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EL4332 Datasheet, PDF (1/15 Pages) Intersil Corporation – Triple 2:1 300MHz Mux-Amp AV = 2
®
Data Sheet
October 4, 2004
EL4332
FN7163.2
Triple 2:1 300MHz Mux-Amp AV = 2
The EL4332 is a triple very high speed 2:1 Multiplexer-
Amplifier. It is intended primarily for component video
multiplexing and is especially suited for pixel switching. The
amplifiers have their gain set to 2 internally, which reduces
the need for many external components. The gain-of-2
facilitates driving back terminated cables. All three amplifiers
are switched simultaneously from their A to B inputs by the
TTL/CMOS compatible, common A/B control pin.
A -3dB bandwidth of 300MHz together with 3ns multiplexing
time enable the full performance of the fastest component
video systems to be realized.
The EL4332 runs from standard ±5V supplies, and is
available in the narrow 16-pin small outline package.
Pinout
EL4332
[16-PIN SO (0.150”)]
TOP VIEW
Features
• 3ns A-B switching
• 300MHz bandwidth
• Fixed gain of 2, for cable driving
• > 650V/µs slew rate
• TTL/CMOS compatible switch
• Pb-free available
Applications
• RGB multiplexing
• Picture-in-picture
• Cable driving
• HDTV processing
• Switched gain amplifiers
• ADC input multiplexer
Ordering Information
PART NUMBER
PACKAGE
TAPE &
REEL PKG. DWG. #
EL4332CS
16-Pin SO (0.150”)
-
MDP0027
EL4332CS-T7 16-Pin SO (0.150”)
7”
MDP0027
EL4332CS-T13 16-Pin SO (0.150”) 13”
MDP0027
EL4332CSZ
16-Pin SO (0.150”)
-
(Note)
(Pb-Free)
MDP0027
EL4332CSZ-T7 16-Pin SO (0.150”)
7”
(Note)
(Pb-Free)
MDP0027
EL4332CSZ-T13 16-Pin SO (0.150”) 13”
(Note)
(Pb-Free)
MDP0027
NOTE: Intersil Pb-free products employ special Pb-free material
sets; molding compounds/die attach materials and 100% matte tin
plate termination finish, which is compatible with both SnPb and
Pb-free soldering operations. Intersil Pb-free products are MSL
classified at Pb-free peak reflow temperatures that meet or exceed
the Pb-free requirements of IPC/JEDEC J Std-020B.
Demo Board
A demo PCB is available for this product.
1
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
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