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6816985H01-B
August 16, 2007
700/800 MHz Detailed Theories of Operation:
Receiver
4.4-3
4.4.4 Receiver
The receiver consists of the following:
• Front end
• Back end
4.4.4.1 Front End
For the purposes of this discussion, the receiver front end is defined as being the circuitry from the
antenna switch to the output of the IF crystal filter. The 700/800 MHz front end converts the received
RF signal to the 1st IF frequency of 109.65 MHz, while at the same time providing for
spuriousimmunity and adjacent channel selectivity. A review of the interstage components of the
front end follows, with emphasis on troubleshooting considerations.
The received RF signal is passed through
antenna switch
input matching components C101, C116,
L109 and C117, tank components C106 and L103 (which are anti-resonant at the radio’s transmitter
frequencies), and output matching components C103 and L104. Both PIN diodes CR101 and CR102
must be back-biased to properly route the received signal.
The stage following the antenna switch is a 50-ohm, multi-layer ceramic (MLC) varactor-tuned
preselector (FL1). The
preselector (FL1)
is positioned after the antenna switch to provide the
receiver preamp with some protection against strong signal, out-of-band signals and first-image
suppression.
After the preselector (FL1), the received signal is applied to a 15dB step attenuator to provide
additional protection against strong signals. The attenuator is controlled by a DSP based algorithm
that continuously monitors signal strength. When the ON threshold is exceeded (approximately -
95dBm), the attenuator is activated via a DAC in the PCIC by the host. The attenuator remains
activated until the signal drops below the OFF threshold (approximately -115dBm including the 15dB
attenuation). Hysterisis and timer functions are included in the algorithm to enhance performance.
The algorithm controlling the attenuator is enabled via the CPS for each personality. When the
algorithm is disabled, the attenuator is essentially a short circuit from input to output. After the
attenuator, the received signal is applied to the
receiver preamp, Q1
. The preamp is a transistor,
which has been biased and matched for optimum intermodulation (IM), noise figure (NF), and gain
performance. Components L1 and C1 match the input (gate 1) of the amp to the first preselector
output, while D1 provides some breakdown protection for Q1. The output of the amp’s second MLC
preselector is matched to C8, L6, and C5. The preamp is supplied by a 3V analog regulator and is
biased at approximately 0.75Vdc at the base and 1.7Vdc at the collector. The L1 and C3 network
provide improved third order linearity at low.
The output of the amp is matched to a second
three-pole preselector (FL2)
of the type previously
discussed. The subsequent stage in the receiver chain is the
1st mixer U1
, which uses low-side
injection in the 800 MHz band and high-side injection in the 700 MHz band, to convert the RF carrier
to an intermediate frequency (IF) of 109.65 MHz. Since low-side injection is used in the 800 MHz
band, the LO frequency is offset below the RF carrier by 109.65 MHz, or Flo = Frf - 109.65 MHz. The
mixer utilizes Bi-CMOS technology in a double-balanced, Gilbert Cell configuration.
A balun transformer (T1) is used to couple the RF signal into the mixer. The primary winding of T1 is
matched to the preceding stage by capacitor C35 and inductor L7. The secondary winding of T1
provides a differential output. The center tap pin is grounded via a 39-ohm resistor that sets the
mixer bias current. The differential signal is applied directly to the mixer.
The final stage in the receiver front end is a
three-pole crystal filter (FL3)
. The crystal filter provides
some of the receiver’s adjacent channel selectivity. The input to the crystal filter is matched to the 1st
mixer using components L10, C29, L11, C17, L12, and C18. The output of the crystal filter is
matched to the input with components C19, L13, C20, and L14. The crystal filter provides at least
80dB of second image protection and improves IM distortion in the ABACUS III IC.
Содержание ASTRO MT 1500
Страница 4: ...iv Table of Contents August 16 2007 6816985H01 B Notes ...
Страница 30: ...August 16 2007 6816985H01 B 2 1 4 VHF Overall Characteristics Vocoder Circuitry Overview Notes ...
