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EL2227CS Datasheet(PDF) 13 Page - Elantec Semiconductor |
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EL2227CS Datasheet(HTML) 13 Page - Elantec Semiconductor |
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13 / 15 page ![]() 13 EL2227C Dual Very Low Noise Amplifier Disable Function The EL2227C is in the standard dual amplifier package without the enable/disable function. A simple way to implement the enable/disable function is depicted below. When disabled, both the positive and negative supply voltages are disconnected (see Figure 2 below.) Power Dissipation With the wide power supply range and large output drive capability of the EL2227C, it is possible to exceed the 150°C maximum junction temperatures under certain load and power-supply conditions. It is therefore impor- tant to calculate the maximum junction temperature (TJMAX) for all applications to determine if power sup- ply voltages, load conditions, or package type need to be modified for the EL2227C to remain in the safe operat- ing area. These parameters are related as follows: where: PDMAXTOTAL is the sum of the maximum power dissi- pation of each amplifier in the package (PDMAX) PDMAX for each amplifier can be calculated as follows: where: TMAX =Maximum Ambient Temperature θJA =Thermal Resistance of the Package PDMAX =Maximum Power Dissipation of 1 Amplifier VS =Supply Voltage IMAX =Maximum Supply Current of 1 Amplifier VOUTMAX=Maximum Output Voltage Swing of the Application RL =Load Resistance To serve as a guide for the user, we can calculate maxi- mum allowable supply voltages for the example of the video cable-driver below since we know that TJMAX = 150°C, TMAX = 75°C, ISMAX = 9.5mA, and the package θJAs are shown in Table 1. If we assume (for this exam- ple) that we are driving a back-terminated video cable, then the maximum average value (over duty-cycle) of VOUTMAX is 1.4V, and RL = 150Ω, giving the results seen in Table 1. Single-Supply Operation The EL2227C have been designed to have a wide input and output voltage range. This design also makes the EL2227C an excellent choice for single-supply opera- tion. Using a single positive supply, the lower input voltage range is within 200mV of ground (RL = 500Ω), and the lower output voltage range is within 875mV of ground. Upper input voltage range reaches 3.6V, and output voltage range reaches 3.8V with a 5V supply and RL = 500Ω. This results in a 2.625V output swing on a single 5V supply. This wide output voltage range also allows single-supply operation with a supply voltage as high as 28V. Gain-Bandwidth Product and the -3dB Bandwidth The EL2227C have a gain-bandwidth product of 137MHz while using only 5mA of supply current per amplifier. For gains greater than 2, their closed-loop ---- -3dB bandwidth is approximately equal to the gain- - + 1µF 4.7µF 1µF +12V 1k 10k 10k 75k 1k 1k T JMAX T MAX θ JA PD MAXTOTAL × () + = PD MAX 2V S I SMAX V S ( V OUTMAX ) V OUTMAX R L ---------------------------- × – + × × = Table 1 Part Package θJA Max PDISS @ TMAX Max VS EL2227CS SO8 160°C/W 0.406W @ 85°C EL2227CY MSOP8 206°C/W 0.315W @ 85°C |
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