100K SLQ1 OP2 R207. Future option SLQ2 OP2 R307. Future option
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1 ON N/S E/W NTENN 00 XnF 00 XnF 0 XnF 0 XnF 0 XnF 0 XnF R00 Not Used (*) 0 0nF 0 0nF R0 K 0 nf (*) See "revision level." here below R00 Not Used (*) R0 K 0 nf!!! IMPORTNT!!! & Must be determined for 0KHZ in conjunction with the antenna (*) See "revision level." here below R0 0K R0 0K J00 J0 J0 J0 R0 R0 R0 R06 70K 0K 00K 7K +9.6V 00 0 N00 00nF 7 6 U00 OP N00 00nF -9.6V J00 J0 J0 J0 R0 R0 R0 R06 70K 0K 00K 7K +9.6V 00 0 N00 00nF 7 6 U00 OP N00 00nF -9.6V!!! Set the same gain on both channels!!! SLQ OP Future option SLQ OP Future option o not forget to shortcut SLQ & SLQ if no options are used R07 K R07 K 0 N8 0 N8 0 N8 0 N8 0 N8 0 N8 0 N8 0 N8 EW+ NS+ +9.6V R00 00K R0 00K SENSE V -9.6V Power Supply Remote control Place if the input level of the sound card is +d Remove and shortcut if the input level of the audio card is -d +9.6V FULL ELETRONI / NTENN SIE FOR THE LIGHTNING RR ORIGINL ESIGN Y FRNK KOOIMN RWING & PTTION Y ONLZ / NIELV7 aniel Verschueren REV.0 / R00 6.8K I T LM SENSE t Temperature Sensor Option EW+ NS+ OPTION -V +V GROUN SENSE V SENSE t GROUN OPTION +9.6V -9.6V ON HOME OP OP OR Future option +V OPTION GROUN TP 0 N00 J nF J Option 0 000uF V N00 I00 LM7 R0.7K R uF 0V N nF TP +9.6V 0 0uF V REV.0 (urrent version / September 008) R00 & R0 are remplaced by a diode. with this modification, it's now possible to supply directly the system with an source. R0 & R0 are changed. This modification fixes the output voltage to +&- 9.6V -V 0 00nF J N00 TP uF V R0.7K I0 LM7 07 0uF 0V R0 0 N nF TP 09 0uF V -9.6V N00
2 N ONNETION HELP FOR THE LIGHTNING RR P kit The power supply is made by using a simple transformer. RWNING ONLZ / NIELV7 REV.0 / 008 Transformer 9V tov OUTPUT 00m GROUN POWER SUPPLY & GROUN SIGNL connected to GROUN 9V to V - 00m E/W 8 O NOT USE TRNSFORMER WITH GROUN ONNETION Ground for shield OPPER TUE N/S TIPS: To check if both channels have the same gain, shortcut the pin & on ON. LR will show on the RR MP a angle detection only and exactly at and.!!! When transformer is used, do not forget to link pins &!!!!!! J0 & J must be opened when power supply is used!!! N/S Signal E/W Signal Use shield cable if lenght > m mplifier as close as possible to the antenna system LINE < 0m RIGHT GROUN LEFT TO IN-LINE INPUT Text
3 N ONNETION HELP FOR THE LIGHTNING RR P kit x Transformer Minimum V OUTPUT 00m The power supply is made by using two transformers. RWNING ONLZ / NIELV7 REV.0 / E/W Ground for shield OPPER TUE N/S TIPS: To check if both channels have the same gain, shortcut the pin & on ON. LR will show on the RR MP a angle detection only and exactly at and. 8 Min +V Min -V N/S Signal E/W Signal GROUN POWER SUPPLY & GROUN SIGNL connected to GROUN Use shield cable if lenght > m + O NOT USE TRNSFORMER WITH GROUN ONNETION mplifier as close as possible to the antenna system LINE < 0m RIGHT GROUN LEFT TO IN-LINE INPUT Text
