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DC1108A

Description
eval board for lt6411
CategoryDevelopment board/suite/development tools   
File Size2MB,9 Pages
ManufacturerLinear ( ADI )
Websitehttp://www.analog.com/cn/index.html
Environmental Compliance  
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DC1108A Overview

eval board for lt6411

DEMO CIRCUIT 1057
LT6411 AND LTC2249 ADC
QUICK START GUIDE
LT6411 High-Speed
ADC Driver Combo
Board
DC1057 also allows the flexibility of selecting the
CMOS output supply voltage. DC1057 includes an
on-board 40-pin edge connector for use with the
DC718 Data Acquisition demo board and Linear
Technology’s QuickEval-II data processing soft-
ware,
available
on
our
website
at
http://www.linear.com.
Design files for this circuit board are available.
Call the LTC factory.
, LTC and LT are registered trademarks of Linear Technology Corporation.
DESCRIPTION
Demonstration circuit 1057 is a reference design
featuring Linear Technology Corporation’s LT6411
High Speed Amplifier/ADC Driver with an on-board
LTC2249 14-bit, 80MSPS ADC. DC1057 demon-
strates good circuit layout techniques and recom-
mended component selection for optimal system
performance. The ADC driver input and output
networks are flexible, allowing for AC or DC cou-
pling, gains of 0dB or 6dB, single-ended or differ-
ential configurations, and signal low-pass or band-
pass filtering before the ADC.
QUICK START PROCEDURE
Validating the performance of the LT6411 ADC
Driver-ADC combination is simple with DC1057,
and requires only two signal generators and some
basic lab equipment. Table 1 shows the function of
each I/O connector and selectable jumper on the
board. Refer to Figure 1 for proper board evalua-
tion equipment setup and follow the procedure be-
low:
1.
Connect the power supplies as shown. The
power supply connector labeled VCC powers
the ADC driver. VDD powers the ADC, and
OVDD provides power to both the ADC output
stage and the two CMOS output buffers. The
entire board and all components share common
ground planes. Check the supply voltages be-
fore applying power, to avoid damage from over-
voltage conditions.
2.
Provide an encode clock to the ADC via SMA
connector J4. For best performance, a high-
quality sine wave synthesizer with an external
band-pass filter will provide a stable, low-phase-
noise clock source. A crystal oscillator will also
provide good performance. DC1057 includes an
on-board clock amplifier/buffer IC to provide a
large-amplitude clock source to the ADC.
NOTE.
A poor quality encode clock can significantly degrade the
signal-to-noise ratio (SNR) of the driver-ADC combination.
Table 1: DC1057 Connectors and Descriptions
REFERENCE
FUNCTION
Analog Input (50Ω termination imped-
J1 (AIN+)
ance)
Analog Input (by default, tied to ground
J2 (AIN-)
via resistor R16 for single-ended-to-
differential conversion)
Provides direct connection to DC718.
J3 (40-pin conn)
CMOS Output Buffers provide parallel
data output and clock signals (see sche-
matic)
J4 (Encode
ADC Encode Clock. For best perform-
ance, use a high-quality low-jitter clock
Clock)
source.
JP1 (ENABLE)
Enable/Disable LT6411. Default is EN.
3.
Apply an input signal to the board. DC1057 al-
lows great flexibility in applying input signals
(see the section on Applying Input Signals). For
best results, use a low distortion, low noise sig-
nal generator with high order low-pass or band-
1

DC1108A Related Products

DC1108A DC1057A LT6411CUD#TRPBF LT6411IUD#PBF LT6411IUD#TRPBF LT6411CUD#PBF
Description eval board for lt6411 board eval for lt6411/ltc2249 IC OPAMP GP 650MHZ 16QFN IC OPAMP GP 650MHZ 16QFN IC OPAMP GP 650MHZ 16QFN IC OPAMP GP 650MHZ 16QFN
Brand Name - - Linear Technology Linear Technology Linear Technology Linear Technology
Is it Rohs certified? - - conform to conform to conform to conform to
Parts packaging code - - QFN QFN QFN QFN
package instruction - - HVQCCN, LCC16,.12SQ,20 HVQCCN, LCC16,.12SQ,20 HVQCCN, LCC16,.12SQ,20 HVQCCN, LCC16,.12SQ,20
Contacts - - 16 16 16 16
Manufacturer packaging code - - UD UD UD UD
Reach Compliance Code - - compliant compliant compliant compliant
ECCN code - - EAR99 EAR99 EAR99 EAR99
Amplifier type - - OPERATIONAL AMPLIFIER OPERATIONAL AMPLIFIER OPERATIONAL AMPLIFIER OPERATIONAL AMPLIFIER
Maximum input offset voltage - - 20000 µV 20000 µV 20000 µV 20000 µV
JESD-30 code - - S-PQCC-N16 S-PQCC-N16 S-PQCC-N16 S-PQCC-N16
JESD-609 code - - e3 e3 e3 e3
length - - 3 mm 3 mm 3 mm 3 mm
Humidity sensitivity level - - 1 1 1 1
Negative supply voltage upper limit - - -6.3 V -6.3 V -6.3 V -6.3 V
Nominal Negative Supply Voltage (Vsup) - - -5 V -5 V -5 V -5 V
Number of functions - - 2 2 2 2
Number of terminals - - 16 16 16 16
Maximum operating temperature - - 85 °C 85 °C 85 °C 85 °C
Minimum operating temperature - - -40 °C -40 °C -40 °C -40 °C
Package body material - - PLASTIC/EPOXY PLASTIC/EPOXY PLASTIC/EPOXY PLASTIC/EPOXY
encapsulated code - - HVQCCN HVQCCN HVQCCN HVQCCN
Encapsulate equivalent code - - LCC16,.12SQ,20 LCC16,.12SQ,20 LCC16,.12SQ,20 LCC16,.12SQ,20
Package shape - - SQUARE SQUARE SQUARE SQUARE
Package form - - CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE
Peak Reflow Temperature (Celsius) - - 260 260 260 260
power supply - - +-5 V +-5 V +-5 V +-5 V
Certification status - - Not Qualified Not Qualified Not Qualified Not Qualified
Maximum seat height - - 0.8 mm 0.8 mm 0.8 mm 0.8 mm
Nominal slew rate - - 3300 V/us 3300 V/us 3300 V/us 3300 V/us
Maximum slew rate - - 14 mA 14 mA 14 mA 14 mA
Supply voltage upper limit - - 6.3 V 6.3 V 6.3 V 6.3 V
Nominal supply voltage (Vsup) - - 5 V 5 V 5 V 5 V
surface mount - - YES YES YES YES
technology - - BIPOLAR BIPOLAR BIPOLAR BIPOLAR
Temperature level - - INDUSTRIAL INDUSTRIAL INDUSTRIAL INDUSTRIAL
Terminal surface - - Matte Tin (Sn) Matte Tin (Sn) Matte Tin (Sn) Matte Tin (Sn)
Terminal form - - NO LEAD NO LEAD NO LEAD NO LEAD
Terminal pitch - - 0.5 mm 0.5 mm 0.5 mm 0.5 mm
Terminal location - - QUAD QUAD QUAD QUAD
Maximum time at peak reflow temperature - - 30 30 30 30
width - - 3 mm 3 mm 3 mm 3 mm

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