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dc1765af

DEMO MANUAL DC1765A

Description

LTC6957-1/LTC6957-2 

Low Phase Noise, Dual LVPECL or LVDS  

Output Buffer/Driver/Logic Converter

Demonstration Circuit 1765A features the 

LTC

®

6957-1

/

LTC6957-2

,  a  low  phase  noise,  dual  LVPECL  or  LVDS 

output buffer/driver/logic converter.
The DC1765A provides 0.5" spaced SMA connectors for 

the differential inputs and outputs. The inputs are termi-

nated to on-board 50Ω resistors. The LVPECL outputs 

of the DC1765A-A are individually biased through 130Ω 

resistors to ground and then AC-coupled. The transmis-

sion lines are 50Ω, making the outputs suitable to drive 

50Ω  input  impedance  instruments.  The  LVDS  outputs 

of the DC1765A-B are terminated with 100Ω differential 

and  are  DC-coupled.  The  DC1765A  allows  the  user  to 

take advantage of the shutdown and bandwidth selection 

features of the LTC6957. The DC1765A can operate with 

a single-ended or differential sine wave or square-wave 

input  signal.  Supply  the  DC1765A  with 3.3V  and  it  is 

ready to function. The DC1765A offers extra component 

population options to make it compatible with different 

logic signal types.
Design  files  for  this  circuit  board  are  available  at  

http://www.linear.com/demo

L

, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks of Linear 

Technology Corporation. All other trademarks are the property of their respective owners.

Figure 1. DC1765A Inputs and Outputs

Summary of Contents for DC1765A

Page 1: ...rive 50Ω input impedance instruments The LVDS outputs of the DC1765A B are terminated with 100Ω differential and are DC coupled The DC1765A allows the user to take advantage of the shutdown and bandwidth selection features of the LTC6957 The DC1765A can operate with a single ended or differential sine wave or square wave input signal Supply the DC1765A with 3 3V and it is ready to function The DC1...

Page 2: ...of the LTC6957 4 Configure the input bandwidth of the LTC6957 with the use of FILTA JP1 and FILTB JP2 jumpers Follow the instructions given in the LTC6957 data sheet to choose the correct bandwidth given an input signal 5 ShutdownanunusedoutputbyusingjumperSD1 JP3 to shutdown OUT1 or jumper SD2 JP4 to shutdown OUT2 DC1765A Reconfiguration The DC1765A is flexible and allows the connectivity of a va...

Page 3: ...e 1 DC1765A Assembly Options ASSEMBLY VERSION PART NUMBER OUTPUT TYPE DC1765A A LTC6957HMS 1 LVPECL DC1765A B LTC6957HMS 2 LVDS Layout Top Layer The top metal layer of the DC1765A is shown here as an example of good PCB layout for the LTC6957 1 LTC6957 2 ...

Page 4: ... R6 R11 R14 RES OPT 0603 OPT 9 2 R7 R15 RES CHIP 49 9Ω 1 0603 VISHAY CRCW060349R9FKEA 10 4 R16 R17 R18 R19 RES CHIP 330k 1 0603 VISHAY CRCW0603330KFKEA 11 4 SHUNTS FOR JP1 JP4 SHUNT 079 CENTER SAMTEC 2SN BK G 12 4 STAND OFF NYLON 0 500 KEYSTONE 8833 SNAP ON DC1765A A 1 1 DC1765A GENERAL BOM DC1765A 2 4 Z1 Z2 Z3 Z4 CAP X7R 0 01µF 50V 0603 NIC NMC0603X7R103K50TRP 3 4 R1 R2 R3 R4 RES CHIP 130Ω 0603 V...

Page 5: ...DESIGN A CIRCUIT THAT MEETS CUSTOMER SUPPLIED SPECIFICATIONS HOWEVER IT REMAINS THE CUSTOMER S RESPONSIBILITY TO VERIFY PROPER AND RELIABLE OPERATION IN THE ACTUAL APPLICATION COMPONENT SUBSTITUTION AND PRINTED CIRCUIT BOARD LAYOUT MAY SIGNIFICANTLY AFFECT CIRCUIT PERFORMANCE OR RELIABILITY CONTACT LINEAR TECHNOLOGY APPLICATIONS ENGINEERING FOR ASSISTANCE THIS CIRCUIT IS PROPRIETARY TO LINEAR TECH...

Page 6: ...UDING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE EXCEPT TO THE EXTENT OF THIS INDEMNITY NEITHER PARTY SHALL BE LIABLE TO THE OTHER FOR ANY INDIRECT SPECIAL INCIDENTAL OR CONSEQUENTIAL DAMAGES The user assumes all responsibility and liability for proper and safe handling of the goods Further the user releases LTC from all claims arising from the handling or use of the goo...

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