143 or 270 Mbps,
(Notes 7, 8, 10, 13)
SDI
TOLJIT
Serial Input Jitter
Tolerance
1483 Mbps or 1485
Mbps, (Notes 7, 8, 9)
SDI
TOLJIT
Serial Input Jitter
Tolerance
1483 Mbps or 1485
Mbps, (Notes 7, 8, 10,
13)
SDI
tJIT
Additive Output Jitter
143 Mbps, (Note 8)
SDO
0.02
0.08
UIP-P
tJIT
Additive Output Jitter
270 Mbps, (Note 8)
SDO
0.02
0.08
UIP-P
tJIT
Additive Output Jitter
1483 Mbps, 1485 Mbps,
(Note 8)
SDO
0.05
0.1
UIP-P
λBW
Jitter Transfer Function
−3 dB Bandwidth
(Fractional Loop
Bandwidth)
All supported data rates,
(Note 11)
0.25
0.35
%BRSD
Jitter Transfer Function
Peaking
All supported data rates,
(Note 12)
0.05
0.1
dB
FCO
Serial Clock Output
Frequency
143 Mbps data rate
SCO
FCO
Serial Clock Output
Frequency
270 Mbps data rate
SCO
FCO
Serial Clock Output
Frequency
1483 Mbps data rate
SCO
FCO
Serial Clock Output
Frequency
1485 Mbps data rate
SCO
tJIT
Serial Clock Output
Jitter
SCO
Serial Clock Output
Alignment with respect
to Data Interval
SCO, SDO
Serial Clock Output
Duty Cycle
SCO
δ
TACQ
Acquisition Time
UIP-P
> 0.6
UIP-P
>6
UIP-P
> 0.6
UIP-P
0.1
143
MHz
270
MHz
1483
MHz
1485
MHz
2
3
psRMS
35
65
%
40
60
%
Color bar pattern or
PRBS 23 sequence.
(Note 6)
10
tr, tf
Input rise/fall time
10%–90%
Logic inputs
tr, tf
Input rise/fall time
20%–80%, 143 or 270
Mbps
SDI
tr, tf
Input rise/fall time
20%–80%, 1483 or
1485 Mbps
SDI
tr, tf
Output rise/fall time
10%–90%, CL = 5 pF
Logic outputs
tr, tf
Output rise/fall time
20%–80%,1483 or 1485 SCO, SDO
Mbps,(Note 5)
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>6
6
1.5
3
ns
1500
ps
120
170
ps
1.5
3
ns
90
130
ps
400
80
ms
LMH0056
AC Electrical Characteristics
(Continued)
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified. (Note 3)
Symbol
Parameter
FREF
Reference Clock
Frequency
FTOL
Ref. Clock Freq.
Tolerance
VRAMP
Conditions
Reference
Min
−10˚C to +60˚C
Power Supply Ramp
Rate
VCC, VEE
Typ
Max
Units
27
MHz
± 50
ppm
TBD
V/µS
Note 1: “Absolute Maximum Ratings” are those parameter values beyond which the life and operation of the device cannot be guaranteed. The stating herein of
these maximums shall not be construed to imply that the device can or should be operated at or beyond these values. The table of “Electrical Characteristics”
specifies acceptable device operating conditions.
Note 2: Current flow into device pins is defined as positive. Current flow out of device pins is defined as negative. All voltages are referenced to VEE (equal to zero
volts).
Note 3: Typical values are stated for: VCC = +3.3V, TA = +25˚C.
Note 4: Spec is guaranteed by design.
Note 5: RL = 100Ω differential.
Note 6: Measured from first SDI transition until Lock Detect (LD) output goes high (true).
Note 7: Peak-to-peak amplitude with sinusoidal modulation per SMPTE RP 184-1996 paragraph 4.1. The test data signal shall be color bars.
Note 8: This parameter is guaranteed by characterization over voltage and temperature limits.
Note 9: Refer to “A1” in Figure 1 of SMPTE RP 184-1996.
Note 10: Refer to “A2” in Figure 1 of SMPTE RP 184-1996.
Note 11: Refer to ”fc” in Figure 3 of SMPTE RP 184-1996.
Note 12: Refer to ”P” in Figure 3 of SMPTE RP 184-1996.
Note 13: The input jitter tolerance at frequencies higher than the B3 frequency indicated in SMPTE 259M or SMPTE 292M shall be ≥0.8 UI when measured using
the Gennum stepped-jitter method described in Gupta, A., Tailor, B., and Francis, J., “The Deficiencies in Measuring Input Jitter Tolerance (IJT) using Sine wave
modulated Jitter.”
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LMH0056
puts are differential LVPECL compatible. These outputs
have internal 50Ω pull-ups and are suitable for driving AC or
DC-coupled, 100Ω center-tapped, AC grounded or 100Ω
un-center-tapped, differentially terminated networks.
