ISL59440IAZ Intersil, ISL59440IAZ Datasheet - Page 9

IC AMP MULTIPLEX 400MHZ 16-QSOP

ISL59440IAZ

Manufacturer Part Number
ISL59440IAZ
Description
IC AMP MULTIPLEX 400MHZ 16-QSOP
Manufacturer
Intersil
Datasheet

Specifications of ISL59440IAZ

Applications
4:1 Multiplexer-Amplifier
Number Of Circuits
1
-3db Bandwidth
400MHz
Slew Rate
1470 V/µs
Current - Supply
14.5mA
Current - Output / Channel
130mA
Mounting Type
Surface Mount
Package / Case
16-QSOP
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ISL59440IAZ
Manufacturer:
INTERSIL
Quantity:
20 000
Application Circuits
Application Information
General
The ISL59440 is a 4:1 mux that is ideal as a matrix element
in high performance switchers and routers. The ISL59440 is
optimized to drive 5pF in parallel with a 500Ω load. The
capacitance can be split between the PCB capacitance and
an external load capacitance. Its low input capacitance and
high input resistance provides excellent 50Ω or 75Ω
terminations.
Parasitic Effects on Frequency Performance
CAPACITANCE AT THE INVERTING INPUT
The AC performance of current-feedback amplifiers in the
non-inverting gain configuration is strongly effected by stray
capacitance at the inverting input. Stray capacitance from
the inverting input pin to the output (C
increase gain peaking and bandwidth. Large values of either
capacitance can cause oscillation. The ISL59440 has been
optimized for a 0.4pF to 0.7pF capacitance (C
Capacitance (C
achieve optimum performance the feedback network
resistor(s) must be placed as close to the device as possible.
Trace lengths greater than 1/4 inch combined with resistor
pad capacitance can result in inverting input to ground
capacitance approaching 1pF. Inverting input and output
F
) to the output should be minimized. To
V
IN
V
IN
9
50Ω
50Ω
F
), and to ground (C
0.4pF < C
FIGURE 25A. GAIN OF 1 APPLICATION CIRCUIT
FIGURE 25B. GAIN OF 2 APPLICATION CIRCUIT
0.6pF
0.4pF < C
511Ω
0.6pF
G
).
G
PC BOARD
CAPACITANCE
< 0.7pF
C
G
332Ω
+
-
g
PC BOARD
CAPACITANCE
C
< 0.7pF
C
511Ω
F
+
-
G
G
ISL59440
),
*C
1.6pF
L
C
traces should not run parallel to each other. Small size
surface mount resistors (604 or smaller) are recommended.
CAPACITANCE AT THE OUTPUT
The output amplifier is optimized for capacitance to ground
(C
causes higher peaking with an increase in bandwidth. The
optimum range for most applications is ~1.0pF to ~6pF. The
optimum value can be achieved through a combination of
PC board trace capacitance (C
(C
pin capacitance is to minimize the trace length (C
next component, and include a discrete surface mount
capacitor (C
FEEDBACK RESISTOR VALUES
The AC performance of the output amplifier is optimized with
the feedback resistor network (R
recommended in the application circuits. The amplifier
bandwidth and gain peaking are directly effected by the
value(s) of the feedback resistor(s) in unity gain and gain >1
configurations. Transient response performance can be
tailored simply by changing these resistor values. Generally,
lower values of R
peaking. This has the effect of decreasing rise/fall times and
increasing overshoot.
= C
T
*C
C
1.6pF
L
OUT)
L
T
T
) directly on the output pin. Increased capacitance
= C
+ C
T
. A good method to maintain control over the output
OUT
+ C
*C
C
C
L
T
OUT
C
0pF
OUT
: TRACE CAPACITANCE
: TOTAL LOAD CAPACITANCE
OUT
OUT
: OUTPUT CAPACITANCE
C
3.9pF
OUT
) directly at the output pin.
F
and R
R
L
V
= 500Ω
R
OUT
G
L
V
= 500Ω
OUT
increase bandwidth and gain
T
) and an external capacitor
F
, R
G
) values
October 10, 2007
T
) to the
FN6162.2

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