MC7900 MOTOROLA | Alldatasheet
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/C0077/C0067/C0055/C0057/C0048/C0048 /C0083/C0101/C0114/C0105/C0101/C0115 DEVICE TYPE/NOMINAL OUTPUT VOLTAGE MC7905 MC7905.2 MC7906 MC7908 5.0 V 5.2 V 6.0 V 8.0 V MC7912 MC7915 MC7918 MC7924 12 V 15 V 28 V 24 V THREE–TERMINAL NEGATIVE FIXED VOLTAGE REGULATORS Pin 1. Ground 2. Input 3. Output STANDARD APPLICATION A common ground is required between the input and the output voltages. The input voltage must remain typically 2.0 V above more negative even during the high point of the input ripple voltage. These two digits of the type number indicate nominal voltage. C in is required if regulator is located an appreciable distance from power supply filter. C O improve stability and transient response. MC79XXInput C in* 0.33 µF C O ** 1.0 µF Output T SUFFIX PLASTIC PACKAGE CASE 221A Heatsink surface connected to Pin 2. D2T SUFFIX PLASTIC PACKAGE CASE 936 (D2PAK) 1 2 Heatsink surface (shown as terminal 4 in case outline drawing) is connected to Pin 2. XX, Order this document by MC7900/D 1MOTOROLA ANALOG IC DEVICE DATA /C0084/C0104/C0114/C0101/C0101/C0045/C0084/C0101/C0114/C0109/C0105/C0110/C0097/C0108 /C0078/C0101/C0103/C0097/C0116/C0105/C0118/C0101 /C0086/C0111/C0108/C0116/C0097/C0103/C0101 /C0082/C0101/C0103/C0117/C0108/C0097/C0116/C0111/C0114/C0115 The MC7900 series of fixed output negative voltage regulators are intended as complements to the popular MC7800 series devices. These negative regulators are available in the same seven–voltage options as the MC7800 devices. In addition, one extra voltage option commonly employed in MECL systems is also available in the negative MC7900 series. Available in fixed output voltage options from –5.0 V to –24 V, these regulators employ current limiting, thermal shutdown, and safe–area compensation – making them remarkably rugged under most operating conditions. With adequate heatsinking they can deliver output currents in excess of 1.0 A.
- No External Components Required
- Internal Thermal Overload Protection
- Internal Short Circuit Current Limiting
- Output Transistor Safe–Area Compensation
- Available in 2% Voltage Tolerance (See Ordering Information) Representative Schematic Diagram Gnd VO VI 2.4 k 3.6 k 1.2 k 1.1 k 2.0 k 12 k 1.0 k 4.0 k 2.0 k 14.7 k 2.0 k 8.0 k 1.0 k 1.6 k 4.0 k 0.3 10 k 10 k 20 k 20 k 20 pF 10 pF 240 750 R 1 R 2 This device contains 26 active transistors.
ORDERING INFORMATION
MC79XXACD2T 2% T0 ° 125°C Surface Mount MC79XXCD2T 4% TJ =0 ° to +125°C Surface Mount MC79XXACT 2% TJ = 0° to +125°C Insertion Mount MC79XXCT 4% Insertion M ount MC79XXBD2T Surface Mount MC79XXBT Insertion Mount XX indicates nominal voltage. Motorola, Inc. 1996 Rev 6
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MAXIMUM RATINGS (TA = +25°C, unless otherwise noted.) Rating Symbol Value Unit Input Voltage (–5.0 V ≥ VO ≥ –18 V) Input Voltage(24 V) VI –35 –40 Vdc Power Dissipation Case 221A TA = +25°C PD Internally Limited W Thermal Resistance, Junction–to–AmbientθJA 65 °C/W Thermal Resistance, Junction–to–Case θJC 5.0 °C/W Case 936 (D2PAK) TA = +25°C PD Internally Limited W Thermal Resistance, Junction–to–AmbientθJA 70 °C/W Thermal Resistance, Junction–to–Case θJC 5.0 °C/W Storage Junction Temperature Range Tstg –65 to +150 °C Junction Temperature TJ +150 °C THERMAL CHARACTERISTICS Characteristics Symbol Max Unit Thermal Resistance, Junction–to–Ambient R θJA 65 °C/W Thermal Resistance, Junction–to–Case R θJC 5.0 °C/W MC7905C ELECTRICAL CHARACTERISTICS (VI = –10 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –4.8 –5.0 –5.2 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –7.0 Vdc ≥ VI ≥ –25 Vdc –8.0 Vdc ≥ VI ≥ –12 Vdc (TJ = +25°C, IO = 500 mA) –7.0 Vdc ≥ VI ≥ –25 Vdc –8.0 Vdc ≥ VI ≥ –12 Vdc Reg line 7.0 2.0 8.0 100 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 4.0 100 mV Output Voltage –7.0 Vdc ≥ VI ≥ –20 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –4.75 – –5.25 Vdc Input Bias Current (TJ = +25°C) IIB – 4.3 8.0 mA Input Bias Current Change –7.0 Vdc ≥ VI ≥ –25 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.3 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 40 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 70 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage IO = 5.0 mA, 0°C ≤ TJ ≤ +125°C ΔVO /ΔT – –1.0 – mV/°C NOTE: 1. Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken into account separately. NOTE: 1. Pulse testing with low duty cycle is used.