Device Description
The LMH0056 HD/SD SDI Reclocker with 4:1 Input Multiplexer is used in many types of digital video signal processing equipment. Supported serial digital video standards are
SMPTE 259M A & C and SMPTE 292M. Corresponding
serial data rates are 143 Mbps, 270 Mbps, 1.483 Gbps and
1.485 Gbps. DVB-ASI data at 270 Mbps may also be retimed. The LMH0056 retimes the serial data stream to suppress accumulated jitter. It provides two low-jitter, differential,
serial data outputs. The second output may be selected to
output either serial data or a low-jitter serial data-rate clock.
Controls and indicators are: serial data-rate clock or second
serial data output select, manual rate select input, SD/HD
rate output, lock detect output, auto/manual data bypass and
output mute.
OPERATING SERIAL DATA RATES
This device operates at serial data rates of 143 Mbps, 270
Mbps, 1483 Mbps and 1485 Mbps. The device does not lock
to harmonics of these rates. The device does not lock and
automatically enters the reclocker bypass mode for the following data rates: 177 Mbps, 360 Mbps, and 540 Mbps.
SERIAL DATA CLOCK/SERIAL DATA 2 OUTPUT
The Serial Data Clock/Serial Data 2 Output is controlled by
the SCO_EN input and provides either a second retimed
serial data output or a low jitter differential clock output
appropriate to the serial data rate being processed. When
operating as a serial clock output, the rising edge of the clock
will be positioned within the corresponding serial data bit
interval within 15% of the center of the data interval.
Serial data inputs are CML and LVPECL compatible. Serial
data and data-rate clock outputs are differential CML and
produce LVPECL compatible levels. The output buffer design can drive AC or DC-coupled, terminated 100Ω differential loads. The differential output level is 800 mVP-P ± 10%
into 100Ω AC or DC-coupled differential loads. Logic inputs
and outputs are LVCMOS compatible.
Differential output SCO/SDO2 functions as the second serial
data output when the SCO_EN input is a logic-low level. This
output functions as the serial data-rate clock output when the
SCO_EN input is a logic-high level. The SCO_EN input has
an internal pull-down device and the default state of
SCO_EN is low (serial data output 2 enabled). SCO/SDO2 is
muted when the MUTE input is a logic low level. When the
Bypass mode is activated and this output is functioning as a
serial clock output, the output will also be muted.
The device package is a 48–pin LLP with an exposed die
attach pad. The exposed die attach pad is electrically connected to device ground (VEE) and is the negative electrical
terminal for the device. This terminal must be connected to
the negative power supply or circuit ground.
Serial Data Inputs, Serial Data and
Clock Outputs
Control Inputs and Indicator
Outputs
SERIAL DATA INPUT AND OUTPUTS
The differential serial data inputs, SDI0-SDI3, accept serial
digital video data at the rates specified in Table 1. The serial
data input is differential LVPECL compatible. These inputs
are intended to be DC interfaced to devices such as the
LMH0034 adaptive cable equalizer. These inputs are not
internally terminated or biased. The inputs may be ACcoupled if a suitable input bias voltage is provided.
SERIAL DATA RATE SELECTOR
The Serial Data Rate Selector (RATE [1:0]) permits the user
to fix the operating serial data rate. The pins have internal
pull-downs which maintain a logic-low input condition unless
externally driven to a logic-high condition. This input also
serves to place the device in a test mode. The codes shown
in Table 1 select the desired operating serial data rate. The
LMH0056 then enters either the Auto-Rate Detect mode, a
single operating rate, or the test mode. Selecting the 270
Mbps rate mode may also be used when reclocking DVBASI data. DVB-ASI data is MPEG2 coded data that is transmitted in 8B10B coding. The device should reclock this data
without harmonic locking.
The LMH0056 provides four independent, multiplexed data
inputs. The active input channel is selected via the SEL0 and
SEL1 pins, as shown in Table 2.
The LMH0056 has two, retimed, differential, serial data outputs, SDO and SCO/SDO2. These outputs provide low jitter,
differential, retimed data to devices such as the LMH0002
cable driver or the LMH0031 deserializer. Output SCO/
SDO2 is multiplexed and can provide either a second serial
data output or a serial data-rate clock output.
The SCO_EN input controls the operating mode for the
SCO/SDO2 output. When the SCO_EN input is high the
SCO/SDO2 output provides a serial data-rate clock. When
SCO_EN is low, the SCO/SDO2 output provides retimed
serial data.
