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TP394 Datasheet
Choosing the Inductor For most applications the inductor will fall in the range of 2.2aH t0 22aH. Lower values are chosen to reduce physi- cal size of the inductor. Higher values allow more output current because they reduce peak current seen by the power switch, which has a 6A limit. Higher values also reduce input ripple voltage and reduce core loss.
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*Features 1) Operates off dual + power supply which allows a large reduction in the number of coupling capacitors required. A built-in regulator makes it easy to con- struct a power supply system. 2) A two-line SSB (Synchronized Serial Bus) control decoder circuit is provided, allowing the various lC modes to be set using serial control. 3) A four line input switcher is included (tuner, BS, and line l / 2). The output switcher can switch between STEREO, LEFT, and RIGHT, and Hi-Fi, MIX, and NORMAL, and a BS MONITOR function is also pro- vided. 4) The PNR processor and FM modulator / demodula- tor circuit have reversed characteristics at recording and playback. In addition, the adjustment for carrier frequency and FM deviation / playback level are common.
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Specification
Parameter Min Typ. Max Unit Condition
Overall Small Signal Power Gain, S21 Gain Flatness, GF Input and Output VSWR Bandwidth, BW Output Power @ -1dB Compression, PldB Noise Figure, NF Third Order Intercept, lP3 Reverse Isolation, S12 Device Voltage, VD Gain Temperature Coefficient, 8GT/8T 19.0 16.0 3.6 20.5 19.5 18.5 +0.8 1.70:1 1.45:1 1.65:1 4.2 12.3 14.0 3.2 +26.5 -17.0 3.9 -0.0015 4.2 dB dB dB dB GHz dBm dBm dB dBm dB V dB/oC VD =+3.9 V, Icc = 35 mA, Zo = 50 Q, TA =+250C f=O.1GHz t0 1.OGHz f=l.OGHz t0 2.OGHz f=2.OGHz t0 4.OGHz f=O.1GHz t0 3.OGHz f=O.1GHz t0 4.OGHz f=4.OGHz t0 6.OGHz f=6.OGHz t0 10.OGHz BW3 (3dB) f=2.OGHz f=6.OGHz f=3.OGHz f= 2.0 GHz f=O.1GHz t0 10.OGHz
MTTF versus Temperature @lcc=35mA Case Temperature Junction Temperature MTTF 85 120 >1,000,000 oC oC hours
Thermal Resistance ejC 256 oC/w JT- TCASE = OJC(o C/ Watt) VD . ICC


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