Interfacing to High Performance Pipeline ADCs Design Note 1031 Tyler Hutchison and Clarence Mayott

Introduction High speed ADCs use a sample and hold input structure comprising a fast CMOS switch and a sampling capacitor. When the CMOS switch closes, the sampling capacitor shares its stored charge with the preceding drive circuitry (charge kickback). As the sampling capacitor and its stored charge increase in size, more attention must be paid to the drive circuitry. Pipeline ADCs typically have a few picofarads of sample capacitance. In contrast, the high performance 16-bit 20Msps LTC ®2270 high speed ADC uses a 17pF sampling capacitor. The advantage of a relatively large sampling capacitor is a significant reduction of internal kT/C noise and therefore better signal-to-noise ratio (SNR). The disadvantage is that the part becomes more difficult to drive. Every time the CMOS switch closes, the sampling capacitor kicks back significantly more charge to the driver than would a smaller sampling capacitor. The interface filter, between the driver and ADC, demands extra attention. An inappropriate filter de-

R14 35.7Ω

L5 680nH

R13 35.7Ω

C11 680pF L6 680nH

Driver Selection The LTC2270 has a stellar 84.1dB SNR (46µVRMS input referred noise), in addition to 99dB SFDR at baseband. To ensure that performance of the LTC2270 is optimum, the ADC driver must be tolerant to large charge kickbacks, drive a relatively heavy load and have low wideband noise. Common mode termination on the ADC input, necessary to maintain the low distortion of the ADC, results in a significant load for the driver. Additionally, the driver must be extremely low noise. As a point of reference, a 3nV/√Hz amplifier across a 10MHz bandwidth would deteriorate the SNR by more than 1dB. The LTC6409 is 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.

COMMON MODE AC TERMINATION, ALSO RESULTS IN –1.85dB OF ATTENUATION

L8 680nH

C10 680pF

INITIAL INDUCTIVE COUPLINGS WILL NOT PROVIDE A HEAVY LOAD FOR THE AMPLIFIER AT HIGH FREQUENCIES

teriorates SNR and SFDR. This filter must limit noise, and also adequately settle charge kickback to protect the driver and the ADC from reflections. This design note shows how to design a suitable driver and 10MHz interface filter for the LTC2270.

L7 680nH

C1 33pF R1 24.9Ω R2 24.9Ω C2 33pF

R15 150Ω

R16 150Ω

KEEPS FILTER ABSORPTIVE AT HIGH FREQUENCIES C3 0.1µF

PARALLEL RESISTANCE HERE TO DE-Q THE INDUCTORS MAY HELP. THIS FILTER USED 0402HL-681XJRU WHICH ARE FAIRLY LOW Q, COILCRAFT INDUCTORS.

dn1031 F01

Figure 1. An Interface Filter of Approximately 10MHz Used Between the LTC6409 and the LTC2270 06/13/1031

C2 1.3pF

R7 150Ω

R8 150Ω

R10 35.7Ω

L1 680nH

L4 680nH

5V R3 51.1Ω VCM

VOCM C4 0.01µF

–+

C5 680pF

U1

C7 33pF R1 24.9Ω

R11 150Ω

LTC6409

+



R5 150Ω

C6 680pF

S R4 150Ω

R9 35.7Ω

L2 680nH

C1 1.3pF

L3 680nH

R2 24.9Ω C8 33pF

R12 150Ω

AIN+ C3 0.1µF

LTC2270 AIN–

VCM C9 0.1µF VCM dn1031 F02

NOTE: ONLY ONE CHANNEL SHOWN

Figure 2. The Full ADC Interface Including the LTC6409 as a Buffer, a 10MHz Lowpass Filter, and the LTC2270

a good choice to meet these requirements. It provides drive and output swing to allow for enough common mode termination and an input referred voltage noise of 1.1nV/√Hz.

provide some basic direction. The filter in Figure 1 illustrates these specifications and performs well in lab. Figure 2 shows the full interface.

Filter Design High frequency pipeline ADCs digitize an enormous bandwidth of information. The LTC2270 exhibits a full power bandwidth of 200MHz, enabling it to digitize 20 Nyquist zones and integrate wideband noise distortion, clocking frequencies and other radio frequency artifacts.

