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MAX9390EHJ+T

Description
交点开关 2 x 2:2 32-TQFP(5x5)
Categorylogic    Signal switch, multiplexer, decoder   
File Size220KB,14 Pages
ManufacturerADI
Websitehttps://www.analog.com
Environmental Compliance
Download Datasheet Parametric View All

MAX9390EHJ+T Overview

交点开关 2 x 2:2 32-TQFP(5x5)

MAX9390EHJ+T Parametric

Parameter NameAttribute value
category
MakerADI
series-
PackageTape and Reel (TR) Cut Tape (CT)
typeintersection switch
circuit2 x 2:2
independent circuit2
Current - Output High, Low-
供电电压源single power supply
Voltage - Power supply3V ~ 3.6V
Operating temperature-40°C ~ 85°C
Installation typesurface mount type
Package/casing32-TQFP
Supplier device packaging32-TQFP(5x5)
Basic product numberMAX9390
19-2829; Rev 2; 5/07
KIT
ATION
EVALU
E
BL
AVAILA
Anything-to-LVDS Dual 2 x 2
Crosspoint Switches
General Description
Features
1.5GHz Operation with 250mV Differential Output
Swing
2ps
(RMS)
(max) Random Jitter
AC Specifications Guaranteed for 150mV
Differential Input
Signal Inputs Accept Any Differential Signaling
Standard
LVDS Outputs for Clock or High-Speed Data
High-Level Input Fail-Safe Detection (MAX9390)
Low-Level Input Fail-Safe Detection (MAX9391)
3.0V to 3.6V Supply Voltage Range
LVCMOS/LVTTL Logic Inputs Control Signal
Routing
MAX9390/MAX9391
The MAX9390/MAX9391 dual 2 x 2 crosspoint switches
perform high-speed, low-power, and low-noise signal
distribution. The MAX9390/MAX9391 multiplex one of two
differential input pairs to either or both low-voltage differ-
ential signaling (LVDS) outputs for each channel.
Independent enable inputs turn on or turn off each differ-
ential output pair.
Four LVCMOS/LVTTL logic inputs (two per channel) con-
trol the internal connections between inputs and outputs.
This flexibility allows for the following configurations: 2 x 2
crosspoint switch, 2:1 mux, 1:2 splitter, or dual repeater.
This makes the MAX9390/MAX9391 ideal for protection
switching in fault-tolerant systems, loopback switching for
diagnostics, fanout buffering for clock/data distribution,
and signal regeneration.
Fail-safe circuitry forces the outputs to a differential low
condition for undriven inputs or when the common-
mode voltage exceeds the specified range. The
MAX9390 provides high-level input fail-safe detection
for LVDS, HSTL, and other GND-referenced differential
inputs. The MAX9391 provides low-level input fail-safe
detection for LVPECL, CML, and other V
CC
-referenced
differential inputs.
Ultra-low 82ps
(
P-P)
(max) pseudorandom bit sequence
(PRBS) jitter ensures reliable communications in high-
speed links that are highly sensitive to timing error,
especially those incorporating clock-and-data recovery,
or serializers and deserializers. The high-speed switch-
ing performance guarantees 1.5GHz operation and less
than 65ps (max) skew between channels.
LVDS inputs and outputs are compatible with the
TIA/EIA-644 LVDS standard. The LVDS outputs drive
100Ω loads. The MAX9390/MAX9391 are offered in a
32-pin TQFP package and operate over the extended
temperature range (-40°C to +85°C).
Also refer to the MAX9392/MAX9393 with flow-through
pinout.
Ordering Information
PART
MAX9390EHJ
MAX9390EHJ+
MAX9391EHJ
MAX9391EHJ+
TEMP RANGE
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
PIN-
PACKAGE
32 TQFP
32 TQFP
32 TQFP
32 TQFP
PKG
CODE
H32-1
H32-1
H32-1
H32-1
+Denotes
a lead-free package.
Pin Configurations
TOP VIEW
ASEL1
ASEL0
INA1
INA1
INA0
INA0
26
GND
25
24 V
CC
23 OUTA0
22 OUTA0
21 ENA0
20 GND
19 OUTA1
18 OUTA1
17 ENA1
9
GND
10
INB0
11
INB0
12
BSEL0
13
V
CC
14
INB1
15
INB1
16
BSEL1
V
CC
32
+
ENB1 1
OUTB1 2
OUTB1 3
GND 4
ENB0 5
OUTB0 6
OUTB0 7
V
CC
8
31
30
29
28
27
Applications
High-Speed Telecom/Datacom Equipment
Central-Office Backplane Clock Distribution
DSLAM
Protection Switching
Fault-Tolerant Systems
MAX9390
MAX9391
Functional Diagram and Typical Operating Circuit appear at
end of data sheet.
TQFP
1
________________________________________________________________
Maxim Integrated Products
For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at
1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com.

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