Index
Godeng Gert Krew i Wino 06 Trumna numer 5
Anne McCaffrey Ship 02 Partner Ship
51. Conan pan Czarnej Rzeki (Conan, Lord of the Black River) 1996
01.Hart_Jessica_Kronika_Slubnych_wypadkow
005. Rubinowa Walentynka Sher
81314_09
arystoteles_etyka_eudemejska
Foley, Gaelen 2 Lord of Ice
Frances Stockton Quarterback Blitz (pdf)
Co warto wiedzieć‡ o radiestezji
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    T =+25 oC 14.4 15 15.6
    J
    5.0mA d" I d"1.0A, P d"15W
    O D
    Output Voltage V
    O
    V = 17.5V to 30V 14.25 15 15.75 V
    I
    V = 18.5V to 30V
    I
    V = 17.5V to 30V - 11 300
    I
    Line Regulation "V T =+25 oC mV
    O J
    V = 20V to 26V - 3 150
    I
    I = 5mA to 1.5A - 12 300
    O
    Load Regulation "V T =+25 oC mV
    O J
    I = 250mA to
    O
    - 4 150
    750mA
    Quiescent Current I T =+25 oC- 5.2 8 mA
    Q J
    I = 5mA to 1.0A - - 0.5
    O
    Quiescent Current Change "I V = 17.5V to 30V - - 1.0 mA
    Q I
    V = 18.5V to 30V - - -
    I
    Output Voltage Drift "V /"T I = 5mA - -1 - mV/ oC
    O O
    Output Noise Voltage V f = 10Hz to 100KHz, T =+25 oC- 90 - µV
    N A
    f = 120Hz
    Ripple Rejection RR 54 70 - dB
    V = 18.5V to 28.5V
    I
    Dropout Voltage V I = 1A, T =+25 oC- 2 - V
    O O J
    Output Resistance R f = 1KHz - 19 - m&!
    O
    Short Circuit Current I V = 35V, T =+25 oC - 250 - mA
    SC I A
    Peak Current I T =+25 oC- 2.2 - A
    PK J
    " Load and line regulation are specified at constant junction temperature. Changes in V due to heating effects must be taken
    O
    into account separately. Pulse testing with low duty is used.
    7
    MC78XX/LM78XX
    Electrical Characteristics (MC7818)
    (Refer to test circuit ,0oC
    J O I I O
    MC7818
    Parameter Symbol Conditions Unit
    Min. Typ. Max.
    T =+25 oC 17.3 18 18.7
    J
    5.0mA d" I d"1.0A, P d"15W
    O D
    Output Voltage V
    O
    V = 21V to 33V 17.1 18 18.9 V
    I
    V = 22V to 33V
    I
    V = 21V to 33V - 15 360
    I
    Line Regulation "V T =+25 oC mV
    O J
    V = 24V to 30V - 5 180
    I
    I = 5mA to 1.5A - 15 360
    O
    Load Regulation "V T =+25 oC mV
    O J
    I = 250mA to 750mA - 5.0 180
    O
    Quiescent Current I T =+25 oC- 5.2 8 mA
    Q J
    I = 5mA to 1.0A - - 0.5
    O
    Quiescent Current Change "I V = 21V to 33V - - 1 mA
    Q I
    V = 22V to 33V - -
    I
    Output Voltage Drift "V /"T I = 5mA - -1 - mV/ oC
    O O
    Output Noise Voltage V f = 10Hz to 100KHz, T =+25 oC- 110 - µV
    N A
    f = 120Hz
    Ripple Rejection RR 53 69 - dB
    V = 22V to 32V
    I
    Dropout Voltage V I = 1A, T =+25 oC - 2 - V
    O O J
    Output Resistance R f = 1KHz - 22 - m&!
    O
    Short Circuit Current I V = 35V, T =+25 oC - 250 - mA
    SC I A
    Peak Current I T =+25 oC- 2.2 - A
    PK J
    " Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken
    into account separately. Pulse testing with low duty is used.
    8
    MC78XX/LM78XX
    Electrical Characteristics (MC7824)
    (Refer to test circuit ,0oC
    J O I I O
    MC7824
    Parameter Symbol Conditions Unit
    Min. Typ. Max.
    T =+25 oC23 24 25
    J
    5.0mA d" I d" 1.0A, P d" 15W
    O D
    Output Voltage V
    O
    V = 27V to 38V 22.8 24 25.25 V
    I
    V = 28V to 38V
    I
    V = 27V to 38V - 17 480
    I
    Line Regulation "V T =+25 oC mV
    O J
    V = 30V to 36V - 6 240
    I
    I = 5mA to 1.5A - 15 480
    O
    Load Regulation "V T =+25 oC mV
    O J
    I = 250mA to 750mA - 5.0 240
    O
    Quiescent Current I T =+25 oC- 5.2 8 mA
    Q J
    I = 5mA to 1.0A - 0.1 0.5
    O
    Quiescent Current Change "I V = 27V to 38V - 0.5 1 mA
    Q I
    V = 28V to 38V - - -
    I
    Output Voltage Drift "V /"T I = 5mA - -1.5 - mV/ oC
    O O
    Output Noise Voltage V f = 10Hz to 100KHz, T =+25 oC- 60 - µV
    N A
    f = 120Hz
    Ripple Rejection RR 50 67 - dB
    V = 28V to 38V
    I
    Dropout Voltage V I = 1A, T =+25 oC- 2 - V
    O O J
    Output Resistance R f = 1KHz - 28 - m&!
    O
    Short Circuit Current I V = 35V, T =+25 oC - 230 - mA
    SC I A
    Peak Current I T =+25 oC- 2.2 - A
    PK J
    " Load and line regulation are specified at constant junction temperature. Changes in VO due to heating effects must be taken
    into account separately. Pulse testing with low duty is used.
