Version 4.1 SHEET 1 3436 740 WIRE -32 -112 -176 -112 WIRE 32 -112 -32 -112 WIRE 64 -112 32 -112 WIRE 80 -112 64 -112 WIRE 192 -112 144 -112 WIRE 304 -112 272 -112 WIRE 416 -112 384 -112 WIRE 480 -112 416 -112 WIRE 544 -112 480 -112 WIRE 608 -112 544 -112 WIRE 656 -112 608 -112 WIRE -176 -96 -176 -112 WIRE 544 -16 544 -112 WIRE -176 0 -176 -16 WIRE 64 0 64 -112 WIRE 176 0 64 0 WIRE 416 0 416 -112 WIRE 416 0 240 0 WIRE 656 0 656 -112 WIRE -32 16 -32 -112 WIRE 32 112 32 -112 WIRE 192 112 32 112 WIRE 480 112 480 -112 WIRE 480 112 256 112 WIRE -176 192 -176 80 WIRE -32 192 -32 80 WIRE -32 192 -176 192 WIRE 160 192 -32 192 WIRE 544 192 544 48 WIRE 544 192 160 192 WIRE 656 192 656 80 WIRE 656 192 544 192 WIRE 160 208 160 192 WIRE -16 368 -160 368 WIRE 48 368 -16 368 WIRE 80 368 48 368 WIRE 96 368 80 368 WIRE 208 368 160 368 WIRE 320 368 288 368 WIRE 432 368 400 368 WIRE 480 368 432 368 WIRE 560 368 480 368 WIRE 576 368 560 368 WIRE 656 368 576 368 WIRE 704 368 656 368 WIRE 720 368 704 368 WIRE 832 368 784 368 WIRE 944 368 912 368 WIRE 1040 368 1024 368 WIRE 1104 368 1040 368 WIRE 1184 368 1104 368 WIRE 1248 368 1184 368 WIRE 1296 368 1248 368 WIRE -160 384 -160 368 WIRE 560 464 560 368 WIRE 1184 464 1184 368 WIRE -160 480 -160 464 WIRE 80 480 80 368 WIRE 192 480 80 480 WIRE 432 480 432 368 WIRE 432 480 256 480 WIRE 704 480 704 368 WIRE 816 480 704 480 WIRE 1040 480 1040 368 WIRE 1040 480 880 480 WIRE 1296 480 1296 368 WIRE -16 496 -16 368 WIRE 48 576 48 368 WIRE 192 576 48 576 WIRE 480 576 480 368 WIRE 480 576 256 576 WIRE 656 576 656 368 WIRE 832 576 656 576 WIRE 1104 576 1104 368 WIRE 1104 576 896 576 WIRE -160 640 -160 560 WIRE -16 640 -16 560 WIRE -16 640 -160 640 WIRE 176 640 -16 640 WIRE 560 640 560 528 WIRE 560 640 176 640 WIRE 1184 640 1184 528 WIRE 1184 640 560 640 WIRE 1296 640 1296 560 WIRE 1296 640 1184 640 WIRE 176 656 176 640 FLAG 160 208 0 FLAG 608 -112 1_section_out FLAG 176 656 0 FLAG 1248 368 2_section_out FLAG 576 368 2_section_int SYMBOL cap -48 16 R0 SYMATTR InstName C1 SYMATTR Value 33pF SYMBOL cap 528 -16 R0 SYMATTR InstName C2 SYMATTR Value 33pF SYMBOL cap 240 -16 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C3 SYMATTR Value 6p SYMBOL cap 144 -128 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C4 SYMATTR Value 0.02p SYMBOL ind 288 -128 R90 WINDOW 0 5 56 VBottom 2 WINDOW 3 32 56 VTop 2 SYMATTR InstName L1 SYMATTR Value 79.157mH SYMBOL res 400 -128 R90 WINDOW 0 0 56 VBottom 2 WINDOW 3 32 56 VTop 2 SYMATTR InstName R1 SYMATTR Value 150R SYMBOL res 640 -16 R0 SYMATTR InstName R2 SYMATTR Value 1k SYMBOL voltage -176 -16 R0 SYMATTR InstName V1 SYMATTR Value AC 1. SYMBOL res -192 -112 R0 SYMATTR InstName R3 SYMATTR Value 50R SYMBOL cap -32 496 R0 SYMATTR InstName C5 SYMATTR Value 33pF SYMBOL cap 544 464 R0 SYMATTR InstName C6 SYMATTR Value 33pF SYMBOL cap 256 464 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C7 SYMATTR Value 6p SYMBOL cap 160 352 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C8 SYMATTR Value 0.02p SYMBOL ind 304 352 R90 WINDOW 0 5 56 VBottom 2 WINDOW 3 32 56 VTop 2 SYMATTR InstName L2 SYMATTR Value 79.157mH SYMBOL res 416 352 R90 WINDOW 0 0 56 VBottom 2 WINDOW 3 32 56 