| Electronic Components Datasheet Search |
|
MP2632 Datasheet(PDF) 33 Page - Monolithic Power Systems |
|
|
|||||||||||||||||||||||||||||
MP2632 Datasheet(HTML) 33 Page - Monolithic Power Systems |
|
33 / 37 page ![]() MP2632 – ALL-IN-ONE, 3A SW CHARGER, 3A BOOST MP2632 Rev.1.0 www.MonolithicPower.com 33 6/24/2016 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2016 MPS. All Rights Reserved. APPLICATION INFORMATION Setting the Charge Current in Charge Mode In charge mode, both the external sense resistor (RS1) and the resistor (RISET) connect to ISET to set the charge current (ICHG) of the MP2632 (see the Typical Application circuit on page 2). Given the expected ICHG and RS1 values, RISET can be calculated with Equation (6): CHG ISET 1500 I (A) R (k ) RS1(m ) (6) For example, if ICHG = 3.0A and RS1 = 1 0mΩ, then RISET = 49.9kΩ. Given a 10mΩ RS1, Table 6 lists the expected RISET values for the typical charge current. Table 6: Charging Current vs. RISET RISET (kΩ) Charge Current (A) 150 1.0 100 1.5 75 2.0 60 2.5 49.9 3.0 Setting the Input Current Limit in Charge Mode In charge mode, connect a resistor from ILIM to AGND to program the input current limit if a dedicated charger (CDP or DCP) is detected. The relationship between the input current limit and setting resistor is shown in Equation (7): ILIM ILIM 40(k ) I (A) R (k ) (7) RILIM must exceed 14.7 kΩ so that IIN_LIM is in the range of 0A to 2.7A. NTC Function in Charge Mode An internal resistor divider sets the low temperature threshold (VTL) and high temperature threshold (VTH) at 66.6% of VSYS and 35% of VSYS, respectively (see Figure 16). For a given NTC thermistor, select an appropriate RT1 and RT2 to set the NTC window with Equation (8) and Equation (9): T2 NTC_Cold TL SYS T1 T2 NTC_Cold R //R V TL 66.6% V R R //R (8) T2 NTC_Hot TH SYS T1 T2 NTC_Hot R //R V TH 35% V R R //R (9) Where RNTC_Hot is the value of the NTC resistor at the upper bound of its operating temperature range, and RNTC_Cold is its lower bound. The two resistors RT1 and RT2 determine the upper and lower temperature limits independently. This flexibility allows the IC to operate with most NTC resistors for different temperature range requirements. Calculate RT1 and RT2 with Equation (10) and Equation (11): NTC_Hot NTC_Cold T1 NTC_Cold NTC_Hot R R (TL TH) R TH TL (R R ) (10) NTC_Cold NTC_Hot T2 NTC_Cold NTC_Hot (TL TH) R R R (1 TL) TH R -(1-TH) TL R (11) For example, the NCP18XH103 thermistor has the following electrical characteristics: At 0°C, R NTC_Cold = 27.445kΩ At 50°C, R NTC_Hot = 4.1601kΩ Based on Equation (17) and Equation (18), an RT1 value of 6.65kΩ and an RT2 value of 25.63kΩ are suitable for an NTC window between 0°C and 50°C. Approximate values are RT1 = 6.65kΩ and RT2 = 25.5kΩ. If no external NTC is available, connect RT1 and RT2 to keep the voltage on NTC within the valid NTC window (e.g.: RT1 = RT2 = 10kΩ). NTC VNTC Low Temp Threshold High Temp Threshold RNTC RT1 RT2 VTL VTH Figure 16: NTC Function Block For convenience, an NTC thermistor design spreadsheet has also been provided. |
|
Link URL |
| Does ALLDATASHEET help your business so far? [ DONATE ] |
About Alldatasheet | Advertisement | Contact us | Privacy Policy | Link to Datasheet | Link Exchange | Manufacturer List All Rights Reserved©Alldatasheet.com |
| Russian : Alldatasheetru.com | Korean : Alldatasheet.co.kr | Spanish : Alldatasheet.es | French : Alldatasheet.fr | Italian : Alldatasheetit.com Portuguese : Alldatasheetpt.com | Polish : Alldatasheet.pl | Vietnamese : Alldatasheet.vn Indian : Alldatasheet.in | Mexican : Alldatasheet.com.mx | British : Alldatasheet.co.uk | New Zealand : Alldatasheet.co.nz |
|
Family Site : ic2ic.com |
icmetro.com |