    9
    MC78XX/LM78XX
    Typical Perfomance Characteristics
    Figure 1. Quiescent Current Figure 2. Peak Output Current
    Figure 3. Output Voltage Figure 4. Quiescent Current
    10
    MC78XX/LM78XX
    Typical Applications
    MC78XX/LM78XX
    Input
    Output
    Figure 5. DC Parameters
    MC78XX/LM78XX
    Input Output
    Figure 6. Load Regulation
    MC78XX/LM78XX
    Input
    Output
    Figure 7. Ripple Rejection
    Input
    Output
    MC78XX/LM78XX
    Figure 8. Fixed Output Regulator
    11
    MC78XX/LM78XX
    MC78XX/LM78XX
    Input Output
    Figure 9. Constant Current Regulator
    Notes:
    (1) To specify an output voltage. substitute voltage value for "XX." A common ground is required between the input and the Output
    voltage. The input voltage must remain typically 2.0V above the output voltage even during the low point on the input ripple
    voltage.
    (2) C is required if regulator is located an appreciable distance from power Supply filter.
    I
    (3) C improves stability and transient response.
    O
    Input Output
    MC78XX/LM78XX
    IRI e" 5IQ
    V = V (1+R /R )+I R
    O XX 2 1 Q 2
    Figure 10. Circuit for Increasing Output Voltage
    Input Output
    MC7805
    LM7805
    LM741
    I e"5 I
    RI Q
    V = V (1+R /R )+I R
    O XX 2 1 Q 2
    Figure 11. Adjustable Output Regulator (7 to 30V)
    12
    MC78XX/LM78XX
    Input
    Output
    MC78XX/LM78XX
    Figure 12. High Current Voltage Regulator
    Input
    MC78XX/LM78XX
    Output
    Figure 13. High Output Current with Short Circuit Protection
    MC78XX/LM78XX
    LM741
    Figure 14. Tracking Voltage Regulator
    13
    MC78XX/LM78XX
    MC7815
    MC7915
    Figure 15. Split Power Supply ( ±15V-1A)
    Output
    Input
    MC78XX/LM78XX
    Figure 16. Negative Output Voltage Circuit
    Input Output
    MC78XX/LM78XX
    Figure 17. Switching Regulator
    14
    MC78XX/LM78XX
    Mechanical Dimensions
    Package
    TO-220
    9.90 ±0.20 4.50 ±0.20
    (8.70)
    +0.10
    1.30
    ø3.60 ±0.10
     0.05
    1.27 ±0.10 1.52 ±0.10
    0.80 ±0.10
    +0.10
    0.50 2.40 ±0.20
     0.05
    2.54TYP 2.54TYP
    [2.54 ±0.20] [2.54 ±0.20]
    10.00 ±0.20
    15
    (1.70)
    1.30
    ±
    0.10
    2.80
    ±
    0.10
    18.95MAX.
    15.90
    ±
    0.20
    9.20
    ±
    0.20
    (1.46)
    (3.00)
    (3.70)
    (1.00)
    13.08
    ±
    0.20
    10.08
    ±
    0.30
    (45
    °
    )
    MC78XX/LM78XX
    Mechancal Dimensions (Continued)
    Package
    D-PAK
    6.60 ±0.20
    5.34 ±0.30
    2.30 ±0.10
    (0.50) (4.34) (0.50)
    0.50 ±0.10
    MAX0.96 0.76 ±0.10
    0.50 ±0.10
    1.02 ±0.20
    2.30TYP 2.30TYP
    [2.30±0.20] [2.30±0.20]
    2.30 ±0.20
    6.60 ±0.20
    (5.34)
    (5.04)
    (1.50)
    (2XR0.25)
    0.76 ±0.10
    16
    0.70
    ±
    0.20
    0.60
    ±
    0.20
    6.10
    ±
    0.20
    0.91
    ±
    0.10
    9.50
    ±
    0.30
    2.70
    ±
    0.20
    MIN0.55
    0.80
    ±
    0.20
    0.89
    ±
    0.10
    (0.70)
    (0.90)
    (1.00)
    6.10
    ±
    0.20
    9.50
    ±
    0.30
    2.70
    ±
    0.20
    (0.10)
    (3.05)
    MC78XX/LM78XX
    Ordering Information
    Product Number Output Voltage Tolerance Package Operating Temperature
    LM7805CT ±4% TO-220 0 ~ + 125°C
    Product Number Output Voltage Tolerance Package Operating Temperature
    MC7805CT
    MC7806CT
    MC7808CT
    MC7809CT
    TO-220
    MC7812CT ±4% 0 ~ + 125°C
    MC7815CT
    MC7818CT
    MC7824CT
    MC7809CDT D-PAK
    17
    MC78XX/LM78XX
    LIFE SUPPORT POLICY
    FAIRCHILD S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES
    OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR
    INTERNATIONAL. As used herein:
    1. Life support devices or systems are devices or systems 2. A critical component in any component of a life support
    which, (a) are intended for surgical implant into the body, device or system whose failure to perform can be
    or (b) support or sustain life, and (c) whose failure to reasonably expected to cause the failure of the life support
    perform when properly used in accordance with device or system, or to affect its safety or effectiveness.
    instructions for use provided in the labeling, can be
    reasonably expected to result in a significant injury of the
    user.
    www.fairchildsemi.com
    8/17/00 0.0m 001
    Stock#DSxxxxxxxx
    © 2000 Fairchild Semiconductor International [ Pobierz caÅ‚ość w formacie PDF ]
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