AD9300TE/883B AD [Analog Devices], AD9300TE/883B Datasheet - Page 6

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AD9300TE/883B

Manufacturer Part Number
AD9300TE/883B
Description
4 x 1 Wideband Video Multiplexer
Manufacturer
AD [Analog Devices]
Datasheet
AD9300
AD9300 APPLICATIONS
To ensure optimum performance from circuits using the AD9300,
it is important to follow a few basic rules that apply to all high
speed devices.
A large, low-impedance ground plane under the AD9300 is
critical. Generally, GROUND and GROUND RETURN con-
nections should be connected solidly to this plane. GROUND
pin connections are signal isolation grounds that are not
Figure 6. Test Circuit for Harmonic Distortion, Pulse
Response, T-Step Response and Disable Characteristics
Figure 2. 4 x 1 AD9300 Multiplexer with Buffered Output
Driving 75
Figure 3. Harmonic Distortion vs.
Frequency
Coaxial Cable
Figure 4. Output vs. Frequency
–6–
connected internally; they can be left unconnected, but there
may be some degradation in crosstalk rejection. GROUND RE-
TURN, on the other hand, serves as the internal ground refer-
ence for the AD9300 and, without exception, should be
connected to the ground plane.
The output stage of the unit is capable of driving a 2 k 10 pF
load. Larger capacitive loads may limit full power bandwidth
and increase t
ENABLE high-to-low transition and the instant the output
becomes a high impedance).
For applications such as driving cables (see Figure 2), output
buffers are recommended.
It is recommended that the AD9300 be soldered directly into
circuit boards rather than using socket assemblies. If sockets
must be used, individual pin sockets are preferred rather than a
socket assembly. A second requirement for proper high speed
design involves decoupling the power supply and
internal bias supply lines from ground to improve noise immu-
nity. Chip capacitors are recommended for connecting 0.1 F
and 0.01 F capacitors between ground and the V
(Pins 9 and 14) and the BYPASS connection (Pin 15).
Figure 7. Crosstalk Rejection Test Circuit
OFF
(the interval between the 50% point of the
Figure 5. Crosstalk vs. Frequency
S
supplies
REV. A

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