4 J00 J0 J0 J0 J0 J0 J0 J00 J00 J0 J0 J0 J0 J0 J0 J00 How to set the Gain of the amplifiers? When you will set or change the gain of the amplifiers, you can close or open the small J switches. There are possibilities of gain SGain R0+R0+R0+R06 R0 To localise the J switch, reverse the P and look for the inscription SOLER. The J switches are localized by the red rectangle. 7x 00x 7x 0x 67x 0x 67x 70x 7x 70x 67x 690x 77x 790x 87x J Switch Open J Switch lose This example shows a setting of 7x Set the same gain on both channels ONLZ / anielv7 aniel Verschueren REV.0 - September 008
5 ILL (REV.0) escription esignator Value Sub-Value escription esignator Value Sub-Value apacitor 00 00nF 00V iode 0 N8 Polarized apacitor (Radial) 0 000uF V iode 0 N8 Polarized apacitor (Radial) 0 0uF 0V iode 00 N00 apacitor 0 00nF 00V iode 0 N00 Polarized apacitor (Radial) 0 0uF V iode 0 N8 apacitor 0 00nF 00V iode 0 N8 Polarized apacitor (Radial) uF V iode 0 N8 Polarized apacitor (Radial) 07 0uF 0V iode 0 N8 apacitor 08 00nF 00V Resistor R0.7K Polarized apacitor (Radial) 09 0uF V Resistor R0 0 apacitor 00 XnF 00V Resistor R0.7K apacitor 0 XnF 00V Resistor R0 0 apacitor 0 XnF 00V Resistor R0 K apacitor 0 0nF 00V Resistor R0 0K apacitor 0 nf 00V Resistor R0 70K apacitor 0 00nF 00V Resistor R0 0K apacitor 06 00nF 00V Resistor R0 00K apacitor 00 XnF 00V Resistor R06 7K apacitor 0 XnF 00V Resistor R07 K apacitor 0 XnF 00V Resistor R0 K apacitor 0 0nF 00V Resistor R0 0K apacitor 0 nf 00V Resistor R0 70K apacitor 0 00nF 00V Resistor R0 0K apacitor 06 00nF 00V Resistor R0 00K iode N00 Resistor R06 7K iode N00 Resistor R07 K iode N00 Resistor R00 00K iode N00 Resistor R0 00K iode 0 N00 Resistor R00 6.8K iode N00 Ultra-Low Noise, Precision OperaU00 OP7 iode 00 N00 Ultra-Low Noise, Precision OperaU00 OP7 iode 0 N00 Low-urrent.V to 7V Voltage I00 LM7 iode 0 N8 Low-urrent.V to 7V Voltage I0 LM7 iode 0 N8 I *option I LM
6 ILL REV.0 Quantity escription Value Sub-Value Extra Resistor 0 /8W Resistor K /8W Resistor.7K /8W Resistor 6.8K /8W Resistor 0K /8W Resistor 7K /8W Resistor 00K /8W Resistor 0K /8W Resistor 70K /8W eramic capacitor nf 00V X7R eramic capacitor 0nF 00V X7R 8 eramic capacitor 00nF 00V X7R eramic capacitor *** x Tune antenna *** 0nF 00V X7R eramic capacitor *** x Tune antenna *** uf 00V X7R Polarized apacitor (Radial) 0uF 0V 0 Polarized apacitor (Radial) 0uF V 0 Polarized apacitor (Radial) 000uF V 0 0 iode N00 8 iode N8 Ultra-Low Noise, Precision Operational mplifier OP7 IP8 Low-urrent.V to 7V Voltage Regulator LM7 TO-0 Low-urrent.V to 7V Voltage Regulator LM7 TO-0 Support Tulip IP8 Jumper header pins Jumper header pins Jumper P connector positions P connector 8 positions
7 6 0V 0V F 00m SW POWER ON/OFF ERE E TR 6V V 0V 6V V 0V 00pF 00V 00pF 00V N007 N007 N007 N007 00pF 00V 00pF 00V R 6.8 W R 6.8 W R 00K R 00K 700uF V 6 700uF V 7 0nF 00V 8 0nF 00V F 00m F 00m +0V -0V PROPOSE POWER SUPPLY FOR THE LIGHTNING RR RWNE Y ONLZ / NIELV7 REV / 006 6
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100K SLQ1 OP2 R207. Future option SLQ2 OP2 R307. Future option
ON N/S E/W NTENN 00 XnF 00 XnF 0 XnF 0 XnF 0 XnF 0 XnF R00 Not Used (*) 0 0nF 0 0nF R0 K 0 nf (*) See "revision level." here below R00 Not Used (*) R0 K 0 nf!!! IMPORTNT!!! 00-0-0 & 00-0-0 Must be determined
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