Adhesive composition, method for manufacturing semiconductor device, and semiconductor device
A technology of semiconductors and compositions, applied in the fields of semiconductor/solid-state device manufacturing, semiconductor devices, and semiconductor/solid-state device components, etc., can solve problems such as long-term productivity, narrowing of the gap between semiconductor chips and substrates, and inability to inject, and achieve improved Excellent electrical conductivity, connection reliability, and insulation reliability, and the effect of improving reflow resistance
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Embodiment 1
[0218] 100 parts by mass of epoxy resin (EP1032), 7.5 parts by mass of curing agent (2PHZ), 175 parts by mass of filler (SM silica), 25 parts by mass of flux activator (diphenolic acid) and MEK solvent according to the solid content of 60 Feed in the form of mass %, add microbeads with a diameter of 0.8 mm and microbeads with a diameter of 2.0 mm in the same amount as the solid content, and stir using a bead mill (Fritsch Japan Co., Ltd., planetary fine pulverizer "P-7") 30 minutes. Next, after adding 100 mass parts of polyimide A (in terms of solid content), and stirring again for 30 minutes by the bead mill, the beads used for stirring were removed by filtration, and the resin varnish was obtained.
[0219] The obtained resin varnish was coated on a substrate film (manufactured by Teijin DuPont Film Co., Ltd., trade name "PUREX A53") using a small precision coating device (Yashii Seiki Co., Ltd.), and placed in a clean oven (manufactured by ESPEC Co., Ltd.). , and dried at ...
Embodiment 2~3 and comparative example 1~6
[0221] Except having changed the composition of the raw material used like following Table 1, it carried out similarly to Example 1, and produced the film adhesive of Examples 2-3 and Comparative Examples 1-6.
[0222] Hereinafter, the evaluation method of the film adhesive obtained by the Example and the comparative example is shown.
[0223]
[0224] The film-like adhesive was cut to a predetermined size (length: 37 mm×width: 4 mm×thickness: 0.13 mm), and was cured by holding at 180° C. for 3 hours in a clean oven (manufactured by ESPEC Corporation). After curing, the elastic modulus at 260° C., which is the reaching temperature of the reflow oven at the time of reflow resistance evaluation, was measured using a viscoelasticity measuring device (manufactured by Rheometrics, trade name “RASII”). The measurement was carried out at a temperature range of -30°C to 270°C, a heating rate of 5°C / min, and a measurement wavelength of 10Hz.
[0225]
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