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MAX3266(1999) 데이터 시트보기 (PDF) - Maxim Integrated

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MAX3266 Datasheet PDF : 8 Pages
1 2 3 4 5 6 7 8
1.25Gbps/2.5Gbps, 3V to 5.5V, Low-Noise
Transimpedance Preamplifiers for LANs
General Description
The MAX3266 is a transimpedance amplifier designed
for 1.25Gbps fiber optic applications. Figure 2 is a func-
tional diagram of the MAX3266, which comprises a trans-
impedance amplifier, a voltage amplifier, an output
buffer, an output filter, and a DC cancellation circuit.
The MAX3267, a transimpedance amplifier designed
for 2.5Gbps fiber optic applications, shares similar
architecture with the MAX3266.
2.00
1.85
1.70
1.55
1.40
1.25
1.10
0.95
0.80
0.65
0.50
0
1
2
3
4
5
REVERSE BIAS (V)
Figure 1. Typical Photodiode Capacitance vs. Bias Voltage
Transimpedance Amplifier
The signal current at the input flows into the summing
node of a high-gain amplifier. Shunt feedback through
RF converts this current to a voltage with gain of approx-
imately 2.2k(1.0kfor MAX3267). Schottky diodes
clamp the output voltage for large input currents, as
shown in Figure 3.
Voltage Amplifier
The voltage amplifier converts single-ended signals to
differential signals and introduces a voltage gain.
Output Buffer
The output buffer provides a reverse-terminated volt-
age output. The buffer is designed to drive a 100dif-
ferential load between OUT+ and OUT-. The output
current is divided between internal, 50load resistors
and the external load resistor. In the typical operating
circuit, this creates a voltage divider with gain of 1/2.
The MAX3266 can also be terminated with higher out-
put impedances, which increases gain and output volt-
age swing.
For optimum supply-noise rejection, the MAX3266
should be terminated with a differential load. If a single-
ended output is required, the unused output should be
similarly terminated. The MAX3266 will not drive a DC-
coupled, 50grounded load.
IN
VCC
1.5k
FILTER
RF
VOLTAGE
TRANSIMPEDANCE AMPLIFIER
AMPLIFIER
MAX3266
OUTPUT
BUFFER 50
50
OUTPUT
FILTER
OUT+
OUT-
LOWPASS FILTER
VCC
GND
DISABLE
DC CANCELLATION
CIRCUIT
Figure 2. MAX3266 Functional Diagram
_______________________________________________________________________________________ 5

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