전자부품 데이터시트 검색엔진 |
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KA556ID 데이터시트(PDF) 3 Page - Fairchild Semiconductor |
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KA556ID 데이터시트(HTML) 3 Page - Fairchild Semiconductor |
3 / 8 page KA556 3 Electrical Characteristics (TA = 25 °C, VCC = 5 ~ 15V, unless otherwise specified) Notes: *1. Supply current when output is high is typically 1.0mA less at VCC = 5V *2. Tested at VCC = 5V and VCC = 15V *3. This will determine the maximum value of RA + RB for 15V operation. The maximum total R = 20M Ω, and for 5V operation the maximum total R = 6.6MΩ. *4. Matching characteristics refer to the difference between performance characteristics of each timer section in the monostable mode. *5. As reset voltage lowers, timing is inhibited and then the output goes low. Parameter Symbol Conditions Min. Typ. Max. Unit Supply Voltage VCC -4.5 - 16 V Supply Current *1(two timers) (low state) ICC VCC = 5V, RL = ∞ VCC = 15V, RL = ∞ - 5 16 12 30 mA mA Timing Error *2(monostable) Initial Accuracy Drift with Temperature Drift with Supply Voltage ACCUR ∆t/∆T ∆t/∆VCC RA = 2K Ω to 100KΩ C = 0.1 µF T = 1.1RC - 0.75 50 0.1 - % ppm/ °C %/V Control Voltage VC VCC = 15V 9.0 10.0 11.0 V VCC = 5V 2.6 3.33 4.0 V Threshold Voltage VTH VCC = 15V 8.8 10.0 11.2 V VCC = 5V 2.4 3.33 4.2 V Threshold Current*3 ITH - - 30 250 nA Trigger Voltage VTR VCC = 15V 4.5 5.0 5.6 V VCC = 5V 1.1 1.6 2.2 V Trigger Current ITR VTR = 0V - 0.01 2.0 µA Reset Voltage*5 VRST - 0.4 0.6 1.0 V Reset Current IRST - - 0.03 0.6 mA Low Output Voltage VOL VCC = 15V ISINK = 10mA ISINK = 50mA ISINK = 100mA ISINK = 200mA VCC = 5V ISINK = 8mA ISINK = 5mA - 0.1 0.4 2.0 2.5 0.25 0.15 0.25 0.75 3.2 0.35 0.25 V V High Output Voltage VOH VCC = 15V ISOURCE = 200mA ISOURCE = 100mA 12.75 12.5 13.3 -V VCC = 5V ISOURCE = 100mA 2.75 3.3 - V Rise Time of Output tR - - 100 300 ns Fall Time of Output tF - - 100 300 ns Discharge Leakage Current ILKG - - 10 100 nA Matching Characteristics*4 Initial Accuracy Drift with Temperature Drfit with Supply Voltage ACCUR ∆t/∆T ∆t/∆VCC -- 1.0 10 0.2 2.0 0.5 % ppm/ °C %/V Timing Error (astable)*2 Initial Accuracy Drift with Temperature Drift with Supply Voltage ACCUR ∆t/∆T ∆t/∆Vcc VCC = 15V RA,RB = 1K Ω to 100KΩ C = 0.1 µF - 2.25 150 0.3 - % ppm/ °C %/V |
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