3MOTOROLA ANALOG IC DEVICE DATA MC7905AC ELECTRICAL CHARACTERISTICS (VI = –10 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –4.9 –5.0 –5.1 Vdc Line Regulation (Note 1) –8.0 Vdc ≥ VI ≥ –12 Vdc; IO = 1.0 A, TJ = +25°C –8.0 Vdc ≥ VI ≥ –12 Vdc; IO = 1.0 A –7.5 Vdc ≥ VI ≥ –25 Vdc; IO = 500 mA –7.0 Vdc ≥ VI ≥ –20 Vdc; IO = 1.0 A, TJ = +25°C Reg line 2.0 7.0 7.0 6.0 mV Load Regulation (Note 1) 5.0 mA ≤ IO ≤ 1.5 A, TJ = +25°C 250 mA ≤ IO ≤ 750 mA 5.0 mA ≤ IO ≤ 1.0 A Reg load 4.0 9.0 100 100 mV Output Voltage –7.5 Vdc ≥ VI ≥ –20 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –4.80 – –5.20 Vdc Input Bias Current IIB – 4.4 8.0 mA Input Bias Current Change –7.5 Vdc ≥ VI ≥ –25 Vdc 5.0 mA ≤ IO ≤ 1.0 A 5.0 mA ≤ IO ≤ 1.5 A, TJ = +25°C ΔIIB 1.3 0.5 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 40 – µV Ripple Rejection (IO = mA, f = 120 Hz) RR – 70 – dB Dropout Voltage IO = 1.0 A. TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage ΔVO /ΔT – –1.0 – mV/°C MC7905.2C ELECTRICAL CHARACTERISTICS (VI = –10 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –5.0 –5.2 –5.4 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –7.2 Vdc ≥ VI ≥ –25 Vdc –8.0 Vdc ≥ VI ≥ –12 Vdc (TJ = +25°C, IO = 500 mA) –7.2 Vdc ≥ VI ≥ –25 Vdc –8.0 Vdc ≥ VI ≥ –12 Vdc Reg line 8.0 2.2 8.5 105 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 4.5 105 mV Output Voltage –7.2 Vdc ≥ VI ≥ –20 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –4.95 – –5.45 Vdc Input Bias Current (TJ = +25°C) IIB – 4.3 8.0 mA Input Bias Current Change –7.2 Vdc ≥ VI ≥ –25 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.3 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 42 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 68 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage IO = 5.0 mA, 0°C ≤ TJ ≤ +125°C ΔVO /ΔT – –1.0 – mV/°C NOTE: 1. Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken into account separately. NOTE: 1. Pulse testing with low duty cycle is used.
