NOIP1SN1300A-QDI Equivalent & Substitute Parts

Part Overview

The NOIP1SN1300A-QDI is a CMOS image sensor with integrated processor from onsemi's Python series, featuring 1.3 megapixel resolution (1280H x 1024V) in a 48-LCC package. This component is classified as obsolete, making identification of compatible substitute parts essential for ongoing system support and new design implementations. The sensor operates across a 1.8V to 3.3V supply range and delivers 43 frames per second, suitable for embedded imaging applications requiring compact form factors and low power consumption.

Substiute Parts

NOIP1SN1300A-QDI
onsemiIn Stock: 1989NOIP1SN1300A-QDI Datasheet
NOIP1SN1300A-QDI
Current Part
NOIP1SN1300A-QTI
onsemiIn Stock: 100412NOIP1SN1300A-QTI Datasheet
NOIP1SN1300A-QTI
Direct

Key Parameters

Parameter Value
Manufacturer Part Number NOIP1SN1300A-QDI
Manufacturer onsemi
Category Optical Sensors
Type CMOS with Processor
Pixel Size 4.8µm x 4.8µm
Active Pixel Array 1280H x 1024V
Frames per Second 43
Voltage - Supply 1.8V ~ 3.3V
Package / Case 48-LCC (14.22x14.22)
Operating Temperature -40°C ~ 85°C (TJ)
Product Status Obsolete
RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 3 (168 Hours)

Substitute Part Grouping Explanation

Substitution eligibility for the NOIP1SN1300A-QDI is determined by the following critical parameters:

  • Package Compatibility: 48-LCC (14.22x14.22) form factor
  • Pixel Geometry: 4.8µm x 4.8µm pixel size
  • Operating Temperature Range: -40°C ~ 85°C
  • Compliance Standards: ROHS3 Compliant, REACH Unaffected
  • Manufacturer: onsemi

The substitute part NOIP1SN1300A-QTI shares identical package dimensions, pixel size, operating temperature range, and compliance certifications. Both components are manufactured by onsemi and maintain the same base product number (NOIP1S/NOIP1SN1300), confirming functional and mechanical compatibility at the component level.

Parameter Comparison

Parameter NOIP1SN1300A-QDI (Main) NOIP1SN1300A-QTI (Substitute)
Manufacturer onsemi onsemi
Category Optical Sensors Optical Sensors
Type CMOS with Processor CMOS
Pixel Size 4.8µm x 4.8µm 4.8µm x 4.8µm
Package / Case 48-LCC (14.22x14.22) 48-LCC (14.22x14.22)
Operating Temperature -40°C ~ 85°C (TJ) -40°C ~ 85°C
Product Status Obsolete Active
RoHS Status ROHS3 Compliant ROHS3 Compliant
Moisture Sensitivity Level (MSL) 3 (168 Hours) 3 (168 Hours)

Engineering Selection Recommendations

The NOIP1SN1300A-QTI is the direct substitute for the obsolete NOIP1SN1300A-QDI. Both components maintain identical mechanical compatibility through the 48-LCC package specification and equivalent pixel geometry. The substitute part carries Active product status, ensuring continued availability and manufacturing support from onsemi.

Both parts satisfy ROHS3 compliance and REACH requirements, making them suitable for applications subject to environmental and regulatory standards. The identical MSL rating (3, 168 Hours) ensures equivalent handling and storage protocols during assembly and deployment.

Frequently Asked Questions (FAQ)

Q: Can NOIP1SN1300A-QTI directly replace NOIP1SN1300A-QDI in existing designs?

A: Yes. Both components share identical package dimensions (48-LCC, 14.22x14.22), pixel size (4.8µm x 4.8µm), and operating temperature range (-40°C ~ 85°C). Mechanical and thermal compatibility is confirmed.

Q: What is the primary difference between these two parts?

A: The main part (NOIP1SN1300A-QDI) integrates a processor and is classified as obsolete. The substitute (NOIP1SN1300A-QTI) is a CMOS image sensor variant with Active product status, ensuring ongoing availability.

Q: Are there compliance or handling differences?

A: No. Both parts are ROHS3 Compliant, REACH Unaffected, and carry identical MSL ratings (3, 168 Hours), requiring the same handling and storage protocols.

Q: What packaging format is the substitute available in?

A: The NOIP1SN1300A-QTI is supplied in Tray packaging, maintaining the same 48-LCC component form factor.

Q: Is the operating temperature range identical?

A: Yes. Both components operate across -40°C ~ 85°C, ensuring thermal compatibility in equivalent application environments.

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