Both differential serial data outputs, SDO and SCO/SDO2,
are muted when the MUTE input is a logic low level. SCO/
SDO2 also mutes when the Bypass mode is activated when
this output is operating as the serial clock output. When
muted, SDO and SDO (or SDO2 and SDO2) will assume
opposite differential output levels. The CML serial data out-
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TABLE 1. Data Rate Select Input Codes
RATE [1:0]
Code
8
Data Rate
or Mode
Comments
00
Auto-Rate
Detect
mode
143 Mbps rate operation
supported only in ARD mode
01
270 Mbps
May be used to support
DVB-ASI operation
10
1483/1485
Mbps
MUTE
The MUTE input, when low, mutes the serial data and clock
outputs. It may be connected to Lock Detect or externally
driven to mute or un-mute the outputs. If MUTE is connected
to LD, then the data and clock outputs are muted when the
PLL is not locked. This function overrides the Bypass function: see Table 3. MUTE has an internal pull-up device to
enable the output by default.
SERIAL DATA INPUT SELECTOR
The Serial Data Input Selector (SEL [1:0]) allows the user to
select the active input channel. Table 2 shows the input
selected for a given state of SEL [1:0].
BYPASS/AUTO BYPASS
TABLE 2. Data Input Select Codes
SEL [1:0] Code
Selected Input
00
SDI0
01
SDI1
10
SDI2
11
SDI3
The Bypass/Auto Bypass input, when high, forces the device
to output the data without reclocking it. When this input is
low, the device automatically bypasses the reclocking function when the device is in an unlocked condition or the
detected data rate is a rate which the device does not
support. See Table 3. BYPASS/AUTO BYPASS has an internal pull-down device.
LOCK DETECT
The Lock Detect (LD) output, when high, indicates that data
is being received and the PLL is locked. LD may be connected to the MUTE input to mute the data and clock outputs
when no data signal is being received. See Table 3.
TABLE 3. Control Functionality
LOCK DETECT
OUTPUT MUTE
BYPASS/AUTO BYPASS
0
1
0
PLL unlocked, reclocker bypassed
1
1
0
PLL locked to supported data rate, reclocker not bypassed
X
0
X
Outputs muted
0
LOCK DETECT
X
Outputs muted
1
LOCK DETECT
0
PLL locked to supported data rate, reclocker not bypassed
1
LOCK DETECT
1
PLL locked to supported data rate, reclocker bypassed
X
1
1
Outputs not muted, reclocker bypassed
9
DEVICE STATUS
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LMH0056
Control Inputs and Indicator
Outputs (Continued)
LMH0056
Control Inputs and Indicator
Outputs (Continued)
1485 Mbps. The SD/HD output is a registered function and is
only valid when the PLL is locked and the Lock Detect output
is high. The SD/HD is undefined for a short time after lock
detect assertion or de-assertion caused by a data rate
change on the SDI input. See Figure 1 for a timing diagram
showing the relationship between SDI, Lock Detect, and
SD/HD. When the PLL is not locked (the Lock Detect output
is low), the SD/HD output defaults to HD (low).
SD/HD
The SD/HD output indicates whether the LMH0056 is processing SD or HD data rates. It may be used to control
another device such as the LMH0002 cable driver. When this
output is high it indicates that the data rate is 270 Mbps (or
143 Mbps). When low, the indicated data rate is 1483 or
20201905
FIGURE 1. SDI, Lock Detect, and SD/HD
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10
LMH0056
Control Inputs and Indicator
Outputs (Continued)
TABLE 4. Crystal Parameters
Parameter
SCO_EN
Input SCO_EN enables the SCO/SDO2 differential output to
function either as a serial data-rate clock or second serial
data output. SCO/SDO2 functions as a serial data-rate clock
when SCO_EN is high. This pin has an internal pull-down
device. The default state (low) enables the SCO/SDO2 output as a second serial data output.
Value
Frequency
27 MHz
Frequency Stability
± 100 ppm @ recommended
drive level
Operating Mode
Fundamental mode, Parallel
Resonant
Load Capacitance
20 pF
Shunt Capacitance
7 pF
CRYSTAL OR EXTERNAL CLOCK REFERENCE
Series Resistance
40Ω max.
The LMH0056 uses a 27 MHz crystal or external clock signal
as a timing reference input. A 27 MHz parallel resonant
crystal and load network may be connected to the XTAL
IN/EXT CLK and XTAL OUT pins. Alternatively, a 27 MHz
LVCMOS compatible clock signal may be input to XTAL
IN/EXT CLK. Parameters for a suitable crystal are given in
Table 4.
Recommended Drive Level
100 µW
Maximum Drive Level
500 µW
Operating Temperature
Range
−10˚C to +60˚C
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LMH0056
Application Information
Figure 2 shows an application circuit for the LMH0056 along
with the LMH0044 SMPTE 292M / 259M Adaptive Cable
Equalizers and LMH0202 SMPTE 292M / 259M Dual Cable
Driver.
20201904
FIGURE 2. Application Circuit
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12
LMH0056 HD/SD SDI Reclocker with 4:1 Input Multiplexer
Physical Dimensions
inches (millimeters) unless otherwise noted
48-Pin LLP
Order Number LMH0056SQ
NS Package Number SQA-48C
National does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and National reserves
the right at any time without notice to change said circuitry and specifications.
For the most current product information visit us at www.national.com.
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