Datasheets
ATA6823C-PHQW-1 by:
Microchip Technology Inc
Atmel Corporation
Microchip Technology Inc
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IC MOTOR CONTROLLER PAR 32QFN

Part Details for ATA6823C-PHQW-1 by Microchip Technology Inc

Results Overview of ATA6823C-PHQW-1 by Microchip Technology Inc

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ATA6823C-PHQW-1 Information

ATA6823C-PHQW-1 by Microchip Technology Inc is a Motion Control Electronic.
Motion Control Electronics are under the broader part category of Signal Circuits.

A signal is an electronic means of transmitting information, either as an analog signal with continuous values or a digital signal with discrete values. Signals are used in various systems and networks. Read more about Signal Circuits on our Signal Circuits part category page.

Price & Stock for ATA6823C-PHQW-1

Part # Distributor Description Stock Price Buy
DISTI # ATA6823C-PHQW-1CT-ND
DigiKey IC MOTOR DRIVER 6.5V-22.7V 32QFN Min Qty: 1 Lead time: 17 Weeks Container: Digi-Reel®, Cut Tape (CT), Tape & Reel (TR) Temporarily Out of Stock
  • 1 $2.1400
$2.1400 Buy Now
DISTI # ATA6823C-PHQW-1
Microchip Technology Inc Gate Driver IC, VQFN, Projected EOL: 2044-12-22 COO: Taiwan ECCN: EAR99 RoHS: Compliant Lead time: 16 Weeks, 0 Days Container: Reel 0

Alternates Available
  • 1 $2.8000
  • 25 $2.3300
  • 100 $2.1200
  • 1,000 $1.9400
  • 5,000 $1.8500
$1.8500 / $2.8000 Buy Now
Bristol Electronics   71835
RFQ
DISTI # ATA6823C-PHQW-1
Avnet Silica HBridge Motor Driver 7V to 18V 32Pin QFN TR (Alt: ATA6823C-PHQW-1) RoHS: Compliant Min Qty: 4000 Package Multiple: 4000 Lead time: 19 Weeks, 0 Days Silica - 0
Buy Now

Part Details for ATA6823C-PHQW-1

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ATA6823C-PHQW-1 Part Data Attributes

ATA6823C-PHQW-1 Microchip Technology Inc
Buy Now Datasheet
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ATA6823C-PHQW-1 Microchip Technology Inc IC MOTOR CONTROLLER PAR 32QFN
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Pbfree Code Yes
Part Life Cycle Code Active
Ihs Manufacturer MICROCHIP TECHNOLOGY INC
Package Description QFN-32
Reach Compliance Code compliant
Factory Lead Time 16 Weeks
Analog IC - Other Type BRUSH DC MOTOR CONTROLLER
JESD-30 Code S-XQCC-N32
Length 7 mm
Number of Functions 1
Number of Terminals 32
Operating Temperature-Max 125 °C
Operating Temperature-Min -40 °C
Output Current-Max 0.35 A
Package Body Material UNSPECIFIED
Package Code HVQCCN
Package Equivalence Code LCC32,.27SQ,25
Package Shape SQUARE
Package Style CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE
Screening Level AEC-Q100
Seated Height-Max 0.9 mm
Supply Current-Max (Isup) 7 mA
Supply Voltage-Max (Vsup) 18 V
Supply Voltage-Min (Vsup) 7 V
Supply Voltage-Nom (Vsup) 12 V
Surface Mount YES
Technology NMOS
Temperature Grade AUTOMOTIVE
Terminal Form NO LEAD
Terminal Pitch 0.65 mm
Terminal Position QUAD
Width 7 mm

ATA6823C-PHQW-1 Related Parts

ATA6823C-PHQW-1 Frequently Asked Questions (FAQ)

  • A good PCB layout for the ATA6823C-PHQW-1 involves keeping the high-current paths short and wide, using a solid ground plane, and placing the decoupling capacitors close to the device. A 4-layer PCB with a dedicated power plane and a solid ground plane is recommended.

  • When choosing an inductor for the ATA6823C-PHQW-1, consider the inductor's saturation current, DC resistance, and core material. A good starting point is to select an inductor with a saturation current rating of at least 1.5 times the maximum output current, and a DC resistance of less than 100 mΩ.

  • The ATA6823C-PHQW-1 is rated for operation from -40°C to +125°C, but the maximum ambient temperature range depends on the specific application and the device's power dissipation. In general, the device can operate up to 85°C ambient temperature with proper heat sinking and airflow.

  • To troubleshoot issues with the ATA6823C-PHQW-1, start by checking the input voltage, output voltage, and current. Verify that the device is properly configured and that the PCB layout is correct. Check for signs of overheating, such as excessive temperature rise or thermal shutdown. Use an oscilloscope to check for voltage ripple, noise, or oscillations.

  • The ATA6823C-PHQW-1 is a high-reliability device, but it is not specifically designed for safety-critical applications. However, it can be used in high-reliability applications with proper design, testing, and validation. Consult with Microchip Technology Inc. for specific guidance on using the device in high-reliability or safety-critical applications.