NSC LMH0002SQ

LMH0002
SMPTE 292M / 259M Serial Digital Cable Driver
General Description
Features
The LMH0002 SMPTE 292M / 259M serial digital cable
driver is a monolithic, high-speed cable driver designed for
use in SMPTE 292M / 259M serial digital video and ITU-T
G.703 serial digital data transmission applications. The
LMH0002 drives 75Ω transmission lines (Belden 8281,
Belden 1694A or equivalent) at data rates up to 1.485 Gbps.
n SMPTE 292M, SMPTE 344M and SMPTE 259M
compliant
n Data rates to 1.485 Gbps
n Differential input
n 75Ω differential output
n Selectable slew rate
n Adjustable output amplitude
n Single 3.3V supply operation
n Operating temperature range: Commercial 0˚C to +70˚C
(LMH0002MA) or Industrial −40˚C to +85˚C
(LMH0002TMA and LMH0002SQ)
n Typical power consumption: 125mW in SD mode and
149mW in HD mode
n 8–pin SOIC or 16–pin LLP package
n Replaces the GS1528, GS1528A, or GS1578A.
The LMH0002 provides two selectable slew rates for
SMPTE 259M and SMPTE 292M compliance. The output
voltage swing is adjustable via a single external resistor.
The LMH0002 is powered from a single 3.3V supply. Power
consumption is typically 125mW in SD mode and 149mW in
HD mode. The LMH0002 is available in an 8-pin SOIC or
16-pin LLP package.
Applications
n SMPTE 292M, SMPTE 344M, and SMPTE 259M serial
digital interfaces
n Sonet/SDH and ATM interfaces
n Digital routers and switches
n Distribution amplifiers
n Buffer applications
n Set top boxes
n Security cameras
Typical Application
20176102
© 2006 National Semiconductor Corporation
DS201761
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LMH0002 SMPTE 292M / 259M Serial Digital Cable Driver
October 2006
LMH0002
Absolute Maximum Ratings (Note 1)
ESD Rating (HBM)
Supply Voltage:
ESD Rating (MM)
Input Voltage (all inputs)
−0.5V to 3.6V
−0.3V to VCC+0.3V
Output Current
Storage Temperature Range
−65˚C to +150˚C
+150˚C
Lead Temperature
(Soldering 4 Sec)
3.3V ± 5%
Supply Voltage (VCC – VEE):
Operating Free Air Temperature (TA)
LMH0002MA
LMH0002TMA, LMH0002SQ
+260˚C
Package Thermal Resistance
θJA 8-pin SOIC
θJA 16-pin LLP
θJC 8-pin SOIC
θJC 16-pin LLP
250V
Recommended Operating
Conditions
28mA
Junction Temperature
5kV
0˚C to +70˚C
−40˚C to +85˚C
+160˚C/W
+78.9˚C/W
+105˚C/W
+42.7˚C/W
DC Electrical Characteristics
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified (Notes 2, 3).
Symbol Parameter
VCMIN
Input Common Mode Voltage
VSDI
Input Voltage Swing
Conditions
Reference
SDI, SDI
Differential
VCMOUT Output Common Mode Voltage
VSDO
Output Voltage Swing
SD/HD Input Voltage
Max
Units
1.6 +
VSDI/2
Min
VCC –
VSDI/2
V
100
2000
mVP−P
SDO, SDO
Typ
VCC –
VSDO
Single-ended, 75Ω load,
RREF = 750Ω 1%
750
800
850
mVP-P
Single-ended, 75Ω load,
RREF = 590Ω 1%
900
1000
1100
mVP-P
Min for SD
SD/HD
2.4
V
Max for HD
0.8
SD/HD Input Current
ICC
Supply Current
V
3.7
V
µA
SD/HD = 0, (Note 5)
45
49
mA
SD/HD = 1, (Note 5)
38
43
mA
Max
Units
1485
Mbps
AC Electrical Characteristics
Over Supply Voltage and Operating Temperature ranges, unless otherwise specified (Note 3).
