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4 / 12 page 1997 Mar 03 4 Philips Semiconductors Product specification Video output amplifier TDA6106Q HANDLING Inputs and outputs are protected against electrostatic discharge in normal handling. However, to be totally safe, it is desirable to take normal precautions appropriate to handling MOS devices (see “Handling MOS Devices” ). QUALITY SPECIFICATION Quality specification “SNW-FQ-611 part E” is applicable, except for ESD Human body model see Chapter “Limiting values”, and can be found in the “Quality reference handbook” (ordering number 9397 750 00192). THERMAL CHARACTERISTICS Note 1. External heatsink not required. CHARACTERISTICS Operating range: Tamb = −20 to +65 °C; VDD = 180 to 210 V (see note 1), Vom = 1.4 to 6 V. Test conditions: Tamb =25 °C; VDD = 200 V; Vom =4V; CL = 10 pF (CL consists of parasitic and cathode capacitance); measured in test circuit of Fig.5; unless otherwise specified. SYMBOL PARAMETER(1) VALUE UNIT Rth j-a thermal resistance from junction to ambient in free air 56 K/W Rth j-c thermal resistance from junction to case 12 K/W SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT IDD quiescent voltage supply current VocDC = 100 V 2.8 3.0 3.3 mA Ibias input bias current (pin 3) VocDC = 100 V 0 − 20 µA Vint internal reference voltage input stage VocDC = 100 V − 2.5 − V Iom(os) offset current of black current measurement output Ioc =0 µA; Vin = 1.5 to +3.5 V; Vom = 1.4 to 6 V −10 0 +10 µA ∆VTint temperature drift of internal reference voltage input stage VocDC = 100 V − 0.5 − mV/K linearity of current transfer Ioc = −10 µA to 3 mA; Vin = 1.5 to +3.5 V; Vom = 1.4 to 6 V 0.9 1.0 1.1 Iof(max) maximum peak output current (pin 9) Voc = 20 V to VDD −30 V − 25 − mA Voc(min) minimum output voltage (pin 8) Vin = 3.5 V − 712 V Voc(max) maximum output voltage (pin 8) Vin = 1.5 V VDD − 14 VDD − 10 − V GB gain bandwidth product of open-loop gain Vos/Vi, dm f = 500 kHz; VocDC = 100 V − 0.52 − GHz BWS small signal bandwidth VocAC = 60 V (p-p); VocDC = 100 V 56 − MHz BWL large signal bandwidth VocAC = 100 V (p-p); VocDC = 100 V 4.7 5.7 − MHz ∆I om ∆I oc ------------ |
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