Datasheet AD7660 (Analog Devices)
Hersteller | Analog Devices |
Beschreibung | 16-Bit 100 kSPS CMOS Successive Approximation PulSAR ADC with No Missing Codes |
Seiten / Seite | 21 / 1 — 16-Bit, 100 kSPS PulSAR®. Unipolar CMOS ADC. AD7660. FEATURES. FUNCTIONAL … |
Revision | E |
Dateiformat / Größe | PDF / 494 Kb |
Dokumentensprache | Englisch |
16-Bit, 100 kSPS PulSAR®. Unipolar CMOS ADC. AD7660. FEATURES. FUNCTIONAL BLOCK DIAGRAM. Throughput: 100 kSPS. AVDD AGND REF REFGND
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16-Bit, 100 kSPS PulSAR® Unipolar CMOS ADC AD7660 FEATURES FUNCTIONAL BLOCK DIAGRAM Throughput: 100 kSPS AVDD AGND REF REFGND DVDD DGND INL: 3 LSB Max ( 0.0046% of Full-Scale) 16-Bit Resolution with No Missing Codes OVDD AD7660 S/(N+D): 87 dB Min @ 10 kHz, 90 dB Typ @ 45 kHz SERIAL OGND THD: –96 dB Max @ 10 kHz IN PORT SWITCHED Analog Input Voltage Range: 0 V to 2.5 V CAP DAC 16 INGND D[15:0] Both AC and DC Specifications No Pipeline Delay BUSY PARALLEL Parallel and Serial 5 V/3 V Interface INTERFACE RD SPI®/QSPI™/MICROWIRE™/DSP Compatible CLOCK PD CS Single 5 V Supply Operation RESET CONTROL LOGIC AND SER/PAR 21 mW Typical Power Dissipation, 21 CALIBRATION CIRCUITRY W @ 100 SPS OB/2C Power-Down Mode: 7 W Max Package: 48-Lead Quad Flatpack (LQFP) CNVST 48-Lead Chip Scale Package (LFCSP) Pin-to-Pin Compatible with the AD7664 APPLICATIONS Table I. PulSAR Selection Data Acquisition Type/kSPS 100–250 500–570 800–1000 Battery-Powered Systems PCMCIA
Pseudo AD7651 AD7650/AD7652 AD7653
Instrumentation
Differential AD7660/AD7661 AD7664/AD7666 AD7667
Automatic Test Equipment
True Bipolar AD7663 AD7665 AD7671
Scanners Medical Instruments
True AD7675 AD7676 AD7677
Process Control
Differential 18-Bit AD7678 AD7679 AD7674
GENERAL DESCRIPTION
Simultaneous/ AD7654 The AD7660 is a 16-bit, 100 kSPS, charge redistribution SAR, Multichannel AD7655 analog-to-digital converter that operates from a single 5 V power supply. The part contains an internal conversion clock, error cor- rection circuits, and both serial and parallel system interface ports.
PRODUCT HIGHLIGHTS
1. Fast Throughput The AD7660 is hardware factory-calibrated and is comprehen- The AD7660 is a 100 kSPS, charge redistribution, 16-bit sively tested to ensure ac parameters such as signal-to-noise ratio SAR ADC with internal error correction circuitry. (SNR) and total harmonic distortion (THD), in addition to the 2. Superior INL more traditional dc parameters of gain, offset, and linearity. The AD7660 has a maximum integral nonlinearity of 3 LSBs It is fabricated using Analog Devices’ high performance, with no missing 16-bit code. 0.6 micron CMOS process with correspondingly low cost and is 3. Single-Supply Operation available in a 48-lead LQFP and a tiny 48-lead LFCSP with The AD7660 operates from a single 5 V supply and only operation specified from –40∞C to +85∞C. dissipates 21 mW typical. Its power dissipation decreases with the throughput to, for instance, only 21 mW at a 100 SPS throughput. It consumes 7 mW maximum when in power-down. 4. Serial or Parallel Interface Versatile parallel or 2-wire serial interface arrangement com- patible with both 3 V or 5 V logic. REV. E Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. No license is granted by implication or otherwise
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Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION FUNCTIONAL BLOCK DIAGRAM PRODUCT HIGHLIGHTS SPECIFICATIONS TIMING SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS PIN CONFIGURATION ORDERING GUIDE PIN FUNCTION DESCRIPTIONS DEFINITION OF SPECIFICATIONS Integral Nonlinearity Error (INL) Differential Nonlinearity Error (DNL) Full-Scale Error Unipolar Zero Error Spurious-Free Dynamic Range (SFDR) Effective Number of Bits (ENOB) Total Harmonic Distortion (THD) Signal-to-Noise Ratio (SNR) Signal-to-(Noise + Distortion) Ratio (S/[N+D]) Aperture Delay Transient Response Overvoltage Recovery Typical Performance Characteristics CIRCUIT INFORMATION CONVERTER OPERATION Transfer Functions TYPICAL CONNECTION DIAGRAM Analog Input Driver Amplifier Choice Voltage Reference Input Power Supply POWER DISSIPATION VS. THROUGHPUT CONVERSION CONTROL DIGITAL INTERFACE PARALLEL INTERFACE SERIAL INTERFACE MASTER SERIAL INTERFACE Internal Clock SLAVE SERIAL INTERFACE External Clock External Discontinuous Clock Data Read after Conversion External Clock Data Read during Conversion MICROPROCESSOR INTERFACING SPI Interface (ADSP-219x) APPLICATION HINTS Bipolar and Wider Input Ranges Layout Evaluating the AD7660 Performance OUTLINE DIMENSIONS Revision History