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EL2460CS

VIDEO AMPLIFIER, PDSO14

器件类别:模拟混合信号IC    消费电路   

厂商名称:Renesas(瑞萨电子)

厂商官网:https://www.renesas.com/

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器件参数
参数名称
属性值
是否无铅
含铅
是否Rohs认证
不符合
厂商名称
Renesas(瑞萨电子)
零件包装代码
SOIC
包装说明
SOP,
针数
14
Reach Compliance Code
not_compliant
ECCN代码
EAR99
其他特性
ALSO OPERATES WITH 4V TO 30V SINGLE SUPPLY
标称带宽
180000 kHz
商用集成电路类型
VIDEO AMPLIFIER
JESD-30 代码
R-PDSO-G14
JESD-609代码
e0
长度
8.65 mm
湿度敏感等级
2
信道数量
4
功能数量
4
端子数量
14
最高工作温度
85 °C
最低工作温度
-40 °C
封装主体材料
PLASTIC/EPOXY
封装代码
SOP
封装形状
RECTANGULAR
封装形式
SMALL OUTLINE
峰值回流温度(摄氏度)
240
认证状态
Not Qualified
座面最大高度
1.75 mm
最大供电电压 (Vsup)
15 V
最小供电电压 (Vsup)
2 V
表面贴装
YES
技术
BIPOLAR
温度等级
INDUSTRIAL
端子面层
Tin/Lead (Sn/Pb)
端子形式
GULL WING
端子节距
1.27 mm
端子位置
DUAL
处于峰值回流温度下的最长时间
NOT SPECIFIED
宽度
3.9 mm
文档预览
®
EL2260, EL2460
Data Sheet
January 1995, Rev B
FN7064
Dual/Quad 130MHz Current Feedback
Amplifiers
The EL2260/EL2460 are dual/quad
current feedback operational amplifiers
with -3dB bandwidth of 130MHz at a
gain of +2. Built using the Elantec proprietary monolithic
complementary bipolar process, these amplifiers use current
mode feedback to achieve more bandwidth at a given gain
than a conventional voltage feedback operational amplifier.
The EL2260/EL2460 are designed to drive a double
terminated 75Ω coax cable to video levels. Differential gain
and phase are excellent when driving both loads of 500Ω
(< 0.01%/< 0.01°) and double terminated 75Ω cables
(0.025%/0.1°).
The amplifiers can operate on any supply voltage from 4V
(±2V) to 33V (±16.5V), yet consume only 7.5mA per
amplifier at any supply voltage. Using industry standard
pinouts, the EL2260 is available in 8-pin PDIP and 8-pin SO
packages, while the EL2460 is available in 14-pin PDIP and
14-pin SO packages.
Elantec’s facilities comply with MIL-I-45208A and offer
applicable quality specifications. For information on Elantec’s
processing, see the Elantec document, QRA-1: Elantec’s
Processing—Monolithic Products.
Features
• 130MHz 3dB bandwidth
(A
V
= +2)
• 180MHz 3dB bandwidth
(A
V
= +1)
• 0.01% differential gain, R
L
= 500Ω
• 0.01° differential phase, R
L
= 500Ω
• Low supply current, 7.5mA per amplifier
• Wide supply range, ±2V to ±15V
• 80mA output current (peak)
• Low cost
• 1500V/µs slew rate
• Input common mode range to within 1.5V of supplies
• 35ns settling time to 0.1%
Applications
• Video amplifiers
• Cable drivers
• RGB amplifiers
• Test equipment amplifiers
• Current to voltage converter
Pinouts
EL2260
(8-PIN SO, PDIP)
TOP VIEW
EL2460
(14-PIN SO, PDIP)
TOP VIEW
Ordering Information
PART
NUMBER
EL2260CN
EL2260CS
EL2460CN
EL2460CS
TEMP. RANGE
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
PACKAGE
8-Pin PDIP
8-Pin SOIC
14-Pin PDIP
14-Pin SOIC
