Calibration method for high gamma combo tuner
View Patent ↗An RF electronic impedance tuner uses multiple PIN diodes, Varactors or MOSFETs, mounted in a low loss slab-line, between the bottom surface of the center conductor and ground, are DC controlled individually and spaced appropriately along the slab-line in order to generate maximum Gamma and bandwidth. The electronic tuner is combined with a slide screw tuner, using the same slab-line in various configurations, before, after or sharing the same slab-line section, mounted on top of each-other. Calibration on a VNA allows high Gamma and harmonic tuning.
1. An electro-mechanical and electronic combo impedance tuner including
an electromechanical tuner, comprising
a slotted low loss airline (slabline) having a test port, an idle port, a center conductor linking the ports and a tuning probe, horizontally (X) movable along the axis of the slabline, insertable into the slot of the slabline and capacitively coupled from the top with the center conductor;
and
an electronic tuner, comprising
a multitude N (N>1) of independently controlled RF switches, mounted at selected fixed positions along the center conductor between the bottom of the center conductor of the slabline and RF ground, whereby the first RF switch (M=1) is closest to the test port and the last RF switch (M=N) is closest to the idle port; and
wherein
the multitude of the electronic RF switches are sharing the same section of the slabline with the tuning probe of the electro-mechanical tuner.
2. A calibration method for the tuner of claim 1 , comprising
(i) a measurement procedure,
(ii) a de-embedding procedure, and
(iii) a cascading procedure,
wherein
(i) the measurement procedure comprises the following steps:
a) connecting the tuner to a pre-calibrated vector network analyzer (VNA);
b) switching all RF switches to open circuit (OFF);
c) withdrawing the tuning probe from the slabline;
d) measuring the tuner s-parameters between the test and idle ports and saving in matrix [S0];
e) switching the RF switches ON and OFF alternatively, measuring the tuner s-parameter matrices of all 2 N RF-switch permutations and saving;
f) switching all RF switches to OFF;
g) positioning the tuning probe to a multitude of horizontal (X) and vertical (Y) positions, measuring the tuner s-parameter matrices and saving;
and wherein
(ii) the de-embedding procedure comprises
cascading [S0] −1 (the invers of the matrix [ S0]) with all 2 N s-parameter matrices generated in step e) and saving;
and wherein
(iii) the cascading procedure comprises the following steps:
h) for all horizontal positions X of the tuning probe closer to the test port than the first (M=1) RF switch (X<X 1 ), cascade all tuner s-parameter matrices, generated in step g) with all 2 N tuner s-parameter matrices, generated in step (ii);
j) for all horizontal positions X of the tuning probe closer to the idle port than the last (M=N) RF switch (X>X N ), cascade all 2 N tuner s-parameter matrices, generated in step (ii) with all tuner s-parameter matrices, generated in step g);
k) for horizontal positions X of the tuning probe between RF switch M and RF switch M+1 (X M+1 >X≥X M ), cascade all s-parameter matrix permutations 2 M of the tuner for RF switches 1 to M, generated in step (ii) with the s-parameter matrices of the tuner, for X positions between X M and X M+1 generated in step g), followed by the
2 N-M s-parameter matrix permutations of the tuner for RF switches M+1 to N, generated in step (ii);
l) save the result of the cascading procedure in a calibration file comprising all permutations of tuner s-parameter matrices of the mechanical tuning probe positions and the electronic tuner RF switch states.