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EL5104 PDF 데이터시트 : 부품 기능 및 핀배열

부품번호 EL5104
기능 700MHz Slew Enhanced VFA
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EL5104 데이터시트, 핀배열, 회로
®
PRELIMINARY
EL5104, EL5105, EL5204, EL5205, EL5304
Data Sheet
May 3, 2004
FN7332
700MHz Slew Enhanced VFA
The EL5104, EL5105, EL5204,
EL5205, and EL5304 represent high-
speed voltage feedback amplifiers
based on the current feedback amplifier architecture. This
gives the typical high slew rate benefits of a CFA family
along with the stability and ease of use associated with the
VFA type architecture. This family is available in single, dual,
and triple versions, with 200MHz, 400MHz, and 700MHz
versions. These are all available in single, dual and triple
versions. This family operates on single 5V or ±5V supplies
from minimum supply current. The EL5104 and EL5204 also
feature an output enable function, which can be used to put
the output in to a high-impedance mode. This enables the
outputs of multiple amplifiers to be tied together for use in
multiplexing applications.
Ordering Information
PART
NUMBER
PACKAGE TAPE & REEL PKG. DWG. #
EL5104IS
8-Pin SO
-
MDP0027
EL5104IS-T7
8-Pin SO
7” MDP0027
EL5104IS-T13 8-Pin SO 13” MDP0027
EL5104IW-T7 6-Pin SOT-23 7” (3K pcs)
MDP0038
EL5104IW-T7A 6-Pin SOT-23 7” (250 pcs)
MDP0038
EL5105IC-T7 5-Pin SC-70 7” (3K pcs)
P5.049
EL5105IC-T7A 5-Pin SC-70 7” (250 pcs)
P5.049
EL5105IW-T7 5-Pin SOT-23
EL5105IW-T7A 5-Pin SOT-23
EL5204IY
10-Pin MSOP
EL5204IY-T7 10-Pin MSOP
EL5204IY-T13 10-Pin MSOP
EL5205IS
8-Pin SO
EL5205IS-T7
8-Pin SO
EL5205IS-T13 8-Pin SO
EL5205IY
8-Pin MSOP
EL5205IY-T7 8-Pin MSOP
7” (3K pcs)
7” (250 pcs)
-
7”
13”
-
7”
13”
-
7”
MDP0038
MDP0038
MDP0043
MDP0043
MDP0043
MDP0027
MDP0027
MDP0027
MDP0043
MDP0043
EL5205IY-T13
EL5304IU
EL5304IU-T7
EL5304IU-T13
8-Pin MSOP
16-Pin QSOP
16-Pin QSOP
16-Pin QSOP
13”
-
7”
13”
MDP0043
MDP0040
MDP0040
MDP0040
Features
• Specified for 5V or ±5V applications
• Power-down to 17µA
• -3dB bandwidth = 700MHz
• ±0.1dB bandwidth = 45MHz
• Low supply current = 9.5mA
• Slew rate = 3000V/µs
• Low offset voltage = 10mV max
• Output current = 160mA
• AVOL = 1400
• Diff gain/phase = 0.01%/0.02°C
Applications
• Video amplifiers
• PCMCIA applications
• A/D drivers
• Line drivers
• Portable computers
• High speed communications
• RGB applications
• Broadcast equipment
• Active filtering
1 CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
1-888-INTERSIL or 321-724-7143 | Intersil (and design) is a registered trademark of Intersil Americas Inc.
Copyright © Intersil Americas Inc. 2004. All Rights Reserved. Elantec is a registered trademark of Elantec Semiconductor, Inc.
All other trademarks mentioned are the property of their respective owners.




EL5104 pdf, 반도체, 판매, 대치품
EL5104, EL5105, EL5204, EL5205, EL5304
Closed Loop AC Electrical Specifications VS = +5V, GND = 0V, TA = 25°C, VCM = +1.5V, VOUT = +1.5V, VCLAMP = +5V,
VENABLE = +5V, AV = +1, RF = 0, RL = 150to GND pin, unless otherwise specified.
PARAMETER
DESCRIPTION
CONDITIONS
MIN TYP MAX UNIT
BW
SR
tR,tF
OS
-3dB Bandwidth (VOUT = 200mVP-P)
Slew Rate
Rise Time, Fall Time
Overshoot
VS = ±5V, AV = 1, RF = 0
RL = 150, VOUT = -2.5V to +2.5V
±0.1V step
±0.1V step
2000
700
3000
0.4
10
5000
MHz
V/µs
ns
%
tPD Propagation Delay
tS 0.1% Settling Time
dG Differential Gain
dP Differential Phase
eN Input Noise Voltage
iN Input Noise Current
tDIS Disable Time
tEN Enable Time
IEN Enable Pin Current
±0.1V step
VS = ±5V, RL = 500, AV = 1, VOUT = ±2.5V
AV = 2, RL = 150, VINDC = -1 to +1V
AV = 2, RL = 150, VINDC = -1 to +1V
f = 10kHz
f = 10kHz
Enabled, VEN = 0V
Disabled, VEN = 5V
-1
5
0.4
7
0.01
0.02
10
54
180
650
ns
ns
%
°
nV/Hz
pA/Hz
ns
ns
1 µA
25 µA
Typical Performance Curves
JEDEC JESD51-7 HIGH EFFECTIVE THERMAL
CONDUCTIVITY TEST BOARD
1.2
1 1.087W
0.8
0.6
543mW
0.4
0.2
θJA =M11S5O°CP/8W/10
θJAS=O23T02°3C-5/W/6
0
0 25 50 75 85 100 125 150
AMBIENT TEMPERATURE (°C)
FIGURE 1. PACKAGE POWER DISSIPATION vs AMBIENT
TEMPERATURE
JEDEC JESD51-7 HIGH EFFECTIVE THERMAL
CONDUCTIVITY TEST BOARD
1.4
1.2 1.136W
1 1.116W
SO8
θJA=110°C/W
0.8
QSOP16
0.6 θJA=112°C/W
0.4
0.2
0
0 25 50 75 85 100 125 150
AMBIENT TEMPERATURE (°C)
FIGURE 2. PACKAGE POWER DISSIPATION vs AMBIENT
TEMPERATURE
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