LT6203 LINER [Linear Technology], LT6203 Datasheet

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LT6203

Manufacturer Part Number
LT6203
Description
16-Bit, 2Msps, Pseudo-Differential Unipolar SAR
Manufacturer
LINER [Linear Technology]
Datasheet

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FEATURES
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APPLICATIONS
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TYPICAL APPLICATION
V
REF
0V
2Msps Throughput Rate
±0.85LSB INL (Max)
Guaranteed 16-Bit No Missing Codes
Low Power: 19mW at 2Msps, 19µW at 2ksps
94dB SNR (Typ) at f
–112dB THD (Typ) at f
Guaranteed Operation to 125°C
2.5V Supply
Pseudo-Differential Unipolar Input Range: 0V to V
V
No Pipeline Delay, No Cycle Latency
1.8V to 5V I/O Voltages
SPI-Compatible Serial I/O with Daisy-Chain Mode
Internal Conversion Clock
16-Lead MSOP and 4mm × 3mm DFN Packages
Medical Imaging
High Speed Data Acquisition
Portable or Compact Instrumentation
Industrial Process Control
Low Power Battery-Operated Instrumentation
ATE
REF
Input Range from 2.5V to 5.1V
+
LT
®
6202
IN
IN
= 2kHz
5.1
= 2kHz
10nF
2.5V TO 5.1V
IN
IN
+
10µF
LTC2370-16
2.5V
REF
REF
V
DD
47µF
(X5R, 0805 SIZE)
1.8V TO 5V
OV
GND
DD
REF
RDL/SDI
CHAIN
BUSY
SDO
SCK
CNV
237016 TA01a
0.1µF
DESCRIPTION
The LTC
16-bit successive approximation register (SAR) ADC.
Operating from a 2.5V supply, the LTC2370-16 has a 0V
to V
ranging from 2.5V to 5.1V. The LTC2370-16 consumes
only 19mW and achieves ±0.85LSB INL maximum, no
missing codes at 16 bits with 94dB SNR.
The LTC2370-16 has a high speed SPI-compatible serial
interface that supports 1.8V, 2.5V, 3.3V and 5V logic while
also featuring a daisy-chain mode. The fast 2Msps through-
put with no cycle latency makes the LTC2370-16 ideally
suited for a wide variety of high speed applications. An
internal oscillator sets the conversion time, easing external
timing considerations. The LTC2370-16 automatically pow-
ers down between conversions, leading to reduced power
dissipation that scales with the sampling rate.
L, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks and
SoftSpan is a trademark of Linear Technology Corporation. All other trademarks are the
property of their respective owners. Protected by U.S. Patents, including 7705765.
REF
Differential Unipolar SAR
SAMPLE CLOCK
pseudo-differential unipolar input range with V
®
2370-16 is a low noise, low power, high speed
16-Bit, 2Msps, Pseudo-
ADC with 94dB SNR
–100
–120
–140
–160
–180
–20
–40
–60
–80
32k Point FFT f
0
0 100 200 300 400
LTC2370-16
FREQUENCY (kHz)
S
= 2Msps, f
500
600
SNR = 94dB
THD = –112dB
SINAD = 93.9dB
SFDR = 117dB
700
IN
800 900 1000
= 2kHz
237016 TA01b
237016fa
1
REF

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LT6203 Summary of contents

Page 1

FEATURES 2Msps Throughput Rate n ±0.85LSB INL (Max) n Guaranteed 16-Bit No Missing Codes n Low Power: 19mW at 2Msps, 19µW at 2ksps n 94dB SNR (Typ 2kHz n IN –112dB THD (Typ 2kHz ...

Page 2

LTC2370-16 ABSOLUTE MAXIMUM RATINGS Supply Voltage (V ) ...............................................2.8V DD Supply Voltage (OV ) ................................................6V DD Reference Input (REF) .................................................6V Analog Input Voltage (Note 3) + – .........................(GND – 0.3V) to (REF + 0.3V) Digital Input Voltage ...

Page 3

ELECTRICAL CHARACTERISTICS temperature range, otherwise specifications are at T SYMBOL PARAMETER + V + Absolute Input Range ( – V – Absolute Input Range ( – V – Input Differential Voltage Range IN IN ...

Page 4

LTC2370-16 REFERENCE INPUT The specifications are 25°C. (Note 4) A SYMBOL PARAMETER V Reference Voltage REF I Reference Input Current REF DIGITAL INPUTS AND DIGITAL OUTPUTS full operating temperature range, otherwise specifications are at T SYMBOL PARAMETER ...

Page 5

ADC TIMING CHARACTERISTICS temperature range, otherwise specifications are at T SYMBOL PARAMETER t SCK Low Time SCKL t SDI Setup Time From SCK↑ SSDISCK t SDI Hold Time From SCK↑ HSDISCK t SCK Period in Chain Mode SCKCH t SDO ...