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ELECTRICAL CHARACTERISTICS (VI = –11 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –5.75 –6.0 –6.25 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –8.0 Vdc ≥ VI ≥ –25 Vdc –9.0 Vdc ≥ VI ≥ –13 Vdc (TJ = +25°C, IO = 500 mA) –8.0 Vdc ≥ VI ≥ –25 Vdc –9.0 Vdc ≥ VI ≥ –13 Vdc Reg line 9.0 3.0 120 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 5.0 120 mV Output Voltage –8.0 Vdc ≥ VI ≥ –21 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –5.7 – –6.3 Vdc Input Bias Current (TJ = +25°C) IIB – 4.3 8.0 mA Input Bias Current Change –8.0 Vdc ≥ VI ≥ –25 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.3 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 45 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 65 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage ΔVO /ΔT – –1.0 – mV/°C MC7908C ELECTRICAL CHARACTERISTICS (VI = –14 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –7.7 –8.0 –8.3 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –10.5 Vdc ≥ VI ≥ –25 Vdc –11 Vdc ≥ VI ≥ –17 Vdc (TJ = +25°C, IO = 500 mA) –10.5 Vdc ≥ VI ≥ –25 Vdc –11 Vdc ≥ VI ≥ –17 Vdc Reg line 5.0 160 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 9.0 160 mV Output Voltage –10.5 Vdc ≥ VI ≥ –23 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –7.6 – –8.4 Vdc Input Bias Current (TJ = +25°C) IIB – 4.3 8.0 mA Input Bias Current Change –10.5 Vdc ≥ VI ≥ –25 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.0 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 52 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 62 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage IO = 5.0 mA, 0°C ≤ TJ ≤ +125°C ΔVO /ΔT – –1.0 – mV/°C NOTE: 1. Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken into account separately. NOTE: 1. Pulse testing with low duty cycle is used.
5MOTOROLA ANALOG IC DEVICE DATA MC7912C ELECTRICAL CHARACTERISTICS (VI = –19 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –11.5 –12 –12.5 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –14.5 Vdc ≥ VI ≥ –30 Vdc –16 Vdc ≥ VI ≥ –22 Vdc (TJ = +25°C, IO = 500 mA) –14.5 Vdc ≥ VI ≥ –30 Vdc –16 Vdc ≥ VI ≥ –22 Vdc Reg line 6.0 120 240 120 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 240 120 mV Output Voltage –14.5 Vdc ≥ VI ≥ –27 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –11.4 – –12.6 Vdc Input Bias Current (TJ = +25°C) IIB – 4.4 8.0 mA Input Bias Current Change –14.5 Vdc ≥ VI ≥ –30 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.0 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 75 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 61 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage IO = 5.0 mA, 0°C ≤ TJ ≤ +125°C ΔVO /ΔT – –1.0 – mV/°C MC7912AC ELECTRICAL CHARACTERISTICS (VI = –19 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –11.75 –12 –12.25 Vdc Line Regulation (Note 1) –16 Vdc ≥ VI ≥ –22 Vdc; IO = 1.0 A, TJ = +25°C –16 Vdc ≥ VI ≥ –22 Vdc; IO = 1.0 A –14.8 Vdc ≥ VI ≥ –30 Vdc; IO = 500 mA –14.5 Vdc ≥ VI ≥ –27 Vdc; IO = 1.0 A, TJ = +25°C Reg line 6.0 120 120 120 mV Load Regulation (Note 1) 5.0 mA ≤ IO ≤ 1.5 A, TJ = +25°C 250 mA ≤ IO ≤ 750 mA 5.0 mA ≤ IO ≤ 1.0 A Reg load 150 150 mV Output Voltage –14.8 Vdc ≥ VI ≥ –27 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –11.5 – –12.5 Vdc Input Bias Current IIB – 4.4 8.0 mA Input Bias Current Change –15 Vdc ≥ VI ≥ –30 Vdc 5.0 mA ≤ IO ≤ 1.0 A 5.0 mA ≤ IO ≤ 1.5 A, TJ = +25°C ΔIIB 0.8 0.5 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 75 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 61 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage ΔVO /ΔT – –1.0 – mV/°C NOTE: 1. Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken into account separately. NOTE: 1. Pulse testing with low duty cycle is used.