Lab Testing The proper filter and termination for a particular design must be experimentally verified, as there is no single rule or equation that covers all setups. Lab tests ensure that the filter can tolerate these circuit realities, such as board parasitics. Lab tests can also prove that resistive and reactive termination can have a significant impact on system distortion.

The interface filter limits the broadband noise from the driver, but without careful design, the filter can also deteriorate the SFDR. To obtain optimum SFDR specifications for the driver and the ADC, start with these broad guidelines:

For instance, Figure 3 shows a 2-tone test performed using the interface in Figure 2. Additionally, Figure 4 shows the distortion deterioration between absorptive termination and no-output termination. The in-band SFDR is better than 100dB and the SNR has only been

• The ADC should see low impedance from its inputs. Since sampling is primarily a common mode effect, this termination should be common mode. • The driver should see relatively high impedance, especially when driving the ADC to full-scale. • Filters with absorptive (never open or short) characteristics behave better. • A common mode termination capacitor mitigates the effect of charge kickback on the driver and the ADC. A filter that contains common mode termination and properly settles charge kickback will optimize SFDR. There are other interface filter design guidelines, especially concerning layout, but these considerations

Figure 3. 2-Tone Spectrum of the LTC2270. The Heightened Noise Floor is Due to the Signal Generator

deteriorated by 0.4dB. Lab results may also display unexpected excess noise or distortion. In most cases, some amount of tweaking is necessary. For instance, reducing the bandwidth may increase SNR, but often at the expense of distortion. Here are a few practical rules to keep in mind for interface filter design: • Keep the filter symmetric in value and layout • Use only low distortion capacitors like COG/NPO, de-Q or use Low Q filter inductors • Provide common-mode roll-off Conclusion Despite the LTC2270’s additional sample capacitance, a suitable driver and 10MHz filter provide almost no deterioration to the LTC2270’s data sheet specifications. While the LTC6409 may work with the LTC2270 to digitize higher frequencies, the filter design may not be as straightforward as replacing inductors and capacitors with scaled values. In the end, use bench testing to produce empirical evidence to prove the adequacy of any ADC interface. Figure 4. Spectrum of the LTC2270 Sampling a 2.4MHz Sinusoid at 20Msps. (Top) SFDR Is Quite Poor When All Output Termination Has Been Removed from the Interface Filter. (Bottom) The Intended Filter Shows Near Data Sheet Specifications in Terms of SNR and Distortion

Data Sheet Download

www.linear.com/LTC2270

Linear Technology Corporation

For applications help, call (408) 432-1900 dn1031 0613 • PRINTED IN THE USA

1630 McCarthy Blvd., Milpitas, CA 95035-7417 (408) 432-1900



FAX: (408) 434-0507 ● www.linear.com

 LINEAR TECHNOLOGY CORPORATION 2013

DN1031 - Interfacing to High Performance ... - Linear Technology

charge to the driver than would a smaller sampling ... The interface filter, between the driver and ADC, .... deterioration to the LTC2270's data sheet specifica-.

634KB Sizes 10 Downloads 270 Views

Recommend Documents

DN517 - High Performance Single Phase DC/DC ... - Linear Technology
for digital control and monitoring of key regulator parameters. It has integrated ... application that features inductor DCR current sensing. To improve the accuracy ...

High Performance Power Solutions for AMD ... - Linear Technology
L, LT, LTC, LTM, Linear Technology, the Linear logo PolyPhase, Burst Mode are registered trademarks .... design can achieve high efficiency, small size and low.

DN561 High Voltage, High Efficiency Positive to ... - Linear Technology
The –12V Output Converter (U1) Provides 5A to the Load in the Input Voltage ... ment tools, testing systems, LED drivers and battery ... For applications help,.

High Frequency Active Antialiasing Filters - Linear Technology
order lowpass filter in a surface mount SO-8 package. (Figure 1). Two external ... example, a component sensitivity analysis of Figure 2 shows that in order to ...

High Efficiency 100mA Synchronous Buck ... - Linear Technology
Design Note 532. Charlie Zhao. 11/14/ ... the cost of design and manufacture. The LTC3639 ... Figure 3 shows an application example of a 24V output,. 100mA ...

