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MMPF0200 Datasheet(PDF) 80 Page - NXP Semiconductors |
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MMPF0200 Datasheet(HTML) 80 Page - NXP Semiconductors |
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80 / 114 page ![]() 80 NXP Semiconductors PF0200 FUNCTIONAL BLOCK REQUIREMENTS AND BEHAVIORS 6.4.7.1 Coin cell battery backup The LICELL pin provides for a connection of a coin cell backup battery or a “super” capacitor. If the voltage at VIN goes below the VIN threshold (VTL1 and VTL0), contact-bounced, or removed, the coin cell maintained logic will be powered by the voltage applied to LICELL. The supply for internal logic and the VSNVS rail will switch over to the LICELL pin when VIN goes below VTL1 or VTL0, even in the absence of a voltage at the LICELL pin, resulting in clearing of memory and turning off of VSNVS. When system operation below VTL1 is required, for systems not utilizing a coin cell, connect the LICELL pin to any system voltage between 1.8 and 3.0 V. A small capacitor should be placed from LICELL to ground under all circumstances. VSNVS AC and transient tONSNVS Turn-on Time (Load capacitor, 0.47 μF) VIN > UVDET to 90% of VSNVS VCOIN = 0.0 V, ISNVS = 5.0 μA VSNVSVOLT[2:0] = 000 to 110 –– 24 ms (70),(71) VSNVSOSH Start-up Overshoot VSNVSVOLT[2:0] = 000 to 110 ISNVS = 5.0 μA dVIN/dt = 50 mV/μs –40 70 mV VSNVSLITR Transient Line Response ISNVS = 75% of ISNVSMAX 3.2 V < VIN < 4.5 V, VSNVSVOLT[2:0] = 110 2.45 V < VIN < 4.5 V, VSNVSVOLT[2:0] = [000] - [101] – – 32 22 – – mV VSNVSLOTR Transient Load Response VSNVSVOLT[2:0] = 110 3.1 V (UVDETL)< VIN ≤ 4.5 V ISNVS = 75 to 750 μA VSNVSVOLT[2:0] = 000 to 101 2.45 V < VIN ≤ 4.5 V VTL0 > VIN, 1.8 V ≤ VCOIN ≤ 3.3 V ISNVS = 40 to 400 μA Refer to Figure 20 2.8 – – 1.0 – 2.0 V % VSNVS DC, switch VINSNVS Operating Input voltage Valid Coin Cell range 1.8–3.3 V ISNVS Operating Load Current 5.0 – 400 μA RDSONSNVS Internal Switch RDS(on) VCOIN = 2.6 V – – 100 Ω VTL1 VIN Threshold (VIN Powered to Coin Cell Powered) VSNVSVOLT[2:0] = 110 2.725 2.90 3.00 V (72) VTH1 VIN Threshold (Coin Cell Powered to VIN Powered) VSNVSVOLT[2:0] = 110 2.775 2.95 3.1 V Notes 69. For 1.8 V ISNVS limited to 100 μA for VCOIN < 2.1 V 70. The start-up of VSNVS is not monotonic. It first rises to 1.0 V and then settles to its programmed value within the specified tR1 time. 71. From coin cell insertion to VSNVS =1.0 V, the delay time is typically 400 ms. 72. During crossover from VIN to LICELL, the VSNVS output voltage may drop to 2.7 V before going to the LICELL voltage. Though this is outside the specified DC voltage level for the VDD_SNVS_IN pin of the i.MX 6, this momentary drop does not cause any malfunction. The i.MX 6’s RTC continues to operate through the transition, and as a worst case it may switch to the internal RC oscillator for a few clock cycles before switching back to the external crystal oscillator. Table 95. VSNVS electrical characteristics (continued) All parameters are specified at Consumer TA = -40 to 85 °C and Extended Industrial TA = -40 to 105 °C, VIN = 3.6 V, VSNVS = 3.0 V, ISNVS = 5.0 μA, typical external component values, unless otherwise noted. Typical values are characterized at VIN = 3.6 V, VSNVS = 3.0 V, ISNVS = 5.0 μA, and 25 °C, unless otherwise noted. Symbol Parameter Min. Typ. Max. Unit Notes |
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