Part Details for MCP42010T-E/SL by Microchip Technology Inc
Results Overview of MCP42010T-E/SL by Microchip Technology Inc
- Distributor Offerings: (11 listings)
- Number of FFF Equivalents: (0 replacements)
- CAD Models: (Request Part)
- Number of Functional Equivalents: (0 options)
- Part Data Attributes: (Available)
- Reference Designs: (Not Available)
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MCP42010T-E/SL Information
MCP42010T-E/SL by Microchip Technology Inc is a Digital Potentiometer.
Digital Potentiometers are under the broader part category of Converters.
A converter is an electrical circuit that transforms electric energy into a different form that will support a elecrical load needed by a device. Read more about Converters on our Converters part category page.
Price & Stock for MCP42010T-E/SL
Part # | Distributor | Description | Stock | Price | Buy | |
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DISTI #
88H9838
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Newark | Ic, digital Potentiometer, cmos, sop,14Pin, plastic Rohs Compliant: Yes |Microchip MCP42010T-E/SL RoHS: Compliant Min Qty: 2600 Package Multiple: 1 Date Code: 0 Container: Reel | 0 |
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$2.4100 | Buy Now |
DISTI #
MCP42010T-E/SL-ND
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DigiKey | IC DGTL POT 10KOHM 256TAP 14SOIC Min Qty: 2600 Lead time: 6 Weeks Container: Tape & Reel (TR) | Temporarily Out of Stock |
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$2.4625 | Buy Now |
DISTI #
MCP42010T-E/SL
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Avnet Americas | Digital Potentiometer, Volatile, 10 kOhm, Dual, 256 Steps, ? 800 ppm/?C, 2.7 V to 5.5 V, 14 Pins, NSOIC - Tape and Reel (Alt: MCP42010T-E/SL) RoHS: Compliant Min Qty: 2600 Package Multiple: 2600 Lead time: 6 Weeks, 0 Days Container: Reel | 0 |
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$2.3049 / $2.4625 | Buy Now |
DISTI #
579-MCP42010T-E/SL
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Mouser Electronics | Digital Potentiometer ICs 256 Step SPI 10kOhm RoHS: Compliant | 0 |
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$2.4600 | Order Now |
DISTI #
MCP42010T-E/SL
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Microchip Technology Inc | Digital Pot, 256 steps, SPI, 10kohms, dual channel, SOIC, Projected EOL: 2034-08-01 COO: Thailand ECCN: EAR99 RoHS: Compliant Lead time: 6 Weeks, 0 Days Container: Reel |
0 Alternates Available |
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$2.2100 / $3.0700 | Buy Now |
DISTI #
70567774
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RS | Digital Pot, 256 steps, SPI, 10kohms, dual channel Min Qty: 2600 Package Multiple: 1 Lead time: 52 Weeks, 0 Days Container: Bulk | 0 |
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$4.2700 / $5.0200 | RFQ |
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Onlinecomponents.com | RoHS: Compliant | 0 |
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$2.5200 / $7.0900 | Buy Now |
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NAC | Digital Pot, 256 steps, SPI, 10kohms, dual channel - Package: 14 SOIC .150in T/R RoHS: Compliant Min Qty: 2600 Package Multiple: 2600 | 0 |
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$2.4600 / $3.0300 | Buy Now |
DISTI #
MCP42010T-E/SL
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Avnet Silica | Digital Potentiometer Volatile 10 kOhm Dual 256 Steps 800 ppmC 27 V to 55 V 14 Pins NSOIC (Alt: MCP42010T-E/SL) RoHS: Compliant Min Qty: 2600 Package Multiple: 2600 Lead time: 8 Weeks, 0 Days | Silica - 0 |
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Buy Now | |
DISTI #
MCP42010T-E/SL
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EBV Elektronik | Digital Potentiometer Volatile 10 kOhm Dual 256 Steps 800 ppmC 27 V to 55 V 14 Pins NSOIC (Alt: MCP42010T-E/SL) RoHS: Compliant Min Qty: 2600 Package Multiple: 2600 Lead time: 7 Weeks, 0 Days | EBV - 0 |
