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PDF NCS2501 Data sheet ( Hoja de datos )

Número de pieza NCS2501
Descripción Feedback Op Amp
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No Preview Available ! NCS2501 Hoja de datos, Descripción, Manual

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NCS2501
1.1 mA 200 MHz Current
Feedback Op Amp with
Enable Feature
NCS2501 is a 1.1 mA 200 MHz current feedback monolithic
operational amplifier featuring high slew rate and low differential gain
and phase error. The current feedback architecture allows for a
superior bandwidth and low power consumption. This device features
an enable pin.
Features
−3.0 dB Small Signal BW (AV = +2.0, VO = 0.5 Vp−p) 200 MHz Typ
Slew Rate 450 V/ms
Supply Current 1.1 mA
Input Referred Voltage Noise 4.0 nV/ǸHz
THD −55 dB (f = 5.0 MHz, VO = 2.0 Vp−p)
Output Current 100 mA
Enable Pin Available
Pin Compatible with EL5160, MAX4180, OPA683
Pb−Free Packages are Available
Applications
Portable Video
Line Drivers
Radar/Communication Receivers
Set Top Box
NTSC/PAL/HDTV
3
Gain = +2
2 RF = 1.2kW
1 RL = 100W
VS = ±5V
VOUT = 0.5V
VS = ±5V
VOUT = 0.7V
0
−1
−2
−3
−4
−5
−6
0.01
VS = ±2.5V
VOUT = 2.0V
VS = ±5V
VOUT = 2.0V
VS = ±2.5V
VOUT = 0.7V
VS = ±2.5V
VOUT = 0.5V
0.1 1
10
FREQUENCY (MHz)
100
1000
Figure 1. Frequency Response:
Gain (dB) vs. Frequency Av = +2.0, RL = 100 W
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8
1
SO−8
D SUFFIX
CASE 751
MARKING
DIAGRAMS
8
N2501
ALYW
G
1
54
6
3
12
SC−70−6
(SC−88)
SQ SUFFIX
CASE 419B
6
YA1M
G
1
6
1
SOT23−6
(TSOP−6)
SN SUFFIX
CASE 318G
6
YA1YW
G
1
YA1, N2501 = NCS2501
A = Assembly Location
L = Wafer Lot
Y = Year
W = Work Week
M = Date Code
G = Pb−Free Package
SO−8 PINOUT
NC 1
−IN 2
+IN 3
VEE 4
+
8 EN
7 VCC
6 OUT
5 NC
(Top View)
SOT23−6/SC70−6 PINOUT
OUT 1
VEE 2
+IN 3
6 VCC
5 EN
4 −IN
(Top View)
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 13 of this data sheet.
© Semiconductor Components Industries, LLC, 2005
May, 2005 − Rev. 1
1
Publication Order Number:
NCS2501/D

1 page




NCS2501 pdf
NCS2501
DC ELECTRICAL CHARACTERISTICS (VCC = +5.0 V, VEE = −5.0 V, TA = −40°C to +85°C, RL = 100 W to GND, RF = 1.2 kW,
AV = +2.0, Enable is left open, unless otherwise specified).
Symbol
Characteristic
Conditions
Min Typ Max Unit
DC PERFORMANCE
VOS Offset Voltage
−4.0 "0.7 +4.0
mV
DVIO/DT
Input Offset Voltage
Temperature Coefficient
6.0 mV/°C
IIB
DIIB/DT
VIH
Input Bias Current
Input Bias Current
Temperature Coefficient
Input High Voltage (Enable)
(Note 4)
+Input (Non−Inverting), VO = 0 V
−Input (Inverting), VO = 0 V (Note 4)
+Input (Non−Inverting), VO = 0 V
−Input (Inverting), VO = 0 V
−4.0
−4.0
VCC−1.5 V
"2.0
"0.4
"40
"10
+4.0
+4.0
mA
nA/°C
V
VIL Input Low Voltage (Enable)
(Note 4)
VCC−3.5 V
V
INPUT CHARACTERISTICS
VCM
Input Common Mode Voltage
Range (Note 4)
CMRR
Common Mode Rejection
Ratio
RIN Input Resistance
CIN Differential Input
Capacitance
(See Graph)
+Input (Non−Inverting)
−Input (Inverting)
"3.0
50
"4.0
55
4.0
350
1.0
65
V
dB
MW
W
pF
OUTPUT CHARACTERISTICS
ROUT
VO
IO
Output Resistance
Output Voltage Swing
Output Current
POWER SUPPLY
VS Operating Voltage Supply
Range
"3.0
"60
0.02
"3.5
"100
10
W
V
mA
V
IS,ON
Power Supply Current −
Enabled
VO = 0 V
0.5 1.1 2.0
mA
IS,OFF
Power Supply Current −
Disabled
PSRR
Power Supply Rejection
Ratio
4. Guaranteed by design and/or characterization.
VO = 0 V
(See Graph)
0 0.11 0.3
50 60 70
mA
dB
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5

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NCS2501 arduino
NCS2501
18
12
6
0
100pF
−6
−12
VS = ±5V
−18 RF = 1.2kW
RL = 100W
−24 Gain= +2
47pF
10pF
−30
1
10 100
Frequency (MHz)
10M
1M
100k
10k
1k
1000
100
10
1
0.01
0.1
VS = ±5V
1 10 100
FREQUENCY (MHz)
1000
10k
Figure 23. Frequency Response vs. CL
Figure 24. Transimpedance (ROL) vs. Frequency
EN OUT
EN
OUT
Output Signal: Squarewave, 10MHz, 2VPP
Figure 25. Turn ON Time Delay
Horizontal: 4 ns / Div
Vertical: 10mV/Div
Output Signal: Squarewave, 10MHz, 2VPP
Figure 26. Turn OFF Time Delay
Horizontal: 4 ns / Div
Vertical: 10mV/Div
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