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ADD8704ACPZ-REEL7 |ADD8704ACPZREEL7ADIN/a384avai16 V Quad Operational Amplifier
ADD8704ARUADN/a2000avai16 V Quad Operational Amplifier


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ADD8704ACPZ-REEL7-ADD8704ARU
16 V Quad Operational Amplifier
16 V Quad
Operational Amplifier

FEATURES
Single-supply operation: 4.5 V to 16.5 V
Upper/lower buffers swing to VDD/GND
Continuous output current: 35 mA
VCOM peak output current: 250 mA
Offset voltage: 15 mV
Slew rate: 6 V/µs
Unity gain stable with large capacitive loads
Supply current: 700 µA per amplifier
Drop-in replacement for EL5420
APPLICATIONS
TFT LCD monitor panels
TFT LCD notebook panels
Communications equipment
Portable instrumentation
Electronic games
GENERAL DESCRIPTION

The ADD8704 is a single-supply quad operational amplifier that
has been optimized for today’s low cost TFT LCD notebook and
monitor panels. Output channels A and D swing to the rail for
use as end-point gamma references. Output channels B and C
provide high continuous and peak current drive for use as VCOM
or repair amplifiers; they can also be used as midpoint gamma
references. All four amplifiers have excellent transient response
and have high slew rate and capacitive load drive capability. The
ADD8704 is specified over the –40°C to +85°C temperature
range and is available in either a 14-lead TSSOP or a 16-lead
LFCSP package for thin, portable applications.
Table 1. Input/Output Characteristics
Rev.0

PIN CONFIGURATIONS
OUT B
–IN B
+IN BV–
+IN A
–IN A
OUT A
OUT C
–IN C
+IN C
+IN D
–IN D
OUT D
00001-0-0-1

Figure 1. 14-Lead TSSOP (RU Suffix) –IN D+IN DV–+IN C
–IN A1
+IN A2
V+3
–IN
OUT B
OUT C
N C
+IN B4
OUT A
OUT D
ADD8704
TOP VIEW
00001-0-002

Figure 2. 16-Lead CSP (CP Suffix)
TABLE OF CONTENTS
Electrical Characteristics.................................................................3
Absolute Maximum Ratings............................................................5
Typical Performance Characteristics.............................................6
Application Information................................................................12
Theory..........................................................................................12
Input.............................................................................................12
Output..........................................................................................12
Important Note...........................................................................12
Outline Dimensions.......................................................................14
Ordering Guide..........................................................................14
REVISION HISTORY

Revision 0: Initial Version
ELECTRICAL CHARACTERISTICS
Table 2. VS = 16 V, VCM = VS/2, TA @ 25°C, unless otherwise noted
ELECTRICAL CHARACTERISTICS (CONTINUED)
ABSOLUTE MAXIMUM RATINGS
Table 3. ADD8704 Stress Ratings1
Table 4. Package Characteristics


1 Stresses above those listed under Absolute Maximum Ratings may cause
permanent damage to the device. This is a stress rating only; functional
operation of the device at these or any other conditions above those
indicated in the operational sections of this specification is not implied.
Exposure to absolute maximum rating conditions for extended periods may
affect device reliability.
2 θJA is specified for worst-case conditions, i.e., θJA is specified for devices
soldered onto a circuit board for surface-mount packages.
3 DAP is soldered down to PCB.
ESD CAUTION

ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000 V readily accumulate on the
human body and test equipment and can discharge without detection. Although this part features proprietary
ESD protection circuitry, permanent damage may occur on devices subjected to high energy electrostatic
discharges. Therefore, proper ESD precautions are recommended to avoid performance degradation or loss of
functionality.
TYPICAL PERFORMANCE CHARACTERISTICS
00001-0-003INPUT OFFSET VOLTAGE (mV)
QUANTITY
OF AMP
IFIE–7–5–3–113579110
600

Figure 3. Input Offset Voltage, VS = 16 V
TCVOS (µV/°C)
QUANTITY
OF AMP
IFIE
00001-0-0040100102030405060708090

Figure 4. Input Offset Voltage Drift, VS = 16 V
TEMPERATURE (°C)
INP
T BIAS
CURRE
NT (nA)
00005-0-005

Figure 5. Input Bias Current vs. Temperature
COMMON-MODE VOLTAGE (V)
OFFSET VOLTA
GE (4–10810121416
00001-0-006

Figure 6. Offset Voltage vs. Common-Mode Voltage
TEMPERATURE (°C)
INP
T BIAS
CURRE
NT (nA)
00001-0-007

Figure 7. Input Bias Current vs. Temperature
TEMPERATURE (°C)
INP
T OFFS
CURRE
NT (nA)
00001-0-006

Figure 8. Input Offset Current vs. Temperature
LOAD CURRENT (mA)
OUTPUT VOLTAGE (
10k
100k
00001-0-009

Figure 9. Channel A Output Voltage vs. Load Current
LOAD CURRENT (mA)

TPU
VOLTA
E (
10k
00001-0-010

Figure 10. Channel B Output Voltage vs. Load Current
LOAD CURRENT (mA)

TPU
VOLTA
E (
10k
00001-0-011

Figure 11. Channel C Output Voltage vs. Load Current
LOAD CURRENT (mA)

TPU
VOLTA
E (
100k
10k
00001-0-010

Figure 12. Channel D Output Voltage vs. Load Current
LOAD CURRENT (mA)

TPU
VOLTA
E (
10k
00001-0-013

Figure 13. Output Source Voltage vs. Load Current, All Channels
LOAD CURRENT (mA)

OUTPUT VOLTAGE (mV)
10k
00001-0-014

Figure 14. Output Sink Voltage vs. Load Current, All Channels
TEMPERATURE (°C)
OUTPUT VOLTAGE (
00001-0-015

Figure 15. Output Source Voltage vs. Temperature
TEMPERATURE (°C)
OUTPUT VOLTAGE (V)
00001-0-016

Figure 16. Output Sink Voltage vs. Temperature
SUPPLY VOLTAGE (V)
CURRE
NT P
AMP
IFIE
R (mA)4
00001-0-017

Figure 17. Supply Current vs. Supply Voltage
TEMPERATURE (°C)
PPLY C
PER
PLIFIER
00001-0-018

Figure 18. Supply Current vs. Temperature
FREQUENCY (Hz)
GAIN (–20
100k10k1M10M100M
SE SH
IFT (
egrees)

Figure 19. Frequency vs. Gain and Shift
FREQUENCY (Hz)
GAIN (
10k100k1M10M100M
SE SH
IFT (
egrees)

Figure 20. Frequency vs. Gain and Shift
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