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AX3702BA датащи(PDF) 4 Page - AXElite technology co. ltd |
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AX3702BA датащи(HTML) 4 Page - AXElite technology co. ltd |
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4 / 17 page ![]() 4/17 Axelite Confidential Materials, do not copy or distribute without written consent. Rev.1.1 Nov.01, 2019 AX3703A ORDER/MARKING INFORMATION Order Information Top Marking (SOT-23-5L) Package Type AX3703A Packing A : Taping X X X B: SOT-23-5L Blank : Bag C: SOT-23-6L Z8: TDFN-8L (2X2) H WW: 01~26(A~Z) 27~52(a~z) ID code: internal AX3703A D Y W X Year: 8=2018 9=2019 B=2020 C=2021 D=2022 : Z=2044 Top Marking (SOT-23-6L) Top Marking (TDFN-8L) H AX3703A WW:01~26 (A~Z) 27~52 (a~z) ID code:internal E Y WX Year: 8=2018 9=2019 B=2020 C=2021 D=2022 : Z=2044 Week: 01~26(A~Z) 27~52(a~z) ID Code: Internal Y W X G E AX3703A Year: 8=2018 9=2019 B=2020 C=2021 D=2022 : Z=2044 ABSOLUTE MAXIMUM RATINGS VIN ….….. …….. -0.3V to +6.5V VSW …………..…..... … -0.3V to VIN +0.3V Dynamic VSW in 10ns Duration -2V to VIN +2V The other Pins ………… ….... -0.3V to +6.5V Junction Temperature Range … -40°C to +150°C Storage Temperature Range . . -65°C to +150°C Lead Temperature( Soldering 10s) … …. … 260°C ESD …………………………………... ….. Class 2 Recommend Operating Conditions (Note2) Input Voltage (VBAT) ………… ..… +2.5V to 5.5V Output Voltage (VOUT) ……… … … +0.6V to VIN Operating Temperature Range ..….. . -40°C to +85°C Thermal information (Note3, 4) Maximum Power Dissipation(TA=25°C ) SOT235(6) ............................................. 0.48W Thermal Resistance(θJA) SOT235(6) ….. …. 210°C/W Thermal Resistance(θJC) SOT235(6) ….... …. 32°C/W DFN2x2_8L .............................................. 2.1W Thermal Resistance(θJA) DFN2x2_8L ….. …. 46°C/W Thermal Resistance(θJC) DFN2x2_8L ……. .. 10°C/W Note (1): Stress exceeding those listed “Absolute Maximum Ratings” may damage the device. Note (2): The device is not guaranteed to function outside of the recommended operating conditions. Note (3): Measured on JESD51-7, 4-Layer PCB. Note (4): The maximum allowable power dissipation is a function of the maximum junction temperature TJ_MAX, the junction to ambient thermal resistance θJA, and the ambient temperature TA. The maximum allowable continuous power dissipation at any ambient temperature is calculated by PD_MAX= (TJ_MAX-TA)/θJA. Exceeding the maximum allowable power dissipation will cause excessive die temperature, and the regulator will go into thermal shutdown. Internal thermal shutdown circuitry protects the device from permanent damage. |
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