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AFB0612VHC by:
Delta Electronics Inc
Delta Electronics Inc
Delta Fan
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12V DC FAN 60X60X13 MM

Part Details for AFB0612VHC by Delta Electronics Inc

Results Overview of AFB0612VHC by Delta Electronics Inc

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Applications Consumer Electronics

Price & Stock for AFB0612VHC

Part # Distributor Description Stock Price Buy
DISTI # 603-1292-ND
DigiKey FAN AXIAL 60X13MM 12VDC WIRE Min Qty: 270 Lead time: 32 Weeks Container: Bulk Temporarily Out of Stock
  • 270 $9.5193
$9.5193 Buy Now
DISTI # 108-AFB0612VHC
Mouser Electronics DC Fans DC Tubeaxial Fan, 60x13mm, 12VDC, Ball Bearing, Lead Wires RoHS: Compliant 0
  • 1 $13.0400
  • 10 $12.5700
  • 25 $11.6100
  • 50 $10.9000
  • 100 $10.0400
  • 270 $9.5200
$9.5200 / $13.0400 Order Now
DISTI # 75113998
RS Axial Square-60mm L x 60mm H x 13 mm W 5VDC 2 Leads | Delta Electronics AFB0612VHC RoHS: Not Compliant Min Qty: 270 Package Multiple: 1 Lead time: 32 Weeks, 0 Days Container: Bulk 0
  • 270 $9.6100
  • 540 $9.2300
  • 1,080 $8.9400
$8.9400 / $9.6100 RFQ

Part Details for AFB0612VHC

AFB0612VHC CAD Models

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AFB0612VHC Part Data Attributes

AFB0612VHC Delta Electronics Inc
Buy Now Datasheet
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AFB0612VHC Delta Electronics Inc 12V DC FAN 60X60X13 MM
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Part Life Cycle Code Obsolete
Ihs Manufacturer DELTA ELECTRONICS INC
Reach Compliance Code unknown
Factory Lead Time 52 Weeks
Samacsys Manufacturer Delta Electronics
Additional Feature APPROVAL: VDE
Airflow 27.72 CFM
Approvals CE;CSA;UL
Bearing Type BALL
Body Material PLASTIC
Construction AXIAL
Height 60 mm
Length 60 mm
Life Expectancy 70000 h
Noise 42 dB
Operating Temperature-Max 70 °C
Operating Temperature-Min -10 °C
Pressure 6.41 mmH2O
Rated Current 0.36 A
Rated Power 4.32 W
Rated Voltage 12 V
Speed 5400 rpm
Thermal Support Device Type DC FAN
Weight 33.5 g
Width 13 mm

AFB0612VHC Frequently Asked Questions (FAQ)

  • A good PCB layout for optimal thermal performance would be to have a large copper area connected to the thermal pad, and to use thermal vias to dissipate heat to the other side of the board. Additionally, keeping the components away from the thermal pad and using a thermal interface material can help improve heat dissipation.

  • To ensure reliable operation in high-temperature environments, it's essential to follow the recommended derating curves, ensure good airflow, and use a suitable thermal interface material. Additionally, consider using a heat sink or a fan to reduce the operating temperature.

  • The recommended input capacitors are low-ESR ceramic capacitors with a voltage rating of at least 50V and a capacitance of 10-22uF. For the output, use low-ESR ceramic capacitors with a voltage rating of at least 15V and a capacitance of 10-22uF. The capacitor values may vary depending on the specific application and output current requirements.

  • To protect the module from overvoltage and undervoltage conditions, consider using a voltage supervisor or a voltage monitor IC to detect and respond to abnormal voltage conditions. Additionally, use a suitable input fuse or PTC to prevent overcurrent conditions.

  • The recommended startup sequence is to first apply the input voltage, followed by the enable signal. This ensures that the module is properly initialized and configured before starting to operate.