AD7302BRZ Multichannel Voltage Output D/A Converters by Analog Devices

Status: Production
Series: AD7302
RoHS: Compliant
Download Datasheet Visit Manufacturer Site View Pricing & Stock

The AD7302 is a dual, 8-bit voltage out DAC that operates from a single +2.7 V to +5.5 V supply. Its on-chip precision output buffers allow the DAC outputs to swing rail to rail. The AD7302 has a parallel microprocessor and DSP-compatible interface with high speed registers and double buffered interface logic. Data is loaded to the registers on the rising edge of CS or WR and the A/B pin selects either DAC A or DAC B.Reference selection for AD7302 can be either an internal reference derived from the VDD or an external reference applied at the REFIN pin. Both DACs can be simultaneously updated using the asynchronous LDAC input and can be cleared by using the asynchronous CLR input.The low power consumption of this part makes it ideally suited to portable battery operated equipment. The power consumption is less than 10 mW at 3.3 V, reducing to 3 µW in powerdown mode.The AD7302 is available in a 20-pin plastic dual-in-line package, 20-lead SOIC and a 20-lead TSSOP package.

Where to Buy

Prices starting from US$3.68

Distributor Stock
Logo for RS
RS
from US$6.70
7
in stock
Buy Now
Logo for Newark Electronics
Newark Electronics
from US$6.22
65
in stock
Buy Now
Logo for element14
element14
from US$6.38
65
in stock
Buy Now
Logo for Farnell
Farnell
from US$5.94
65
in stock
Buy Now
Logo for Analog Devices
Analog Devices
from US$3.68
54
in stock
Buy Now
Logo for Richardson RFPD
Richardson RFPD
from US$5.74
-
Buy Now

Features

Two 8-Bit DACs in One Package
20-Lead DIP/SOIC/TSSOP Package
+2.7 V to +5.5 V Operation
Internal and External Reference Capability
DAC Power-Down Function
Parallel Interface
On-Chip Output Buffer Rail-to-Rail Operation
Low power Operation 3 mA max @ 3.3 V
Power-Down to 1 µA max @ 25°C

Alternative Descriptions

Dac, 8Bit, Soic-20, -40 To 105Deg C | Newark Electronics
DAC, 8BIT, SOIC-20, -40 TO 105DEG C | element14
3V/5V DUAL 8-BIT DAC I.C. | Analog Devices
8-Bit DAC, 2.7 V to 5.5 V, AD7302BRZ | RS
CONVERTER - DAC | Richardson RFPD


Frequently Asked Questions

Where can I find additional details, specifications and documents for a AD7302BRZ?

Additional datasheets, footprints and schematics for AD7302BRZ are listed on our Part Details page. You can also find images and similar parts to AD7302BRZ on this page.

What pricing and inventory information can I view?

Distributor pricing and stock information is available for AD7302BRZ on our Product Comparison page. Access via the 'View Pricing & Stock' button to view AD7302BRZ price breaks, MOQs, lead times, inventory and SKUs from distributors.

What category does AD7302BRZ fall under?

The AD7302BRZ is listed under Multichannel Voltage Output D/A Converters.

Can I view similar or alternative parts?

You can view similar parts to AD7302BRZ when available in the Multichannel Voltage Output D/A Converters range under the specifications section at the bottom of the details page.

Who can I contact for technical support of the product?

Submit any questions directly to the customer support team of the distributor listing the product. For the AD7302BRZ you can contact the distributor directly for product support, shipping queries etc.

Is the AD7302BRZ RoHS compliant?

Yes. This part has been flagged as RoHS Compliant by Analog Devices.

Which authorised distributors for AD7302BRZ have stock available?

Authorised distributors including Newark Electronics, element14, Farnell, Analog Devices and RS have stock available or on a lead time for AD7302BRZ.

How do I check stock and lead times for all distributors?

Stock availability and lead times will be displayed for AD7302BRZ often in real-time on the comparison pages.

What if I can't find stock of AD7302BRZ?

You can fill out our help required form which you can use to request a quote for AD7302BRZ from some of our verified obsolescence suppliers. Alternatively, contact us via our web chat in the bottom left of your screen and one of our team will try to help.

We use cookies to improve your experience. See our privacy policy.
Okay