High Current Step-Down Controller Regulates to ... - Linear Technology
a DC/DC converter solution with high efficiency and small size. The LTC3832 also ... soft-start voltage ramp rate in this circuit is set by CSS. Figure 4 shows the ...

DN489 - High Efficiency, High Density 3-Phase ... - Linear Technology
Introduction. The LTC®3829 is a feature-rich single output 3-phase synchronous buck controller that meets the power den- sity demands of modern high speed, ...

DN489 - High Efficiency, High Density 3-Phase ... - Linear Technology
Design Note 489. Jian Li and Kerry Holliday ... S3P. S2N. S2P. S1N. S1P. 9. 47pF. DIFFOUT. 20.0k. 30.1k. 100pF. CSS. 0.1μF. 0.1μF. 2.2Ω. 0.1μF. 1nF. 5. 6. 7.

Optimization of EVM Performance in IQ Modulators - Linear Technology
LTC5598 IQ modulator on Linear Technology demon- ... It is utilized in many wireless communi- .... troduction”, Application Note 1298, Agilent Technologies.

DN1027 - Optimizing the Performance of Very ... - Linear Technology
cated to various wireless carriers. Associated with this. 20MHz channel is a companion 100MHz bandwidth DPD receiver to measure intermodulation distortion ...

Monolithic Converter Delivers High Output Voltages - Linear Technology
Design Note 545. Jesus Rosales ... tive rails. When the designer is faced with producing ... This application can output 120V at 25mA to 80mA in a straight boost ...

DN326 - 3-Phase LTC3733 Provides High ... - Linear Technology
cost of the solution is minimized. The LTC3733 comes in a 36-Lead SSOP ... mobile CPU applications. 3-Phase, 65A AMD VRM Design. Figure 1 shows a ...

60V 2MHz Buck-Boost Controllers Regulate High ... - Linear Technology
more than 45°C above room temperature. At 7V input, the hottest component rises less than 55°C with a. Figure 1. 2MHz 12V, 4A Buck-Boost Voltage Regulator ...

42V High Power Density Buck Regulators in a ... - Linear Technology
Introduction. Power dissipation is a significant problem facing the designers of DC/DC converters in industrial and auto- motive applications, where high currents ...

Complete Battery Charger Solution for High ... - Linear Technology
Electronics. 3.5A Charger for Li-Ion/LiFePO4 Batteries Multiplexes USB and Wall Inputs. Design Note 496. George H. Barbehenn. Figure 1. Typical Application ...

Versatile Industrial Power Supply Takes High ... - Linear Technology
Master/slave channels are enabled via the master's enable pin and regulate to the master's feedback network. Output current can be increased to 3A or 4A by ...

High Voltage, Low Noise, DC/DC Converters - Linear Technology
Application Note 118. AN118-4 an118fb. Low Noise Switching Regulator Driven Resonant. Royer Converters. Figure 8 examplifies the aforementioned “special ...

Bootstrap Biasing of High Input Voltage Step ... - Linear Technology
Introduction. High voltage buck DC/DC controllers such as the LTC3890. (dual output) and LTC3891 (single output) are popular in automotive applications due ...

High Efficiency 4-Switch Buck-Boost Controller ... - Linear Technology
tween operating regions is ideal for automotive, telecom and battery-powered systems. Higher input voltage is easily enabled by adding a high voltage gate ...

High Voltage, Low Noise, DC/DC Converters - Linear Technology
can provide surprisingly good performance, particularly at low output current. ...... minimal ripple current may not create a significant field, but such an inductor ...

Low Noise, Precision Op Amp Drives High ... - Linear Technology
performance. The best way to create a differential signal while maintaining linearity is by using the ... Page 3 ... call (978) 656-3757 higher above its bandwidth ...

DN1045 - Precision Ultralow Power High Side ... - Linear Technology
UP TO VIN). Precision ... in this application, at room temperature, with VDS = ... the gain-setting resistors RINand RLOAD, mismatched ... Data Sheet Download.

Robust High Voltage Over-The-Top Op Amps ... - Linear Technology
Design Note 533. Glen Brisebois .... considerations necessary when designing robustness into high ... the industrial system designer a precision solution for high ...