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Risk Rank

Risk Rank is a proprietary algorithm Supplyframe has developed to quantify component risk rank using multiple data points. This ranking helps engineers and buyers determine whether alternates should be sought for parts that are deemed as high risk.

Risk Rank Example

Risk Rank is determined by a combination of factors such as product lifecycle status, price & inventory votality, current inventory availability, and much more. Even the availability of manufacturer specifications and part documentation, such as datasheets and reference designs, have an impact on determining the overall riskiness of a part.

The risk is characterized across three product phases:

  • Design
  • Production
  • Long Term

For Purchasing Risk Rank, we focus on the Production and the Long Term Phases on FindChips in our evaluation of Risk.

Production Phase

The production phase is when the product is being assembled. Sourcing parts reliably is the essential task during this phase, as it determines whether the product can continue production. During the production phase, there is no time to test new components if something goes awry – the design is the locked-in and a primary risk factor is the component availability in the marketplace. It is possible to utilize alternative parts if things go wrong during this phase, but they need to be FFF (form, fit, function) compatible. Therefore, if a part is available in the online marketplace and has available FFF components, it will be listed as lower risk.

Long Term Phase

The amount of time that a product is manufactured often depends on the industry. Some automobile electronics are made consistently for 5-10 years, whereas military and industrial electronics could be produced from anywhere from 30-50 years.

This means part risk goes up with the likelihood of obsolescence. If a chip manufacturer decides to stop making a particular chip, it is supremely disruptive to mature products, because there may not even be replacement parts available. Other factors like environmental certifications (RoHS) feed into this as well, as non-certified parts are more likely to become obsolete in the future.

We combine both of these aspects into a Purchasing Risk Rank score in order to focus in on risk elements that would be most pertinent for purchasers to be aware of.

Risk Rank Breakdown

Risk Rank: Purchasing Risk

What is purchasing risk rank?

Purchasing Risk Rank is determined by in-depth analysis across risk factors of production risk and long term risk of a given part.

Learn more
Parametric Data

Part Details for: GD74HCT132J

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Part Details

Risk Rank

Risk Rank is a proprietary algorithm Supplyframe has developed to quantify component risk rank using multiple data points. This ranking helps engineers and buyers determine whether alternates should be sought for parts that are deemed as high risk.

Risk Rank Example

Risk Rank is determined by a combination of factors such as product lifecycle status, price, inventory votality, current inventory availability, and much more. Even the availability of manufacturer specifications and part documentation, such as datasheets and reference designs, have an impact on determining the overall riskiness of a part.

The risk is characterized across three product phases:

  • Design
  • Production
  • Long Term

We focus on the Design Phase on FindChips in our evaluation of Risk.

Design Phase

The design phase of a product is the beginning of the product lifecycle. This is when engineers are doing analysis of components in the marketplace, determining which specifications are most important for their design and assessing the cost impact of using this particular component. While this is early in the product lifecycle, choices at this point can severely impact a product much later on when the product is being made. Additionally, this stage is the one furthest from a product being made, which is why we focus on metrics of stability over time when determining Design Risk.

Risk Rank Breakdown

Risk Rank: Design Risk

What is design risk rank?

Design Risk Rank is determined by in-depth analysis across risk factors, including part availability, functional equivalents, lifecycle, and more.

Learn more

Alternate Parts for: GD74HCT132J

Part Number Description Manufacturer Compare
5962-8683101CA Logic NAND Gate, HCT Series, 4-Func, 2-Input, CMOS, FRIT SEALED, CERDIP-14 Defense Logistics Agency GD74HCT132J vs 5962-8683101CA
CD54HCT132F3A Logic NAND Gate, HCT Series, 4-Func, 2-Input, CMOS, CDIP14 Harris Semiconductor GD74HCT132J vs CD54HCT132F3A
5962-8683101CX Logic NAND Gate, HC/UH Series, 4-Func, 2-Input, TTL, 0.250 X 0.75 INCH, DIP-14 Defense Logistics Agency GD74HCT132J vs 5962-8683101CX
GD74HCT00 Logic NAND Gate, CMOS, PDIP14, LG Semicon Co Ltd GD74HCT132J vs GD74HCT00
M54HC132F1R Logic HC/UH SERIES, QUAD 2-INPUT NAND GATE, CDIP14, CERAMIC, DIP-14 STMicroelectronics GD74HCT132J vs M54HC132F1R
SNJ54HC132J-00 Logic HC/UH SERIES, QUAD 2-INPUT NAND GATE, CDIP14 Texas Instruments GD74HCT132J vs SNJ54HC132J-00
Part Number Description Manufacturer Compare
5962-8683101CX Logic NAND Gate, HC/UH Series, 4-Func, 2-Input, TTL, 0.250 X 0.75 INCH, DIP-14 Defense Logistics Agency GD74HCT132J vs 5962-8683101CX
CD54HCT132F3A Logic NAND Gate, HCT Series, 4-Func, 2-Input, CMOS, CDIP14 Harris Semiconductor GD74HCT132J vs CD54HCT132F3A
GD74HCT00 Logic NAND Gate, CMOS, PDIP14, LG Semicon Co Ltd GD74HCT132J vs GD74HCT00
74HCT132D Logic NAND Gate, CMOS, PDSO14 Philips Semiconductors GD74HCT132J vs 74HCT132D
SNJ54HC132J-00 Logic HC/UH SERIES, QUAD 2-INPUT NAND GATE, CDIP14 Texas Instruments GD74HCT132J vs SNJ54HC132J-00
MC74HC132AD Logic HC/UH SERIES, QUAD 2-INPUT NAND GATE, PDSO14, PLASTIC, SOIC-14 Motorola Mobility LLC GD74HCT132J vs MC74HC132AD
M54HC132F1R Logic HC/UH SERIES, QUAD 2-INPUT NAND GATE, CDIP14, CERAMIC, DIP-14 STMicroelectronics GD74HCT132J vs M54HC132F1R
5962-8683101CA Logic NAND Gate, HCT Series, 4-Func, 2-Input, CMOS, FRIT SEALED, CERDIP-14 Defense Logistics Agency GD74HCT132J vs 5962-8683101CA
MM74HC132M Logic HC/UH SERIES, QUAD 2-INPUT NAND GATE, PDSO14, 0.150 INCH, MS-012, SOIC-14 Rochester Electronics LLC GD74HCT132J vs MM74HC132M
CD74HCT132M96 Logic 4-ch, 2-input, 4.5-V to 5.5-V NAND gates with Schmitt-Trigger inputs 14-SOIC -55 to 125 Texas Instruments GD74HCT132J vs CD74HCT132M96

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