PKG. NO.
MDP0031
MDP0027
MDP0031
MDP0027
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. 2003. All Rights Reserved. Elantec is a registered trademark of Elantec Semiconductor, Inc.
All other trademarks mentioned are the property of their respective owners.
EL2260, EL2460
Absolute Maximum Ratings
(T
A
= 25°C)
Voltage between V
S
+ and V
S
- . . . . . . . . . . . . . . . . . . . . . . . . . .+33V
Voltage between +IN and -IN . . . . . . . . . . . . . . . . . . . . . . . . . . . .±6V
Current into +IN or -IN . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10mA
Internal Power Dissipation . . . . . . . . . . . . . . . . . . . . . . . See Curves
Operating Ambient Temperature Range . . . . . . . . . .-40°C to +85°C
Operating Junction Temperature
Plastic Packages . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 150°C
Storage Temperature Range . . . . . . . . . . . . . . . . . .-65°C to +150°C
Output Current . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±50mA
CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating and operation of the
device at these or any other conditions above those indicated in the operational sections of this specification is not implied.
IMPORTANT NOTE: All parameters having Min/Max specifications are guaranteed. Typical values are for information purposes only. Unless otherwise noted, all tests
are at the specified temperature and are pulsed tests, therefore: T
J
= T
C
= T
A
Open-Loop DC Electrical Specifications
PARAMETER
V
OS
DESCRIPTION
Input Offset Voltage
V
S
= ±15V, R
L
= 150Ω, T
A
= 25°C unless otherwise specified.
LIMITS
CONDITIONS
V
S
= ±5V, ±15V
TEMP
25°C
T
MIN
, T
MAX
MIN
TYP
2
MAX
10
15
10
0.5
5
10
5
25
35
50
55
0.2
5
5
75
95
0.2
5
5
500
250
500
250
1.5
3.0
2.5
±13.5
±3.5
±12
±11
±12
±13.5
1800
2000
mV
mV
µV/°C
µA
µA
µA
µA
dB
µA/V
µA/V
dB
µA/V
µA/V
kΩ
kΩ
kΩ
kΩ
MΩ
pF
V
V
V
V
V
UNITS
TC V
OS
+I
IN
Average Offset Voltage Drift (Note 1)
+Input Current
V
S
= ±5V, ±15V
Full
25°C
T
MIN
, T
MAX
-I
IN
-Input Current
V
S
= ±5V, ±15V
25°C
T
MIN
, T
MAX
CMRR
-ICMR
Common Mode Rejection Ratio
(Note 2)
-Input Current Common
Mode Rejection (Note 2)
Power Supply Rejection Ratio (Note 3)
-Input Current Power Supply Rejection
(Note 3)
Transimpedance (Note 4)
V
S
= ±5V, ±15V
V
S
= ±5V, ±15V
Full
25°C
T
MIN
, T
MAX
Full
25°C
T
MIN
, T
MAX
PSRR
-IPSR
R
OL
V
S
= ±15V
R
L
= 400Ω
V
S
= ±5V
R
L
= 150Ω
25°C
T
MIN
, T
MAX
25°C
T
MIN
, T
MAX
Full
25°C
+R
IN
+C
IN
CMIR
+Input Resistance
+Input Capacitance
Common Mode Input Range
V
S
= ±15V
V
S
= ±5V
25°C
25°C
25°C
T
MIN
, T
MAX
25°C
V
O
Output Voltage Swing
R
L
= 400Ω,
V
S
=±15V
R
L
= 150Ω,
V
S
=±15V
R
L
= 150Ω,
V
S
=±5V
25°C
T
MIN
, T
MAX
25°C
±3.0
±2.5
60
±3.7
V
V
I
SC
Output Short Circuit Current (Note 5)
V
S
= ±5V, V
S
= ±15V
100
150
mA
2