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ELECTRICAL CHARACTERISTICS (VI = –23 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –14.4 –15 –15.6 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –17.5 Vdc ≥ VI ≥ –30 Vdc –20 Vdc ≥ VI ≥ –26 Vdc (TJ = +25°C, IO = 500 mA) –17.5 Vdc ≥ VI ≥ –30 Vdc –20 Vdc ≥ VI ≥ –26 Vdc Reg line 6.0 150 300 150 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 300 150 mV Output Voltage –17.5 Vdc ≥ VI ≥ –30 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –14.25 – –15.75 Vdc Input Bias Current (TJ = +25°C) IIB – 4.4 8.0 mA Input Bias Current Change –17.5 Vdc ≥ VI ≥ –30 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.0 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 90 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 60 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage ΔVO /ΔT – –1.0 – mV/°C MC7915AC ELECTRICAL CHARACTERISTICS (VI = –23 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –14.7 –15 –15.3 Vdc Line Regulation (Note 1) –20 Vdc ≥ VI ≥ –26 Vdc, IO = 1.0 A, TJ = +25°C –20 Vdc ≥ VI ≥ –26 Vdc, IO = 1.0 A, –17.9 Vdc ≥ VI ≥ –30 Vdc, IO = 500 mA –17.5 Vdc ≥ VI ≥ –30 Vdc, IO = 1.0 A, TJ = +25°C Reg line 150 150 150 mV Load Regulation (Note 1) 5.0 mA ≤ IO ≤ 1.5 A, TJ = +25°C 250 mA ≤ IO ≤ 750 mA 5.0 mA ≤ IO ≤ 1.0 A Reg load 150 150 mV Output Voltage –17.9 Vdc ≥ VI ≥ –30 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –14.4 – –15.6 Vdc Input Bias Current IIB – 4.4 8.0 mA Input Bias Current Change –17.5 Vdc ≥ VI ≥ –30 Vdc 5.0 mA ≤ IO ≤ 1.0 A 5.0 mA ≤ IO ≤ 1.5 A, TJ = +25°C ΔIIB 0.8 0.5 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 90 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 60 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage IO = 5.0 mA, 0°C ≤ TJ ≤ +125°C ΔVO /ΔT – –1.0 – mV/°C NOTE: 1. Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken into account separately. NOTE: 1. Pulse testing with low duty cycle is used.
7MOTOROLA ANALOG IC DEVICE DATA MC7918C ELECTRICAL CHARACTERISTICS (VI = –27 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –17.3 –18 –18.7 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –21 Vdc ≥ VI ≥ –33 Vdc –24 Vdc ≥ VI ≥ –30 Vdc (TJ = +25°C, IO = 500 mA) –21 Vdc ≥ VI ≥ –33 Vdc –24 Vdc ≥ VI ≥ –30 Vdc Reg line 180 360 180 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 110 360 180 mV Output Voltage –21 Vdc ≥ VI ≥ –33 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –17.1 – –18.9 Vdc Input Bias Current (TJ = +25°C) IIB – 4.5 8.0 mA Input Bias Current Change –21 Vdc ≥ VI ≥ –33 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.0 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 110 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 59 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage IO = 5.0 mA, 0°C ≤ TJ ≤ +125°C ΔVO /ΔT – –1.0 – mV/°C MC7924C ELECTRICAL CHARACTERISTICS (VI = –33 V, IO = 500 mA, 0°C < TJ < +125°C, unless otherwise noted.) Characteristics Symbol Min Typ Max Unit Output Voltage (TJ = +25°C) VO –23 –24 –25 Vdc Line Regulation (Note 1) (TJ = +25°C, IO = 100 mA) –27 Vdc ≥ VI ≥ –38 Vdc –30 Vdc ≥ VI ≥ –36 Vdc (TJ = +25°C, IO = 500 mA) –27 Vdc ≥ VI ≥ –38 Vdc –30 Vdc ≥ VI ≥ –36 Vdc Reg line 118 240 120 470 240 mV Load Regulation, TJ = +25°C (Note 1) 5.0 mA ≤ IO ≤ 1.5 A 250 mA ≤ IO ≤ 750 mA Reg load 150 480 240 mV Output Voltage –27 Vdc ≥ VI ≥ –38 Vdc, 5.0 mA ≤ IO ≤ 1.0 A, P ≤ 15 W VO –22.8 – –25.2 Vdc Input Bias Current (TJ = +25°C) IIB – 4.6 8.0 mA Input Bias Current Change –27 Vdc ≥ VI ≥ –38 Vdc 5.0 mA ≤ IO ≤ 1.5 A ΔIIB 1.0 0.5 mA Output Noise Voltage (TA = +25°C, 10 Hz ≤ f ≤ 100 kHz) Vn – 170 – µV Ripple Rejection (IO = 20 mA, f = 120 Hz) RR – 56 – dB Dropout Voltage IO = 1.0 A, TJ = +25°C VI–VO – 2.0 – Vdc Average Temperature Coefficient of Output Voltage IO = 5.0 mA, 0°C ≤ TJ ≤ +125°C ΔVO /ΔT – –1.0 – mV/°C NOTE: 1. Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken into account separately. NOTE: 1. Pulse testing with low duty cycle is used.
