MAX4186ESD Maxim Integrated Products, MAX4186ESD Datasheet - Page 18

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MAX4186ESD

Manufacturer Part Number
MAX4186ESD
Description
Op Amps Integrated Circuits (ICs)
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX4186ESD

Number Of Channels
4
Common Mode Rejection Ratio (min)
50 dB
Input Offset Voltage
1.5 mV
Operating Supply Voltage
5 V
Maximum Power Dissipation
667 mW
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
SOIC-14 Narrow
Maximum Dual Supply Voltage
+/- 5.5 V
Minimum Operating Temperature
- 40 C

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX4186ESD
Manufacturer:
MAXIM/美信
Quantity:
20 000
Single/Dual/Quad, 270MHz, 1mA, SOT23,
Current-Feedback Amplifiers with Shutdown
Figure 4a. Inverting Gain Configuration
Figure 4b. Noninverting Gain Configuration
18
The MAX4180–MAX4187 have a very low, 2nV/√Hz
noise voltage. The current noise at the positive input
(i
input is 5pA/√Hz.
An example of the DC error calculations, using the
MAX4180 typical data and typical operating circuit
where R
R
Calculating the total output noise in a similar manner
yields:
With a 200MHz system bandwidth, this calculates to
102µV
sigma value).
V
V
n+
S
OUT
OUT
V
V
= 37.5Ω, gives the following:
) is 4pA/√Hz, and the current noise at the inverting
V
IN
V
IN
e
e
OUT
______________________________________________________________________________________
OUT
n(OUT)
n(OUT)
RMS
= [1+ (R
= -(R
4.1mV
F
1x10
R
R
F
S
S
(approximately 612µVp-p, choosing the six-
R
R
/ R
= R
F
T
T
/ R
G
1 1
4.8nV/ Hz
) x V
G
6
) V
G
IN
IN
x37.5
R
R
= 1.2kΩ (R
G
G
4x10
2x10
2x10
12
9
x37.5
2
6
R
R
F
F
F
x 255
2
R
MAX4180–MAX4187
MAX4180–MAX4187
5x10
G
1.5x10
= 600Ω) and
R
R
12
O
O
x255
3
V
V
x 1 1
OUT
OUT
2
The MAX4180–MAX4187 are well suited to drive coaxi-
al transmission lines when the cable is terminated at
both ends, as shown in Figure 6. Cable frequency
response can cause variations in the signal’s flatness.
See Table 1 for optimum R
The MAX4180–MAX4187 are optimized for AC perfor-
mance. They are not designed to drive highly capaci-
tive loads. Reactive loads decrease phase margin and
may produce excessive ringing and oscillation. Figure
7a shows a circuit that eliminates this problem. Placing
the small (usually 5Ω to 22Ω) isolation resistor, R
before the reactive load prevents ringing and
oscillation. At higher capacitive loads, the interaction of
the load capacitance and isolation resistor controls AC
performance. Figures 7b and 7c show the MAX4180
and MAX4181 frequency response with a 47pF capaci-
Figure 6. Video Line Driver
Figure 5. Output Offset Voltage
VIDEO
IN
75 CABLE
820
75
R
G
0.1µF
0.1µF
R
R
G
S
MAX4180
VIDEO LINE DRIVER
I
I
B
B
820
+5V
-5V
-
+
R
F
Driving Capacitive Loads
F
and R
R
F
MAX4180–MAX4187
Video Line Driver
75
G
values.
75 CABLE
V
OUT
75
VIDEO
OUT
S
,

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