Page 6

LTC2370-16 TYPICAL PERFORMANCE CHARACTERISTICS f = 2Msps, unless otherwise noted. SMPL Integral Nonlinearity vs Output Code 1.0 0.8 0.6 0.4 0.2 0.0 –0.2 –0.4 –0.6 –0.8 –1.0 0 16384 32768 49152 65536 OUTPUT CODE 237016 G01 32k Point FFT f ...

Page 7

TYPICAL PERFORMANCE CHARACTERISTICS f = 2Msps, unless otherwise noted. SMPL SNR, SINAD vs Temperature 2kHz IN 95.0 94.5 SNR 94.0 SINAD 93.5 93.0 92.5 92.0 –55 –35 – 105 TEMPERATURE (°C) 237016 G10 ...

Page 8

LTC2370-16 PIN FUNCTIONS CHAIN (Pin 1): Chain Mode Selector Pin. When low, the LTC2370-16 operates in normal mode and the RDL/SDI input pin functions to enable or disable SDO. When high, the LTC2370-16 operates in chain mode and the RDL/SDI ...

Page 9

FUNCTIONAL BLOCK DIAGRAM TIMING DIAGRAM CHAIN, RDL/SDI = 0 CNV CONVERT BUSY SCK SDO REF = SPI 16-BIT SAMPLING ADC PORT – – IN CONTROL LOGIC ...

Page 10

LTC2370-16 APPLICATIONS INFORMATION OVERVIEW The LTC2370- low noise, low power, high speed 16-bit successive approximation register (SAR) ADC. Operating from a single 2.5V supply, the LTC2370-16 supports pseudo-differential unipolar input range with REF V ...

Page 11

APPLICATIONS INFORMATION INPUT DRIVE CIRCUITS A low impedance source can directly drive the high im- pedance input of the LTC2370-16 without gain error. A high impedance source should be buffered to minimize settling time during acquisition and to optimize the ...

Page 12

LTC2370-16 APPLICATIONS INFORMATION 200pF CM REF R2 R4 499 402 + 3 R3 10µF LT6202 2k – 10V 2k 499 0V –10V 200pF Figure 5a. LT6202 Converting a ±10V Bipolar Signal to ...

Page 13

APPLICATIONS INFORMATION code. In applications where the transient response of the reference is important, the fast settling LTC6655-5 refer- ence is also recommended. In applications where power management is critical and the external reference may be powered down ...

Page 14

LTC2370-16 APPLICATIONS INFORMATION Power Supply Sequencing The LTC2370-16 does not have any specific power supply sequencing requirements. Care should be taken to adhere to the maximum voltage relationships described in the Absolute Maximum Ratings section. The LTC2370-16 has a power-on-reset ...

Page 15

TIMING DIAGRAMS Normal Mode, Single Device When CHAIN = 0, the LTC2370-16 operates in normal mode. In normal mode, RDL/SDI enables or disables the serial data output pin SDO. If RDL/SDI is high, SDO is in high impedance. If RDL/SDI ...

Page 16

LTC2370-16 TIMING DIAGRAMS Normal Mode, Multiple Devices Figure 11 shows multiple LTC2370-16 devices operating in normal mode (CHAIN = 0) sharing CNV, SCK and SDO. By sharing CNV, SCK and SDO, the number of required signals to operate multiple ADCs ...

Page 17

TIMING DIAGRAMS Chain Mode, Multiple Devices When CHAIN = OV , the LTC2370-16 operates in DD chain mode. In chain mode, SDO is always enabled and RDL/SDI serves as the serial data input pin (SDI) where daisy-chain data output from ...

Page 18

LTC2370-16 BOARD LAYOUT To obtain the best performance from the LTC2370-16 a printed circuit board is recommended. Layout for the printed circuit board (PCB) should ensure the digital and analog signal lines are separated as much as possible. In particular, ...

Page 19

BOARD LAYOUT Partial Layer 1 Component Side Partial Layer 2 Ground Plane LTC2370-16 237016fa 19 ...

Page 20

LTC2370-16 BOARD LAYOUT 20 Partial Layer 3 PWR Plane Partial Layer 4 Bottom Layer 237016fa ...

Page 21

BOARD LAYOUT Partial Schematic of Demoboard REF 8 REF 1 GND 7 DD GND GND GND LTC2370- 237016fa 21 ...

Page 22

LTC2370-16 PACKAGE DESCRIPTION Please refer to http://www.linear.com/designtools/packaging/ 3.30 ±0.05 3.60 ±0.05 2.20 ±0.05 1.70 ±0.05 0.25 ±0.05 0.45 BSC 3.15 REF RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS APPLY SOLDER MASK TO AREAS THAT ARE NOT SOLDERED NOTE: 1. DRAWING PROPOSED ...

Page 23

REVISION HISTORY REV DATE DESCRIPTION A 03/12 Updated conditions for I PD Added Figure 7 and associated text Updated Related Parts Information furnished by Linear Technology Corporation is believed to be accurate and reliable. However, no responsibility is assumed for ...

Page 24

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