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 19-2264; Rev 0; 12/01
MAX3277 Evaluation Kit
General Description
The MAX3277 evaluation kit (EV kit) allows complete evaluation of the MAX3277 transimpedance amplifier. The EV kit includes a circuit that emulates the highspeed, zero-to-peak current input signal that would be produced by a photodiode. The kit also includes a calibration circuit that allows accurate bandwidth and jitter measurements. The MAX3277 EV kit is fully assembled and tested. o Fully Assembled and Tested o Includes Photodiode Emulation Circuit o Includes Calibration Circuit for Accurate Bandwidth and Jitter Measurements
Features
Evaluates: MAX3277
Component List
DESIGNATION C1 C2 C5-C9 C11, C12 J1-J5 J8 L1 R1, R6 R2, R5 R3, R4, R7, R8 TP1, TP2, J6, J7 U1 None None QTY 1 1 5 2 5 1 1 2 2 4 4 1 1 1 DESCRIPTION 0.01F 10% ceramic capacitor (0402) 10F 10% tantalum capacitor 0.1F 10% ceramic capacitors (0402) 1000pF 10% ceramic capacitors (0402) SMA connectors, edge mount (round contact) 1 x 2-pin header (0.1in center) 56nH inductor Coilcraft 0805CS-560XKBC 49.9 1% resistors (0402) 1k 1% resistors (0402) 499 1% resistors (0402) Test points MAX3277U/D die MAX3277 EV kit circuit board MAX3275/MAX3277 data sheet SUPPLIER AVX Coilcraft Murata Ventel PART MAX3277EVKIT
Ordering Information
TEMP RANGE 0C to +85C IC PACKAGE MAX3277UID Chip On-Board
Component Suppliers
PHONE 843-444-2863 408-224-8566 415-964-6321 800-950-8365 FAX 843-626-3123 408-224-6304 415-964-8165 512-794-0087
Note: Please indicate that you are using the MAX3277 when contacting these component suppliers.
________________________________________________________________ Maxim Integrated Products
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For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at 1-888-629-4642, or visit Maxim's website at www.maxim-ic.com.
MAX3277 Evaluation Kit Evaluates: MAX3277
Quick Start
1) Connect a signal source to IN (J3). Set the signal amplitude to 50mVP-P (corresponding to 50AP-P current into the TIA). This may require attenuation between the source and the MAX3277 EV kit. The signal should have a data rate of up to 2.125Gbps. 2) Apply 30A to TP1 using a constant current source to emulate the DC component of the input signal. 3) Connect OUT+ (J1) and OUT- (J2) to the 50 inputs of a high-speed oscilloscope. 4) Remove the shunt from jumper J8 to enable DC cancellation loop. 5) Connect a 3.3V supply to the VCC terminal (J6) and ground to the GND terminal (J7). 6) The differential signal at the oscilloscope should be approximately 165mVP-P. mount resistors have parasitic capacitance that reduces their impedance at frequencies above 1GHz. Changes to R4 and R7 must be evaluated using the calibration network.
Photodiode Emulation
Use the following procedure to emulate the high-speed current signal generated by a photodiode: 1) Select the desired optical power (PAVE in dBm) and extinction ratio (re). 2) Calculate the average current (IAVE in Amps). Set the DC current at TP1 to IAVE: 10(PAVE / 10) IAVE = 1000 ( = photodiode responsivity in A / W) 3) Calculate the AC signal current (lAC) and adjust the signal generator to obtain it: r - 1 IAC = 2IAVE e re + 1 For example: To emulate a photodiode with an average power of -16dBm and an extinction ratio of 10: 1) -16dBm optical power will produce 25A of average input current (assume photodiode responsivity of 1A/W). Set the DC current input to 25A at TP1. 2) The AC signal current is 2 IAVE (re - 1)/(re + 1) = 41A. To generate this current through the 1000 input resistors, set the signal source to produce an output level of 41A (1000) = 41mVP-P.
Detailed Description
The MAX3277 EV kit allows characterization of the MAX3277 TIA without a photodiode. The MAX3277 is designed to accept a DC-coupled input from a highspeed photodiode. Diode currents can have 10AP-P to 2mAP-P AC current with a DC component from 5A to 1mA. The high-speed current source of the photodiode is emulated on the EV kit using separate AC and DC paths. The AC signal is supplied from a standard 50 lab source that delivers power to an on-board termination resistor. A current is then generated from the voltage signal by a resistor with low stray capacitance. The effect of the DC photodiode current can be emulated by a current source at TP1. An isolation resistor prevents the DC source from loading the AC path. The values of the series-resistive elements, R4 and R7, have been selected carefully so that the bandwidth of the transimpedance amplifier is not altered. Surface-
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MAX3277 Evaluation Kit Evaluates: MAX3277
TP2
J6 VCC J7 GND
L1 56nH
VCC J4 CALIN C2 10F C1 0.01F VCC 1 TP1 2 C11 1000pF 5 R5 1k R7 499 R4 499 VCC GND GNDZ
C7 0.1F
C12 1000pF
R2 1k R8 499
R3 499
C8 0.1F
J5 CALOUT
R1 49.9
VCC VCCZ U1 FILTER OUT+ 9 7 4 C5 0.1F C6 0.1F PC BOARD FEATURES EMULATING CAPACITORS J8 J1 OUT+ J2 OUT-
MAX3277
C9 0.1F J3 IN R6 49.9
8
IN
OUT-
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Figure 1. MAX3277 EV Kit Schematic
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MAX3277 Evaluation Kit Evaluates: MAX3277
Figure 2. MAX3277 EV Kit Component Placement Guide-- Component Side
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MAX3277 Evaluation Kit Evaluates: MAX3277
Figure 3. MAX3277 EV Kit PC Board Layout--Component Side
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MAX3277 Evaluation Kit Evaluates: MAX3277
Figure 4. MAX3277 EV Kit PC Board Layout--Solder Side
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MAX3277 Evaluation Kit Evaluates: MAX3277
Figure 5. MAX3277 EV Kit PC Board Layout--Ground Plane
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MAX3277 Evaluation Kit Evaluates: MAX3277
Figure 6. MAX3277 EV Kit PC Board Layout--Power Plane
Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time.
8 _____________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 (c) 2001 Maxim Integrated Products Printed USA is a registered trademark of Maxim Integrated Products.


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