8 MOTOROLA ANALOG IC DEVICE DATA
Figure 1. Worst Case Power Dissipation as a Figure 2. Peak Output Current as a Function Figure 3. Ripple Rejection as a Figure 4. Ripple Rejection as a Function Figure 5. Output Voltage as a Function Figure 6. Quiescent Current as a
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Figure 10. D2PAK Thermal Resistance and Maximum change in load current at constant chip temperature. a specified frequency range.
11MOTOROLA ANALOG IC DEVICE DATA T SUFFIX PLASTIC PACKAGE CASE 221A–06 ISSUE Y OUTLINE DIMENSIONS MIN MIN MAX MAX INCHES MILLIMETERS DIM A B C D F G H J K L N Q R S T U V Z 14.48 9.66 4.07 0.64 3.61 2.42 2.80 0.46 12.70 1.15 4.83 2.54 2.04 1.15 5.97 0.00 1.15 15.75 10.28 4.82 0.88 3.73 2.66 3.93 0.64 14.27 1.52 5.33 3.04 2.79 1.39 6.47 1.27 2.04 0.570 0.380 0.160 0.025 0.142 0.095 0.110 0.018 0.500 0.045 0.190 0.100 0.080 0.045 0.235 0.000 0.045 0.620 0.405 0.190 0.035 0.147 0.105 0.155 0.025 0.562 0.060 0.210 0.120 0.110 0.055 0.255 0.050 0.080 NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. 3. DIM Z DEFINES A ZONE WHERE ALL BODY AND LEAD IRREGULARITIES ARE ALLOWED. SEATING PLANE C ST U J R FB Q H Z L V G N D K A 123 D2T SUFFIX PLASTIC PACKAGE CASE 936–03 (D2PAK) ISSUE B
5 REF5 REF
A 12 3 K F B J S H 0.010 (0.254) TM D G C E M L P N R V U TERMINAL 4 NOTES:
1 DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982. 2 CONTROLLING DIMENSION: INCH.
3 TAB CONTOUR OPTIONAL WITHIN DIMENSIONS
A AND K.
4 DIMENSIONS U AND V ESTABLISH A MINIMUM
MOUNTING SURFACE FOR TERMINAL 4.
5 DIMENSIONS A AND B DO NOT INCLUDE MOLD
FLASH OR GATE PROTRUSIONS. MOLD FLASH AND GATE PROTRUSIONS NOT TO EXCEED 0.025 (0.635) MAXIMUM. DIM A MIN MAX MIN MAX MILLIMETERS 0.386 0.403 9.804 10.236 INCHES B 0.356 0.368 9.042 9.347 C 0.170 0.180 4.318 4.572 D 0.026 0.036 0.660 0.914 E 0.045 0.055 1.143 1.397 F 0.051 REF 1.295 REF G 0.100 BSC 2.540 BSC H 0.539 0.579 13.691 14.707 J 0.125 MAX 3.175 MAX K 0.050 REF 1.270 REF L 0.000 0.010 0.000 0.254 M 0.088 0.102 2.235 2.591 N 0.018 0.026 0.457 0.660 P 0.058 0.078 1.473 1.981 R S 0.116 REF 2.946 REF U 0.200 MIN 5.080 MIN V 0.250 MIN 6.350 MIN /C0095/C0095 OPTIONAL CHAMFER
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