4.3 Primary Pulse Generation Circuit
Design
The initial source of the driving pulse is the pin of
the single chip microcomputer Msp430f149 which
outputs the +3.3V square wave pulse with 120 KHz
frequency. Each transducer of the driving pulse is
divided into two parts, for a transducer using the
microcontroller pin P4.3 and P4.4, and the other one
using pin P4.5 and P4.6. The drive pulse is shown in
figure 4:
Fig. 4 Initial driving pulse
4.4 Power Amplifier Circuit Design
The voltage of transformer primary coil is +30V
while the transform ation ratio is 10:100. MCU
sends out +3.3V pulse amplitude needing amplitude
amplification and power amplification before
reaching +30V. IRF7389 power field effect tube is
used to realise power amplifier, whose parameters
are VDSS = + 30V, on the resistance RDS (ON) =
0.029 ohm (N channel) and 0.058 ohm (P channel),
ID = 4A. Due to its large junction capacitance
(1000PF), IRF7389 needs 15mA to work. A single
pin of Msp430F149 can only output the maximum
current 3mA, unable to meet the requirements.
Therefore additional driver chips must be used. In
this paper, the TC4426EOA field effect transistor
driver is selected, and the driving circuit schematic
diagram is shown in Figure 5.
Fig. 5 Schematic diagram of IRF7389.
As shown in Figure 5, driving circuit based on
TC4426EOA converts the +3.3 V signal to +15V
pulse with 100mA current output. It can drive the
IRF7389 power circuit, the power application circuit
with the transformer is shown in Figure 6.
Fig. 6 Power amplifier and transformer circuit diagram.
Two pieces of IRF7389 is used in the circuit.
Each chip comprises two power field effect tube, a
p-channel and an n-channel tube. When it outputs
high level signal, n-channel tube works. When the
low level signal is outputs, p-channel tube works.
Therefore, it can guarantee the value of the voltage
between the M1 and M9 is 30V; 300V amplitude
can be gotten after 10:100 transformer. At same time,
the current can meet the requirements to drive
ultrasonic transducer. The output signal of the
ultrasonic transducer is shown in Figure 7. The
amplitude of the signal has reached the peak-peak
value of 1V, which provides convenience for the
design of the subsequent processing circuit.