19-2216; Rev 0; 10/01
Low-Jitter, Low-Noise LVPECL-to-LVDS Level
Translator in an SC70 Package
General Description
The MAX9156 is an LVPECL-to-LVDS level translator
that accepts a single LVPECL input and translates it to
a single LVDS output. It is ideal for interfacing between
LVPECL and LVDS interfaces in systems that require
minimum jitter, noise, power, and space.
Ultra-low, 23ps
p-p
added deterministic jitter and
0.6ps
RMS
added random jitter ensure reliable commu-
nication in high-speed links that are highly sensitive to
timing errors, especially those incorporating clock-and-
data recovery, PLLs, serializers, or deserializers. The
MAX9156鈥檚 switching performance guarantees a
200Mbps data rate, but minimizes radiated noise by
guaranteeing 0.5ns minimum output transition time.
The MAX9156 operates from a single +3.3V supply and
consumes only 10mA supply current over a -40擄C to
+85擄C temperature range. It is available in a tiny 6-pin
SC70 package (half the size of a SOT23). Refer to the
MAX9155 data sheet for a low-jitter, low-noise LVDS
repeater in an SC70 package.
o
Tiny SC70 Package
o
Ultra-Low Jitter
23ps
p-p
Added Deterministic Jitter
(2
23
-1 PRBS)
0.6ps
RMS
Added Random Jitter
o
0.5ns (min) Transition Time Minimizes Radiated
Noise
o
200Mbps Guaranteed Data Rate
o
Low 10mA Supply Current
o
Output Conforms to ANSI/EIA/TIA-644 LVDS
Standard
o
High-Impedance Inputs and Outputs in
Power-Down Mode
Features
MAX9156
Applications
Digital Cross-Connects
Add/Drop Muxes
Network Switches/Routers
Cellular Phone Base Stations
DSLAMs
Multidrop Buses
PART
MAX9156EXT-T
Ordering Information
TEMP. RANGE
-40擄C to +85擄C
PIN-
PACKAGE
6 SC70-6
TOP
MARK
ABD
Pin Configuration
Typical Operating Circuit
V
CC
3.3V
MAX9156
OUT+
IN+
LVPECL
DRIVER
IN-
IN- 3
GND
4
IN+
OUT-
LVDS
SIGNALS
GND 2
5
V
CC
OUT- 1
TOP VIEW
MAX9156
6
OUT+
SC70
________________________________________________________________
Maxim Integrated Products
1
For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at
1-888-629-4642, or visit Maxim鈥檚 website at www.maxim-ic.com.