AD5300 Analog Devices, AD5300 Datasheet

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AD5300

Manufacturer Part Number
AD5300
Description
+2.7 V to +5.5 V, 140 uA, Buffered, Rail-to-Rail 8-Bit DAC in 6-lead SOT-23
Manufacturer
Analog Devices
Datasheet

Specifications of AD5300

Resolution (bits)
8bit
Dac Update Rate
250kSPS
Dac Settling Time
4µs
Max Pos Supply (v)
+5.5V
Single-supply
Yes
Dac Type
Voltage Out
Dac Input Format
Ser,SPI

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a
SPI and QSPI are trademarks of Motorola, Inc.
MICROWIRE is a trademark of National Semiconductor Corporation.
*Patent pending; protected by U.S. Patent No. 5684481.
GENERAL DESCRIPTION
The AD5300 is a single, 8-bit buffered voltage out DAC that
operates from a single +2.7 V to +5.5 V supply consuming
115 A at 3 V. Its on-chip precision output amplifier allows
rail-to-rail output swing to be achieved. The AD5300 utilizes a
versatile three-wire serial interface that operates at clock rates up
to 30 MHz and is compatible with standard SPI™, QSPI™,
MICROWIRE™ and DSP interface standards.
The reference for AD5300 is derived from the power supply
inputs and thus gives the widest dynamic output range. The part
incorporates a power-on-reset circuit that ensures that the DAC
output powers up to zero volts and remains there until a valid
write takes place to the device. The part contains a power-down
feature that reduces the current consumption of the device to
200 nA at 5 V and provides software selectable output loads
while in power-down mode. The part is put into power-down
mode over the serial interface.
The low power consumption of this part in normal operation
makes it ideally suited to portable battery operated equipment.
The power consumption is 0.7 mW at 5 V reducing to 1 W in
power-down mode.
The AD5300 is one of a family of pin-compatible DACs. The
AD5310 is the 10-bit version and the AD5320 is the 12-bit
version. The AD5300/AD5310/AD5320 are available in 6-lead
SOT-23 packages and 8-lead SOIC packages.
REV. A
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
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
FEATURES
Single 8-Bit DAC
6-Lead SOT-23 and 8-Lead SOIC Packages
Micropower Operation: 140
Power-Down to 200 nA @ 5 V, 50 nA @ 3 V
+2.7 V to +5.5 V Power Supply
Guaranteed Monotonic by Design
Reference Derived from Power Supply
Power-On-Reset to Zero Volts
Three Power-Down Functions
Low Power Serial Interface with Schmitt-Triggered
On-Chip Output Buffer Amplifier, Rail-to-Rail
SYNC Interrupt Facility
APPLICATIONS
Portable Battery Powered Instruments
Digital Gain and Offset Adjustment
Programmable Voltage and Current Sources
Programmable Attenuators
Inputs
Operation
A @ 5 V
+2.7 V to +5.5 V, 140 A, Rail-to-Rail Output
PRODUCT HIGHLIGHTS
1. Available in 6-lead SOT-23 and 8-lead SOIC packages.
2. Low power, single supply operation. This part operates from
3. The on-chip output buffer amplifier allows the output of the
4. Reference derived from the power supply.
5. High speed serial interface with clock speeds up to 30 MHz.
6. Power-down capability. When powered down the DAC
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700
Fax: 781/326-8703
SYNC SCLK DIN
a single +2.7 V to +5.5 V supply and typically consumes
0.35 mW at 3 V and 0.7 mW at 5 V, making it ideal for
battery powered applications.
DAC to swing rail-to-rail with a slew rate of 1 V/ s.
Designed for very low power consumption. The interface
only powers up during a write cycle.
typically consumes 50 nA at 3 V and 200 nA at 5 V.
POWER-ON
REGISTER
CONTROL
RESET
LOGIC
INPUT
DAC
FUNCTIONAL BLOCK DIAGRAM
8-Bit DAC in an SOT-23
REF (+) REF (–)
V
World Wide Web Site: http://www.analog.com
DD
8-BIT
DAC
GND
CONTROL LOGIC
POWER-DOWN
OUTPUT
BUFFER
© Analog Devices, Inc., 1999
AD5300*
AD5300
RESISTOR
NETWORK
V
OUT

Related parts for AD5300

AD5300 Summary of contents

Page 1

... Programmable Voltage and Current Sources Programmable Attenuators GENERAL DESCRIPTION The AD5300 is a single, 8-bit buffered voltage out DAC that operates from a single +2 +5.5 V supply consuming 115 Its on-chip precision output amplifier allows rail-to-rail output swing to be achieved. The AD5300 utilizes a versatile three-wire serial interface that operates at clock rates MHz and is compatible with standard SPI™ ...