Symbol Parameter
Conditions
Reference
DRSDI
Input Data Rate
(Note 4)
SDI, SDI
Min
Typ
tjit
Additive Jitter
1.485 Gbps
SDO, SDO
tr,tf
Output Rise Time, Fall Time
Mismatch in Rise/Fall Time
(Note 4)
Duty Cycle Distortion
SD/HD = 0, (Note 4)
30
ps
SD/HD = 1, (Note 4)
100
ps
8
%
26
psP-P
270 Mbps
18
psP-P
SD/HD = 0, 20% – 80%,
(Note 6)
120
220
560
800
ps
30
ps
SD/HD = 1, 20% – 80%
tOS
Output Overshoot
(Note 4)
RLSDO
Output Return Loss
(Note 7)
400
15
20
ps
dB
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 stated referenced to VEE = 0 Volts.
Note 3: Typical values are stated for VCC = +3.3V and TA = +25˚C.
Note 4: Specification is guaranteed by characterization.
Note 5: Maximum ICC is measured at VCC = +3.465V and TA = +70˚C.
Note 6: Specification is guaranteed by characterization and verified by test.
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2
Connection Diagrams
20176101
8-Pin SOIC
Order Number LMH0002MA or LMH0002TMA
See NS Package Number M08A
20176105
16-Pin LLP
Order Number LMH0002SQ
See NS Package Number SQB16A
Pin Descriptions
SOIC
Pin #
LLP
Pin #
Name
Description
1
1
SDI
Serial data true input.
2
2
SDI
Serial data complement input.
3
3
VEE
Negative power supply (ground).
4
4
RREF
Output driver level control. Connect a resistor to VCC to set output voltage swing.
5
9
VCC
Positive power supply (+3.3V).
6
10
SD/HD
Output slew rate control. Output rise/fall time complies with SMPTE 292M when
low and SMPTE 259M when high.
7
11
SDO
Serial data complement output.
8
12
SDO
Serial data true output.
—
—
5, 6, 7, 8, NC
13, 14,
15, 16
DAP
VEE
No connect.
Connect exposed DAP to negative power supply (ground).
3
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LMH0002
Note 7: Output return loss is dependent on board design. The LMH0002 meets this specification on the SD002 evaluation board from 5MHz to 1.5GHz.
LMH0002
Device Operation
OUTPUT INTERFACING
The LMH0002 uses current mode outputs. Single-ended
output levels are 800 mVP-P into 75Ω AC-coupled coaxial
cable (with RREF = 750Ω). Output level is controlled by the
value of the RREF resistor connected between the RREF pin
and VCC.
The RREF resistor should be placed as close as possible to
the RREF pin. In addition, the copper in the plane layers
below the RREF network should be removed to minimize
parasitic capacitance.
INPUT INTERFACING
The LMH0002 accepts either differential or single-ended
input. The inputs are self-biased, allowing for simple AC or
DC coupling. DC-coupled inputs must be kept within the
specified common-mode range. SDI and SDI are self-biased
at approximately 2.1V with VCC = 3.3V. Figure 1 shows the
differential input stage for SDI and SDI.
OUTPUT SLEW RATE CONTROL
The LMH0002 output rise and fall times are selectable for
either SMPTE 259M or SMPTE 292M compliance via the
SD/HD pin. For slower rise and fall times, or SMPTE 259M
compliance, SD/HD is set high. For faster rise and fall times,
or SMPTE 292M compliance, SD/HD is set low.
REPLACING THE GENNUM GS1528, GS1528A, and
GS1578A
The LMH0002MA is form-fit-function compatible with the
Gennum GS1528 and GS1528A. The LMH0002SQ is formfit-function compatible with the Gennum GS1578A.
20176104
FIGURE 1. Differential Input Stage for SDI and SDI.
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LMH0002
Physical Dimensions
inches (millimeters) unless otherwise noted
8-Pin SOIC
Order Number LMH0002MA or LMH0002TMA
NS Package Number M08A
16-Pin LLP
Order Number LMH0002SQ
NS Package Number SQB16A
5
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LMH0002 SMPTE 292M / 259M Serial Digital Cable Driver
Notes
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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WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT AND GENERAL COUNSEL OF NATIONAL SEMICONDUCTOR
CORPORATION. As used herein:
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which, (a) are intended for surgical implant into the body, or
(b) support or sustain life, and whose failure to perform when
properly used in accordance with instructions for use
provided in the labeling, can be reasonably expected to result
in a significant injury to the user.
2. A critical component is any component of a life support
device or system whose failure to perform can be reasonably
expected to cause the failure of the life support device or
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