VTop 2 SYMATTR InstName R4 SYMATTR Value 150R SYMBOL voltage -160 464 R0 SYMATTR InstName V2 SYMATTR Value AC 1. SYMBOL res -176 368 R0 SYMATTR InstName R6 SYMATTR Value 50R SYMBOL cap 1168 464 R0 SYMATTR InstName C9 SYMATTR Value 33pF SYMBOL cap 880 464 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C10 SYMATTR Value 6p SYMBOL cap 784 352 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C11 SYMATTR Value 0.02p SYMBOL ind 928 352 R90 WINDOW 0 5 56 VBottom 2 WINDOW 3 32 56 VTop 2 SYMATTR InstName L3 SYMATTR Value 79.157mH SYMBOL res 1040 352 R90 WINDOW 0 0 56 VBottom 2 WINDOW 3 32 56 VTop 2 SYMATTR InstName R7 SYMATTR Value 150R SYMBOL res 1280 464 R0 SYMATTR InstName R8 SYMATTR Value 1k SYMBOL cap 256 96 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C12 SYMATTR Value 4pF SYMBOL cap 256 560 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C13 SYMATTR Value 4pF SYMBOL cap 896 560 R90 WINDOW 0 0 32 VBottom 2 WINDOW 3 32 32 VTop 2 SYMATTR InstName C14 SYMATTR Value 4pF TEXT 1440 152 Left 2 ;I have selected a 4Mhz crystal, 4Mhz appears to be \nthe lowest round figure freq with loads of buying options\nthe crystal I have attempted to model is the ECS ECS-40-20-5PX-TR\na 4Mhz, 20pF load capacitance, 150 ohms ESR\n50ppm tolerance, 30ppm stability\nmax Co is 7pF, I will take it as 6pF\nhowever motional L and C are only estimates. TEXT -176 712 Left 2 !.ac dec 100000 100k 100Meg TEXT -176 -376 Left 5 ;A 4Mhz Crystal filter TEXT 120 -200 Left 2 ;crystal equivalent cct TEXT 128 296 Left 2 ;crystal equivalent cct TEXT 728 288 Left 2 ;crystal equivalent cct TEXT 1448 104 Left 4 ;Selecting the crystal TEXT 1448 392 Left 4 ;about the crystal equivalent cct TEXT 1456 456 Left 2 ;the three cct components in series are called the motional capacitance, \nthe motional inductance, and the motional resistance.\nthese are the characteristics of the crystal vibrating.\nthe other capacitance is called the shunt capacitance and is a\ncharacteristic of the crystal electrodes and holder.\nThe other C in parallel with the crystal shunt C, is the unaviodable \nstray cct C. TEXT 256 144 Left 2 ;(stray C) TEXT 256 600 Left 2 ;(stray C) TEXT 888 600 Left 2 ;(stray C) TEXT 1432 -152 Left 4 ;instructions TEXT 1440 -112 Left 2 ;click on run\nthen click on the "1_section_out" net to plot its freq. response\nthen click on the plot window and plot settings/add plot pane\nthen click on the "2_section_out" net to plot its freq. response\n \nnote that there is a buffer between the lowpass output and highpass input TEXT -184 -312 Left 3 ;the values of the motional L, and motional C, are generally not given on crystal manufacturers datasheets,\nhence the values used here are only estimates. TEXT 1056 688 Left 1 ;You may republish or reuse this circuit implementation and text providing this line and the following lines are included.\nThis circuit implementation designed by Keith Wallbanks. Originally released on analogsimulation.co.uk\nThis circuit is provided as is without warranty of any kind. This text is intended to implement the MIT licence. RECTANGLE Normal 432 48 48 -176 2 RECTANGLE Normal 448 528 64 320 2 RECTANGLE Normal 1056 528 688 320 2