Page 2

... AD5300–SPECIFICATIONS Parameter 2 STATIC PERFORMANCE Resolution Relative Accuracy Differential Nonlinearity Zero Code Error Full-Scale Error Gain Error Zero Code Error Drift Gain Temperature Coefficient 3 OUTPUT CHARACTERISTICS Output Voltage Range Output Voltage Settling Time Slew Rate Capacitive Load Stability Digital-to-Analog Glitch Impulse ...

Page 3

... ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000 V readily accumulate on the human body and test equipment and can discharge without detection. Although the AD5300 features proprietary ESD protection circuitry, permanent damage may occur on devices subjected to high energy electrostatic discharges. Therefore, proper ESD precautions are recommended to avoid performance degradation or loss of functionality ...

Page 4

... DAC. PIN CONFIGURATIONS SOT-23 SYNC AD5300 2 SCLK NC 5 TOP VIEW 3 DIN NC (Not to Scale OUT PIN FUNCTION DESCRIPTIONS –4– SOIC 1 8 GND 2 7 DIN AD5300 TOP VIEW 3 SCLK 6 (Not to Scale) SYNC CONNECT DD should be de- REV. A ...

Page 5

... Hex) is loaded to the DAC register. Ideally the output should The zero-code error is always positive in the AD5300 because the output of the DAC cannot go below due to a combination of the offset errors in the DAC and output amplifier. Zero-code error is expressed in LSBs. A plot of zero-code error vs ...

Page 6

... AD5300–Typical Performance Characteristics + 0.5 INL @ 3V INL @ 5V 0 –0.5 –1 50 100 150 200 250 0 CODE Figure 2. Typical INL Plot +5V DD 0.5 MAX INL MAX DNL 0 MIN DNL MIN INL –0.5 –1 – 120 TEMPERATURE – C Figure 5. INL Error and DNL Error vs ...

Page 7

... HALF-SCALE CODE CHANGE 40 HEX – C0 HEX OUTPUT LOADED WITH 2k AND 200pF TO GND CH1 1V, CH2 5V, TIME BASE = 1 s/DIV Figure 16. Half-Scale Settling Time 2.54 LOADED WITH 2k = +5V AND 200pF TO GND CODE CHANGE: 2.52 80 HEX TO 7F HEX 2.50 2.48 2.46 500ns/DIV Figure 19. Digital-to-Analog Glitch Impulse AD5300 +105 C 4.7 5.2 ...

Page 8

... AD5300 GENERAL DESCRIPTION D/A Section The AD5300 DAC is fabricated on a CMOS process. The archi- tecture consists of a string DAC followed by an output buffer amplifier. Since there is no reference input pin, the power supply (V ) acts as the reference. Figure 20 shows a block DD diagram of the DAC architecture. ...

Page 9

... V. See Figure 18 for a plot. DD MICROPROCESSOR INTERFACING AD5300 to ADSP-2101/ADSP-2103 Interface Figure 25 shows a serial interface between the AD5300 and the ADSP-2101/ADSP-2103. The ADSP-2101/ADSP-2103 should be set up to operate in the SPORT Transmit Alternate Framing Mode. The ADSP-2101/ADSP-2103 SPORT is programmed through the SPORT control register and should be configured as follows: Internal Clock Operation, Active Low Framing, 16- Bit Word Length ...

Page 10

... AD5300. If the low AD5300* dropout REF195 is used, the current it needs to supply to the SYNC AD5300 is 140 A. This is with no load on the output of the DAC. When the DAC output is loaded, the REF195 also needs to SCLK supply the current to the load. The total current required (with ...

Page 11

... The printed circuit board containing the AD5300 should have separate analog and digital sections, each having its own area of the board. If the AD5300 system where other devices require an AGND to DGND connection, the connec- tion should be made at one point only. This ground point should be as close as possible to the AD5300 ...

Page 12

... AD5300 0.071 (1.80) 0.059 (1.50) 0.051 (1.30) 0.035 (0.90) 0.006 (0.15) 0.002 (0.05) OUTLINE DIMENSIONS Dimensions shown in inches and (mm). 6-Lead SOT-23 (RT-6) 0.122 (3.10) 0.106 (2.70 0.118 (3.00) 0.098 (2.50 PIN 1 0.037 (0.95) BSC 0.075 (1.90) BSC 0.057 (1.45) 0.035 (0.90) 0.020 (0.50) 0.006 (0.15) SEATING 0.009 (0.23) PLANE 0.010 (0.25) 0.000 (0.00) 0.003 (0.08) 8-Lead SOIC (RM-8) 0.122 (3.10) 0.114 (2.90 0.199 (5.05) ...

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