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MB15E05SRPV1 Datasheet(PDF) 6 Page - Fujitsu Component Limited. |
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MB15E05SRPV1 Datasheet(HTML) 6 Page - Fujitsu Component Limited. |
6 / 25 page MB15E05SR 6 s ELECTRICAL CHARACTERISTICS (VCC = 2.7 V to 5.0 V, Ta = –40 °C to +85 °C) *1: Conditions; fosc = 13 MHz, Vosc = 1.2 VPP, Ta = +25 °C, in locking state. *2: VCC = VP = 3.75 V, fosc = 13 MHz, Vosc = 1.2 VPP, Ta = +25 °C, in power saving mode *3: AC coupling. 1000 pF capacitor is connected under the condition of min. operating frequency. *4: The symbol “–” (minus) means direction of current flow. *5: VCC = VP = 3.75 V, Ta = +25 °C (||I3| – |I4||) / [(|I3| + |I4|) /2] × 100(%) (Continued) Parameter Symbol Condition Value Unit Min Typ Max Power supply current*1 ICC fin = 2000 MHz, VCC = VP = 3.75 V – 7.0 – mA Power saving current IPS PS = “L” – 0.1*2 20 µA Operating frequency fin fIN – 300 – 2000 MHz OSCIN fosc – 3 – 40 MHz Input sensitivity fin*3 Pfin 50 Ω system (Refer to the measurement circuit.) –15 – +2 dBm OSCIN*3 VOSC –0.5 – VCC Vp-p “H” level input voltage Data, Clock, LE, PS VIH –VCC × 0.7 – – V “L” level input voltage VIL –– – VCC × 0.3 “H” level input current Data, Clock, LE, PS IIH*4 – –1.0 – +1.0 µA “L” level input current IIL*4 – –1.0 – +1.0 “H” level input current OSCIN IIH – 0 – +100 µA “L” level input current IIL*4 ––100 – 0 “H” level output voltage LD/fout VOH VCC = VP = 3.75 V, IOH = –1 mA VCC – 0.4 – – V “L” level output voltage VOL VCC = VP = 3.75 V, IOL = 1 mA – – 0.4 “H” level output voltage Do VDOH VCC = VP = 3.75 V, IDOH = –0.5 mA VP – 0.4 – – V “L” level output voltage VDOL VCC = VP = 3.75 V, IDOL = 0.5 mA – – 0.4 High impedance cutoff current Do IOFF VCC = VP = 3.75 V, VOFF = 0.5 V to VP – 0.5 V –– 2.5 nA “H” level output current LD/fout IOH VCC = VP = 3.75 V – – –1.0 mA “L” level output current IOL VCC = VP = 3.75 V 1.0 – – “H” level output current Do IDOH*4 VCC = 3.75 V, VP = 3.75 V, VDO = VP/2, Ta = +25 °C CS bit = “1” – –4.0 – mA CS bit = “0” – –1.0 – “L” level output current IDOL CS bit = “1” – 4.0 – CS bit = “0” – 1.0 – Charge pump current rate IDOL/ IDOH IDOMT*5 VDO = VP/2 – 5 – % vs VDO IDOVD*6 0.5 V ≤ VDO ≤ VP – 0.7 V – 10 – % vs Ta IDOTA*7 – 40 °C ≤ Ta ≤ +85°C, VDO = VP/2 – 3 – % |
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