MIP803 PANASONIC | Alldatasheet
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unit: mm Intelligent Power Devices (IPDs) 1: GND 6: V CP 2: GND 7: V CC 3: CIL 8: ENB 4: GND 9: R T1 5: ELD 10: RT2 E L CIL TR2TR1 GND VCC VCP R T1 R T2 ENB GND GND ELD 91 0 Logic circuit Oscillation circuit Step-up circuit MIP803, MIP804 Silicon MOS IC n Features l Allowing downsizing of the sets through the reduction of a parts count resulting from the voltage step-up utilizing a coil instead of a transformer and employing the thin surface mounting package. l Allowing low voltage drive (adaptable to a small and low-voltage battery), or V CC = 3V or 1.5V drive l Allowing to adjust the EL light brightness responding to changes in oscillation frequency which can be changed by the external resistor. n Applications l EL drive n Recommended Set l Watches, pagers, portable CD players, cellular phones, MD play- ers, display panels of remote controllers, and etc. n Block Diagram n Absolute Maximum Ratings (Ta = 25°C) Parameter Power supply voltage Input voltage (ENB) Output voltage (CIL) Output voltage (ELD) Output current (CIL) Output current (ELD) Allowable power dissipation Operating ambient temperature Channel temperature Storage temperature Symbol V CC V ENB V CIL V ELD ICIL IELD PD T opr Tch Tstg Ratings - 0.5 to 4 - 0.5 to VCC + 0.5 - 0.5 to 220 - 0.5 to 220 120 150 -20 to +70 -20 to +125 -55 to +125 Unit V V V V mA mA mW 4.3±0.2 0.625±0.1 1.4±0.2 0 to 0.2 3.0±0.2 2 to 6˚ 2 to 12˚ 2 to 6˚ 2 to 12˚ 0.15±0.05
Intelligent Power Devices (IPDs) n Electrical Characteristics (VCC = 2.5V/1.2V, VENB = 2.5V/1.2V, GND = 0, TC = 25 ± 2°C) Parameter Supply voltage Output frequency Change of output frequency High level input voltage (ENB) Low level input voltage (ENB) Output R1 ) Output (TR2 ) Clime power the inside voltage Statically consumption current Consumption current Symbol V CC fOSC Dfv Note) V IH V IL V DSS IDS R ON IOFF V DSS IDS R ON IOFF V CP IC ICC Conditions R T = 390kW R T = 240kW R T = 390kW R T = 240kW V CC = 1.5 to 3.5V V CC = 0.9 to 3.3V V CC = 1.5 to 3.5V V CC = 0.9 to 3.3V IOFF(TR1) = 0.1mA V DS(TR1) = 20V IDS(TR1) = 10mA V DS(TR1) = 160V IOFF(TR2) = 0.1mA V DS(TR2) = 20V IDS(TR2) = 10mA V DS(TR2) = 160V V CC = VENB = 1.5V, CCP = 1000pF, RT = 390kW V CC = VENB = 0.9V, CCP = 1000pF, RT = 240kW V CC = 3.5V, VENB = 0 V CC = 3.3V, VENB = 0 V CC = VENB = 3.5V, RT = 390kW V CC = VENB = 3.3V, RT = 240kW min 1.5 0.9 119 195 -15 0.8 200 200 0.5 0.7 typ 2.5 140 230 6.5 0.75 max 3.5 3.5 161 265 0.3 0.1 1.4 0.1 0.1 1.5 1.5 Unit V kHz V V V mA W mA V mA kW mA V mA mA MIP803, MIP804 Note:D fv: Caluculation is made as follows: Dfv = (fosc /f1 + f2 - 1) · 1002 MIP803 f 1: fosc at VCC = 1.5V, f2: fosc at VCC = 3.5V MIP804 f 1: fosc at VCC = 0.9V, f2: fosc at VCC = 3.5V n Pin Descriptions Pin No. Symbol GND GND C IL GND E LD V CP V CC ENB R T1 R T2
Description
Drain pin of the voltage step-up MOS FET GND pin Drain pin of the EL drive MOS FET Capacitor connection pin for internal voltage step-up power supply Power input pin ENABLE signal input pin for controlling the EL driver (if ENB = H, the EL driver becomes ON and if ENB = L/OPEN, it becomes OFF) Internal oscillation circuit output pin OSC resistor connection pin for connecting the OSC resistor between RT1 and RT2 Breakdown voltage Saturation current ON-state resistance Off-leakage current Breakdown voltage Saturation current ON-state resistance Off-leakage current MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 MIP803 MIP804 Pin Name GND pin GND pin Output for voltage step-up GND pin Output for EL driving Internal voltage step-up pin Power input pin ENABLE pin Internal oscillation output OSC resistor connecting pin