EL2260, EL2460
Open-Loop DC Electrical Specifications
PARAMETER
I
S
DESCRIPTION
Supply Current (Per Amplifier)
V
S
= ±15V, R
L
= 150Ω, T
A
= 25°C unless otherwise specified.
(Continued)
LIMITS
CONDITIONS
V
S
= ±15V
TEMP
25°C
T
MIN
, T
MAX
V
S
= ±5V
25°C
T
MIN
, T
MAX
R
OL
NOTES:
1. Measured from T
MIN
to T
MAX
.
2. V
CM
= ±10V for V
S
= ±15V and T
A
= Full
V
CM
= ±3V for V
S
= ±5V and T
A
= 25°C
V
CM
= ±2V for V
S
= ±5V and T
A
= T
MIN
, T
MAX
3. The supplies are moved from ±2.5V to ±15V.
4. The supplies are moved from ±2.5V to ±15V.
5. A heat sink is required to keep junction temperature below absolute maximum when an output is shorted.
6. The supplies are moved from ±2.5V to ±15V.
Transimpedance (Note 6)
V
S
= ±15V
R
L
= 400Ω
25°C
500
2000
5.4
MIN
TYP
7.5
MAX
11.0
11.0
8.5
8.5
mA
mA
mA
mA
kΩ
UNITS
Closed-Loop AC Electrical Specifications
V
S
= ±15V, A
V
= +2, R
F
= 560Ω, R
L
= 150Ω, T
A
= 25°C unless otherwise noted
LIMITS
UNITS
MAX
MHz
MHz
MHz
MHz
V/µs
V/µs
PARAMETER
BW
DESCRIPTION
-3dB Bandwidth (Note 1)
TEST CONDITIONS
V
S
= ±15V, A
V
= +2
V
S
= ±15V, A
V
= +1
V
S
= ±5V, A
V
= +2
V
S
= ±5V, A
V
= +1
MIN
TYP
130
180
100
110
SR
Slew Rate (Note 1) (Note 2)
R
L
= 400Ω
R
F
= 1kΩ, R
G
= 110Ω
R
L
= 400Ω
1000
1500
1500
t
R
, t
F
t
PD
OS
t
S
Rise Time, Fall Time (Note 1)
Propagation Delay (Note 1)
Overshoot (Note 1)
0.1% Settling Time (Note 1)
V
OUT
= ±500mV
2.7
3.2
ns
ns
%
ns
V
OUT
= ±500mV
V
OUT
= ±10V
A
V
= -1, R
L
= 1k
0
35
dG
Differential Gain (Note 1)(Note 3)
R
L
= 150Ω
R
L
= 500Ω
0.025
0.006
0.1
0.005
%
%
deg (°)
deg (°)
dP
Differential Phase (Note 1)(Note 3)
R
L
= 150Ω
R
L
= 500Ω
NOTES:
1. All AC tests are performed on a “warmed up” part, except for Slew Rate, which is pulse tested.
2. Slew Rate is with V
OUT
from +10V to -10V and measured at the 25% and 75% points.
3. DC offset from -0.714V through +0.714V, AC amplitude 286mV
P-P
, f = 3.58MHz.
3
EL2260, EL2460
Typical Performance Curves
Non-Inverting Frequency
Response (Gain)
Non-Inverting Frequency
Response (Phase)
Frequency Response
for Various R
L
Inverting Frequency
Response (Gain)
Inverting Frequency
Response (Phase)
Frequency Response for
Various R
F
and R
G
3dB Bandwidth vs Supply Voltage
for A
V
= -1
Peaking vs Supply Voltage
for A
V
= -1
3dB Bandwidth vs
Temperature for A
V
= - 1
4
EL2260, EL2460
Typical Performance Curves
3dB Bandwidth vs Supply
Voltage for A
V
= +1
(Continued)
Peaking vs Supply Voltage
for A
V
= +1
3dB Bandwidth vs Temperature
for A
V
= +1
3dB Bandwidth vs Supply
Voltage for A
V
= +2
Peaking vs Supply Voltage
for A
V
= +2
3dB Bandwidth vs Temperature
for A
V
= +2
3dB Bandwidth vs Supply
Voltage for A
V
= +10
Peaking vs Supply Voltage
for A
V
= +10
3dB Bandwidth vs Temperature
for A
V
= +10
5
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