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PDF ISL59830 Data sheet ( Hoja de datos )

Número de pieza ISL59830
Descripción True Single Supply Video Driver
Fabricantes Intersil Corporation 
Logotipo Intersil Corporation Logotipo



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Data Sheet
August 15, 2005
ISL59830
FN7489.2
True Single Supply Video Driver
The ISL59830 is a revolutionary device that allows true single-
supply operation of video amplifiers. The device runs off a
single 3.3V supply and generates the required negative
voltage internally. This allows for DC-accurate coupling of
video onto a 75double-terminated line. SInce the buffers
have an integrated 6dB gain, the only external components
required are the 75termination resistors. An input reference
voltage can be supplied to shift the analog video level down
by an amount equal to the reference (typically 0.6V).
Ordering Information
PART NUMBER PACKAGE
TAPE &
REEL
PKG. DWG.#
ISL59830IA
16 Ld QSOP
-
M16.15A
ISL59830IA-T13 16 Ld QSOP
13”
M16.15A
ISL59830IAZ
(See Note)
16 Ld QSOP
(Pb-Free)
-
M16.15A
ISL59830IAZ-T13 16 Ld QSOP
(See Note)
(Pb-Free)
13”
M16.15A
NOTE: Intersil Pb-free plus anneal products employ special Pb-free
material sets; molding compounds/die attach materials and 100%
matte tin plate termination finish, which are RoHS compliant and
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-020.
Features
• Triple single-supply buffer
• Operates from single +3.3V supply
• No output DC blocking capacitor needed
• Fixed gain of 2 output buffer
• Output three-statable
• Enable/disable functions
• 50MHz 0.1dB bandwidth
• 300MHz -3dB bandwidth
• Pb-free plus anneal available (RoHS compliant)
Applications
• Driving video
Pinout
ISL59830
(16 LD QSOP)
TOP VIEW
RIN 1
GIN 2
BIN 3
REF 4
VEE 5
GND 6
VEEOUT 7
DGND 8
16 ROUT
15 GOUT
14 BOUT
13 VCC
12 EN
11 VCC
10 NC
9 DVCC
1
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
1-888-INTERSIL or 1-888-468-3774 | Intersil (and design) is a registered trademark of Intersil Americas Inc.
Copyright © Intersil Americas Inc. 2005. All Rights Reserved.
All other trademarks mentioned are the property of their respective owners.

1 page




ISL59830 pdf
ISL59830
Typical Performance Curves (Continued)
-30
-40
AV=+2
RL=500
-50
-60
-70 ENABLED
-80
-90 DISABLED
-100
-110
-120
100K
1M
10M
100M
1G
FREQUENCY (Hz)
FIGURE 5. CROSS TALK CHANNEL TO CHANNEL (TYPICAL)
-20
AV=+2
-30 RL=500
-40
-50
-60 ENABLED
-70
-80 DISABLED
-90
-100
100K
1M
10M
100M
1G
FREQUENCY (Hz)
FIGURE 6. INPUT TO OUTPUT ISOLATION vs FREQUENCY
120
AV=+2
100 RL=500
80
60
40
20
0
1 1.5 2 2.5 3 3.5
SUPPLY VOLTAGE (V)
FIGURE 7. SUPPLY CURRENT vs SUPPLY VOLTAGE
200
-3dB
160
120
AV=+2
RL=500
80
40
-0.1dB
0
27 47.5 68 88.5 109 129.5 150
TEMPERATURE (°C)
FIGURE 8. BANDWIDTH vs TEMPERATURE
95
AV=+2
RL=500
90
85
80
75
27
55.6
84.2 112.8 141.4
170
TEMPERATURE (°C)
FIGURE 9. SUPPLY CURRENT vs TEMPERATURE
100
10
1
0.1
0.01
10K
100K
1M
10M
100M
FREQUENCY (Hz)
FIGURE 10. OUTPUT IMPEDANCE vs FREQUENCY
5 FN7489.2
August 15, 2005

5 Page





ISL59830 arduino
ISL59830
Description of Operation and Application
Information
Theory Of Operation
The ISL59830 is a highly practical and robust marriage of
three high bandwidth, high speed, low power, rail-to-rail
voltage feedback amplifiers with a charge pump, to provide a
negative rail without an additional power supply. Designed to
operate with a single supply voltage range of from 0V to
3.3V, the ISL59830 eliminates the need for a split supply with
the incorporation of a charge pump capable of generating a
bottom rail as much as 1.6V below ground; for a 4.9V range
on a single 3.3V supply. This performance is ideal for NTSC
video with its negative-going sync pulses.
The Amplifier
The ISL59830 fabricated on a dielectrically isolated high
speed 5V Bi-CMOS process with 4GHz PNPs and NPN
transistor exceeding 20GHz - perfect for low distortion, low
power demand and high frequency circuits. While the
ISL59830 utilizes somewhat standard voltage mode
feedback topologies, there are many non-standard analog
features providing its outstanding bandwidth, rail-to-rail
operation, and output drive capabilities. The input signal
initially passes through a folded cascode, a topology
providing enhanced frequency response essentially by fixing
the base collector voltage at the junction of the input and
gain stage. The collector of each input device looks directly
into an emitter that is tied closely to ground through a
resistor and biased with a very stable DC source. Since the
voltage of this collector is "locked stable" the effective
bandwidth limiting of the Miller capacitance is greatly
reduced. The signal is then passed through a second fully-
realized differential gain stage and finally through a
proprietary common emitter output stage for improved rail-
to-rail output performance. The result is a highly-stable, low
distortion, low power, and high frequency amplifier capable
of driving moderately capacitive loads with near rail-to-rail
performance.
Input Output Range
The three amplifier channels have an input common mode
voltage range from 0.15V below the bottom rail to within
100mV of the positive supply, VS+ pin (Note: bottom rail is
established by the charge pump at negative one half the
positive supply). As the input signal moves outside the
specified range, the output signal will exhibit increasingly
higher levels of harmonic distortion. And of course, as load
resistance becomes lower, the current drive capability of the
device will be challenged and its ability to drive close to each
rail is reduced. For instance, with a load resistance of 1k
the output swing is within a 100mV of the rails, while a load
resistance of 150limits the output swing to within around
300mV of the rails.
Amplifier Output Impedance
To achieve near rail-to-rail performance, the output stage of
the ISL59830 uses transistors in the common emitter
configuration, typically producing higher output impedance
than the standard emitter follower output stage. The
exceptionally high open loop gain of the ISL59830 and local
feedback reduces output impedance to less than a 2at low
frequency. However, since output impedance of the device is
exponentially modulated by the magnitude of the open loop
gain, output impedance increases with frequency as the
open loop gain decreases with frequency. This inductive-like
effect of the output impedance is countered in the ISL59830
with proprietary output stage topology, keeping the output
impedance low over a wide frequency range and making it
possible to easily and effectively drive relatively heavy
capacitive loads.(See Figure 10).
IN+
BIAS
IN-
FIGURE 27.
11
OUT
FN7489.2
August 15, 2005

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