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Buy Now |
Part Details for MCP42010T-E/SL
MCP42010T-E/SL CAD Models
MCP42010T-E/SL Part Data Attributes
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MCP42010T-E/SL
Microchip Technology Inc
Buy Now
Datasheet
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MCP42010T-E/SL
Microchip Technology Inc
DUAL 10K DIGITAL POTENTIOMETER, 3-WIRE SERIAL CONTROL INTERFACE, 256 POSITIONS, PDSO14, 0.150 INCH, PLASTIC, SOIC-14
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Pbfree Code | Yes | |
Rohs Code | Yes | |
Part Life Cycle Code | Active | |
Ihs Manufacturer | MICROCHIP TECHNOLOGY INC | |
Part Package Code | SOIC | |
Package Description | 0.150 INCH, PLASTIC, SOIC-14 | |
Pin Count | 14 | |
Reach Compliance Code | compliant | |
ECCN Code | EAR99 | |
HTS Code | 8542.39.00.01 | |
Factory Lead Time | 6 Weeks | |
Samacsys Manufacturer | Microchip | |
Bandwidth-Nom | 1 kHz | |
Control Interface | 3-WIRE SERIAL | |
Converter Type | DIGITAL POTENTIOMETER | |
JESD-30 Code | R-PDSO-G14 | |
JESD-609 Code | e3 | |
Length | 8.65 mm | |
Moisture Sensitivity Level | 1 | |
Number of Functions | 2 | |
Number of Positions | 256 | |
Number of Terminals | 14 | |
Operating Temperature-Max | 125 °C | |
Operating Temperature-Min | -40 °C | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | SOP | |
Package Equivalence Code | SOP14,.24 | |
Package Shape | RECTANGULAR | |
Package Style | SMALL OUTLINE | |
Peak Reflow Temperature (Cel) | 260 | |
Qualification Status | Not Qualified | |
Resistance Law | LINEAR | |
Resistance Tolerance-Max | 20% | |
Resistor Terminal Voltage-Max | 5 V | |
Resistor Terminal Voltage-Min | ||
Screening Level | TS 16949 | |
Seated Height-Max | 1.75 mm | |
Supply Current-Max | 0.6 mA | |
Supply Voltage-Nom | 5 V | |
Surface Mount | YES | |
Technology | CMOS | |
Temperature Coefficient-Nom | 800 ppm/°C | |
Temperature Grade | AUTOMOTIVE | |
Terminal Finish | Matte Tin (Sn) | |
Terminal Form | GULL WING | |
Terminal Pitch | 1.27 mm | |
Terminal Position | DUAL | |
Time@Peak Reflow Temperature-Max (s) | 40 | |
Total Resistance-Nom | 10000 Ω | |
Width | 3.9 mm |
MCP42010T-E/SL Frequently Asked Questions (FAQ)
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Microchip recommends following a star-grounding scheme, keeping analog and digital grounds separate, and using a solid ground plane to minimize noise. Additionally, keep the analog and digital signal traces separate and avoid running them parallel to each other.
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The MCP42010T-E/SL has an internal calibration circuit that can be enabled by setting the CAL bit in the Configuration Register. Additionally, users can perform an external calibration by applying a known input voltage and adjusting the offset and gain registers accordingly.
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The maximum input voltage that the MCP42010T-E/SL can handle is 5.5V, which is the absolute maximum rating. However, the recommended input voltage range is 0V to 5V to ensure accurate and reliable operation.
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The MCP42010T-E/SL is rated for operation up to 125°C, but the accuracy and linearity of the device may degrade at higher temperatures. Users should consult the datasheet for temperature-related specifications and consider using thermal management techniques to keep the device within its recommended operating temperature range.
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To troubleshoot issues with the MCP42010T-E/SL, users should first consult the datasheet and application notes to ensure proper configuration and usage. Then, they can use tools such as oscilloscopes and logic analyzers to debug the issue, checking for proper communication protocols, clock signals, and voltage levels.