Datasheets
MCP1662T-E/MNY by: Microchip Technology Inc

LED DISPLAY DRIVER

Part Details for MCP1662T-E/MNY by Microchip Technology Inc

Results Overview of MCP1662T-E/MNY by Microchip Technology Inc

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MCP1662T-E/MNY Information

MCP1662T-E/MNY by Microchip Technology Inc is a Display Driver.
Display Drivers are under the broader part category of Drivers And Interfaces.

A driver controls the current or voltage delivered to components like LCDs or motors, while an interface component connects systems for data transfer and control. Read more about Drivers And Interfaces on our Drivers And Interfaces part category page.

Price & Stock for MCP1662T-E/MNY

Part # Distributor Description Stock Price Buy
DISTI # 62X0521
Newark 32V Output, 1.3A Switch, Non-Synchronous Boost Led Driver In Tdfn 8 Tdfn 2X3X0.8Mm T/R Rohs Complian... t: Yes |Microchip MCP1662T-E/MNY more RoHS: Compliant Min Qty: 3300 Package Multiple: 1 Date Code: 0 Container: Reel 0
  • 100 $1.0500
$1.0500 Buy Now
DISTI # MCP1662T-E/MNYTR-ND
DigiKey IC LED DRV RGLTR PWM 200MA 8TDFN Min Qty: 3300 Lead time: 9 Weeks Container: Tape & Reel (TR) Temporarily Out of Stock
  • 3,300 $1.0200
$1.0200 Buy Now
DISTI # MCP1662T-E/MNY
Avnet Americas LED DRVR Boost 1-CH PWM 32V 0.2A 8-Pin TDFN T/R - Tape and Reel (Alt: MCP1662T-E/MNY) RoHS: Compliant Min Qty: 3300 Package Multiple: 3300 Lead time: 7 Weeks, 0 Days Container: Reel 0
  • 3,300 $1.1079
  • 6,600 $1.0903
  • 13,200 $1.0727
  • 19,800 $1.0551
  • 26,400 $1.0375
$1.0375 / $1.1079 Buy Now
DISTI # 579-MCP1662T-E/MNY
Mouser Electronics LED Lighting Driver ICs 32V Output Non-synch Boost LED Driver RoHS: Compliant 0
  • 3,300 $1.0200
$1.0200 Order Now
DISTI # MCP1662T-E/MNY
Microchip Technology Inc Non-Synch High Voltage Boost Converter, TDFN, Projected EOL: 2039-06-25 RoHS: Compliant Lead time: 7 Weeks, 0 Days Container: Reel 13200

Alternates Available
  • 1 $1.3600
  • 25 $1.1300
  • 100 $1.0200
  • 1,000 $1.0000
  • 5,000 $0.9900
$0.9900 / $1.3600 Buy Now
DISTI # 70567657
RS 32V Output, Non-synchronous Boost LED Driver in TDFN | Microchip Technology Inc. MCP1662T-E/MNY RoHS: Not Compliant Min Qty: 3300 Package Multiple: 1 Lead time: 10 Weeks, 0 Days Container: Bulk 0
  • 3,300 $1.9100
  • 33,000 $1.8200
  • 165,000 $1.7200
  • 330,000 $1.6300
$1.6300 / $1.9100 RFQ
Future Electronics   RoHS: Compliant pbFree: Yes Min Qty: 3300 Package Multiple: 3300 0
  • 3,300 $1.0700
$1.0700 Buy Now
Onlinecomponents.com   RoHS: Compliant 16500 Factory Stock
  • 825 $1.9500
  • 1,650 $1.2000
  • 2,475 $0.9500
  • 3,300 $0.9310
$0.9310 / $1.9500 Buy Now
NAC 32V Output, 1.3A Switch, Non-synchronous Boost LED Driver in TDFN - Package: 8 TDFN 2x3x0.8mm T/R RoHS: Compliant Min Qty: 3300 Package Multiple: 3300 0
  • 1 $1.3500
  • 100 $1.2200
  • 500 $1.1300
  • 1,000 $1.1000
$1.1000 / $1.3500 Buy Now
DISTI # MCP1662T-E/MNY
Avnet Silica (Alt: MCP1662T-E/MNY) RoHS: Compliant Min Qty: 3300 Package Multiple: 3300 Lead time: 9 Weeks, 0 Days Silica - 0
Buy Now
DISTI # MCP1662T-E/MNY
EBV Elektronik (Alt: MCP1662T-E/MNY) RoHS: Compliant Min Qty: 3300 Package Multiple: 3300 Lead time: 8 Weeks, 0 Days EBV - 0
Buy Now
Master Electronics   RoHS: Compliant 16500 Factory Stock
  • 825 $1.9500
  • 1,650 $1.2000
  • 2,475 $0.9500
  • 3,300 $0.9310
$0.9310 / $1.9500 Buy Now

