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F0100208B Scheda tecnica(PDF) 10 Page - Eudyna Devices Inc |
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F0100208B Scheda tecnica(HTML) 10 Page - Eudyna Devices Inc |
10 / 10 page 3.3 V / 622 Mb/s Transimpedance Amplifier F0100208B demand superior signal-to-noise ratio, that is, high sensitivity; the F0100208B is the best choice for such applications. The differential circuit configuration in the output enable a complete differential operation to reduce common mode noise: simple single ended output operation is also available. ♦ ♦ ♦ ♦ ♦ Die-Chip Description The F0100208B is shipped like the die-chip described above. The die thickness is typically 280 µm ± 20 µm with the available pad size uncovered by a passivation film of 95 µm square. The material of the pads is TiW/Pt/Au and the backside is metalized by Ti/Au. ♦ ♦ ♦ ♦ ♦ Assembling Condition SEI recommends the assembling process as shown below and affirms sufficient wire- pull and die-shear strength. The heating time of one minute at the temperature of 310 °C gave satisfactory results for die-bonding with AuSn performs. The heating and ultrasonic wire-bonding at the temperature of 150 °C by a ball-bonding machine is effective. ♦ ♦ ♦ ♦ ♦ Quality Assurance For the F01 series products, there is only one technically inevitable drawback in terms of quality assurance which is to be impossible of the burn-in test for screening owing to die- shipment. SEI will not ship them if customers do not agree on this point. On the other hand, the lot assurance test is performed completely without any problems according to SEI’s au- thorized rules. A microscope inspection is conducted in conformance with the MIL-STD- 883C Method 2010.7. ♦ ♦ ♦ ♦ ♦ Precautions Owing to their small dimensions, the GaAs FET’s from which the F0100208B is designed are easily damaged or destroyed if subjected to large transient voltages. Such transients can be generated by power supplies when switched on if not properly decoupled. It is also possible to induce spikes from static-electricity-charged operations or ungrounded equip- ment. Electron Device Department |
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