AD5667RBRMZ-2

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Series Information for AD5667RBRMZ-2 - Analog Devices

Features

  • feature
    Low power, smallest pin-compatible, dual nanoDACs AD5627R/AD5647R/AD5667R 12-/14-/16-bit On-chip 1.25 V/2.5 V, 5 ppm/u00b0C reference AD5627/AD5667 12-/16-bit External reference only 3 mm x 3 mm LFCSP and 10-lead MSOP 2.7 V to 5.5 V power supply Guaranteed monotonic by design Power-on reset to zero scale Per channel power-down Hardware LDAC and CLR functions I2C-compatible serial interface supports standard (100 kHz), fast (400 kHz), and high speed (3.4 MHz) modes

Description

16BIT DAC DUAL LOW POWER MSOP10

The AD5627R/AD5647R/AD5667R, AD5627/AD5667 members of the nanoDAC family are low power, dual, 12-, 14-, 16-bit buffered voltage-out digital-to-analog converters (DACs) with/without on-chip reference. All devices operate from a single 2.7 V to 5.5 V supply, are guaranteed monotonic by design, and have an I2C-compatible serial interface. The AD5627R/AD5647R/AD5667R have an on-chip reference. The AD5627RBCPZ, AD5647RBCPZ, and AD5667RBCPZ have a 1.25 V, 5 ppm/°C reference, giving a full-scale output range of 2.5 V; the AD5627RBRMZ and AD5667RBRMZ have a 2.5 V, 5 ppm/°C reference, giving a full-scale output range of 5 V. The on-chip reference is off at power-up, allowing the use of an external reference. The internal reference is enabled via a software write. The AD5667 and AD5627 require an external reference voltage to set the output range of the DAC. The AD5627R/AD5647R/AD5667R, AD5627/AD5667 incorporate a power-on reset circuit that ensures the DAC output powers up to 0 V, and remains there until a valid write takes place. The device contains a per-channel power-down feature that reduces the current consumption of the device to 480 nA at 5 V and provides software-selectable output loads while in power- down mode. The low power consumption of this device in normal operation makes it ideally suited to portable battery- operated equipment. The on-chip precision output amplifier enables rail-to-rail output swing. The AD5627R/AD5647R/AD5667R, AD5627/AD5667 use a 2-wire I2C-compatible serial interface that operates in standard (100 kHz), fast (400 kHz), and high speed (3.4 MHz) modes

Specifications

Resolution (Bits):
16bit
Sampling Rate:
333kSPS
Input Channel Type:
Serial
Supply Voltage Range:
2.7V to 5.5V
ADC / DAC Case Style:
SOP
No. of Pins:
10Pins
Data Interface:
I2C
Operating Temperature Min:
-40°C
Operating Temperature Max:
105°C
Product Range:
AD5667R Series
Automotive Qualification Standard:
-
MSL:
MSL 1 - Unlimited
SVHC:
No SVHC (07-Jul-2017)
A/D / D/A Features:
2.5 V 5 ppm/°C reference
Base Number:
5667
Conversion Time:
4µs
IC Case Style:
SOP
Linearity Error ADC / DAC +:
12LSB
Linearity Error ADC / DAC -:
12LSB
No. of Bits:
16bit
No. of Channels:
2Channels
Operating Temperature Range:
-40°C to +105°C
Output Type:
Voltage
Sample Rate:
333kSPS
Settling Time:
4µs
Supply Current:
950µA
Supply Voltage Max:
5.5V
Supply Voltage Min:
2.7V
Termination Type:
Surface Mount Device

Alternate Descriptions

RS Components
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
Richardson RFPD
CONVERTER - DAC
RS Components UK
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components DE
16 Bit-Bit D/A-Wandler, AD5667RBRMZ-2 250ksps, Dual, Seriell, MSOP 10-Pin Montage-Typ : SMD Stromversorgungs-Typ : Single Versorgungsspannung einzeln typ. : 2,7 → 5,5 V Referenzspannung : Extern, Intern Architektur : Widerstandsnetzwerk Rücksetzzeit max. : 7µs Ausgangspolarität : Unipolar Skalierungsfehler : ±1%FSR Abmessungen : 3.1 x 3.1 x 0.95mm, Analog Devices
RS Components HK
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components JP
半導体,DAC,16-Bit
RS Components FR
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components CN
数模转换器 16位,双,2.5V 5ppm/
RS Components ES
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components NL
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components NO
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components US
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components SG
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10
RS Components TW
DAC 16-Bit Dual 2.5V 5ppm/C I2C MSOP10