Part Details for MCP1662T-E/MNY

MCP1662T-E/MNY Part Data Attributes

MCP1662T-E/MNY Microchip Technology Inc
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MCP1662T-E/MNY Microchip Technology Inc LED DISPLAY DRIVER
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Rohs Code Yes
Part Life Cycle Code Active
Ihs Manufacturer MICROCHIP TECHNOLOGY INC
Package Description TDFN-8
Reach Compliance Code compliant
ECCN Code EAR99
HTS Code 8542.39.00.01
Factory Lead Time 7 Weeks
Samacsys Manufacturer Microchip
Interface IC Type LED DISPLAY DRIVER
JESD-30 Code R-PDSO-N8
JESD-609 Code e4
Length 3 mm
Moisture Sensitivity Level 1
Multiplexed Display Capability NO
Number of Functions 1
Number of Segments 6
Number of Terminals 8
Operating Temperature-Max 125 °C
Operating Temperature-Min -40 °C
Output Polarity TRUE
Package Body Material PLASTIC/EPOXY
Package Code HVSON
Package Equivalence Code SOLCC8,.12,20
Package Shape RECTANGULAR
Package Style SMALL OUTLINE, HEAT SINK/SLUG, VERY THIN PROFILE
Peak Reflow Temperature (Cel) 260
Qualification Status Not Qualified
Screening Level TS 16949
Seated Height-Max 0.8 mm
Supply Voltage-Max 5.5 V
Supply Voltage-Min 2.4 V
Supply Voltage-Nom 3.3 V
Surface Mount YES
Temperature Grade AUTOMOTIVE
Terminal Finish NICKEL PALLADIUM GOLD
Terminal Form NO LEAD
Terminal Pitch 0.5 mm
Terminal Position DUAL
Time@Peak Reflow Temperature-Max (s) 40
Width 2 mm

MCP1662T-E/MNY Frequently Asked Questions (FAQ)

  • Microchip provides a recommended PCB layout in the MCP1662T-E/MNY evaluation board user's guide, which includes guidelines for component placement, routing, and thermal management. Following this layout can help minimize noise, reduce electromagnetic interference (EMI), and ensure reliable operation.

  • The selection of input and output capacitors depends on the specific application requirements, such as output voltage, output current, and ripple rejection. Microchip provides guidelines for capacitor selection in the datasheet, including recommended values for input and output capacitors. Additionally, the application note AN1363 provides more detailed information on capacitor selection and layout considerations.

  • The MCP1662T-E/MNY 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. The datasheet provides thermal management guidelines, including a thermal derating curve, to help designers ensure reliable operation within the specified temperature range.

  • The MCP1662T-E/MNY has a built-in overcurrent protection feature that can be enabled by connecting the OCP pin to a resistor and capacitor network. The application note AN1363 provides a detailed example of how to implement overcurrent protection, including calculation of the required resistor and capacitor values.

  • The recommended startup sequence for the MCP1662T-E/MNY involves applying the input voltage, followed by the enable signal, and then the output voltage. This sequence helps ensure that the device starts up correctly and avoids any potential latch-up or damage. The datasheet provides more detailed information on the recommended startup sequence.