Страница 34: ...August 16 2007 6816985H01 B 2 2 4 UHF1 Overall Characteristics Vocoder Circuitry Overview Notes ...
Страница 38: ...August 16 2007 6816985H01 B 2 3 4 UHF2 Overall Characteristics Vocoder Circuitry Overview Notes ...
Страница 42: ...August 16 2007 6816985H01 B 2 4 4 700 800 MHz Overall Characteristics Vocoder Circuitry Overview Notes ...
Страница 46: ...August 16 2007 6816985H01 B 2 5 4 900MHz Overall Characteristics Vocoder Circuitry Overview Notes ...
Страница 140: ...August 16 2007 6816985H01 B 4 4 20 700 800 MHz Detailed Theories of Operation VOCON Functional Blocks Notes ...
Страница 164: ...August 16 2007 6816985H01 B 5 6 Troubleshooting Procedures Operational Error Codes Notes ...
Страница 188: ...August 16 2007 6816985H01 B 6 1 24 VHF Troubleshooting Charts Secure Hardware Failure Notes ...
Страница 212: ...August 16 2007 6816985H01 B 6 2 24 UHF1 Troubleshooting Charts Secure Hardware Failure Notes ...
Страница 236: ...August 16 2007 6816985H01 B 6 3 24 UHF2 Troubleshooting Charts Secure Hardware Failure Notes ...
Страница 260: ...August 16 2007 6816985H01 B 6 4 24 700 800 MHz Troubleshooting Charts Secure Hardware Failure Notes ...
Страница 284: ...August 16 2007 6816985H01 B 6 5 24 900 MHz Troubleshooting Charts Secure Hardware Failure Notes ...
Страница 296: ...August 16 2007 6816985H01 B 7 1 12 VHF Troubleshooting Waveforms PP7 TX LO 7 1 11PP7 TX LO Probe point TP299 ...
Страница 301: ...6816985H01 B August 16 2007 VHF Troubleshooting Waveforms TP13 Mod In 7 1 17 7 1 16TP13 Mod In Test point TP36 ...
Страница 324: ...August 16 2007 6816985H01 B 7 1 40 VHF Troubleshooting Waveforms PP33 SPI Data 7 1 39PP33 SPI Data Probe Point R802 ...
Страница 325: ...6816985H01 B August 16 2007 VHF Troubleshooting Waveforms PP34 SPI CLK 7 1 41 7 1 40PP34 SPI CLK Probe Point R803 ...
Страница 342: ...August 16 2007 6816985H01 B 7 2 12 UHF1 Troubleshooting Waveforms PP7 TX LO 7 2 11PP7 TX LO Probe point TP299 ...
Страница 347: ...6816985H01 B August 16 2007 UHF1 Troubleshooting Waveforms TP13 Mod In 7 2 17 7 2 16TP13 Mod In Test point TP36 ...
Страница 371: ...6816985H01 B August 16 2007 UHF1 Troubleshooting Waveforms PP33 SPI Data 7 2 41 7 2 39PP33 SPI Data Probe Point R802 ...
Страница 372: ...August 16 2007 6816985H01 B 7 2 42 UHF1 Troubleshooting Waveforms PP34 SPI CLK 7 2 40PP34 SPI CLK Probe Point R803 ...
Страница 378: ...August 16 2007 6816985H01 B 7 2 48 UHF1 Troubleshooting Waveforms TP39 RX SSI Frame Sync Notes ...
Страница 390: ...August 16 2007 6816985H01 B 7 3 12 UHF2 Troubleshooting Waveforms PP7 TX LO 7 3 11PP7 TX LO Probe point TP299 ...
Страница 395: ...6816985H01 B August 16 2007 UHF2 Troubleshooting Waveforms TP13 Mod In 7 3 17 7 3 16TP13 Mod In Test point TP36 ...
Страница 418: ...August 16 2007 6816985H01 B 7 3 40 UHF2 Troubleshooting Waveforms PP33 SPI Data 7 3 39PP33 SPI Data Probe Point R802 ...
Страница 419: ...6816985H01 B August 16 2007 UHF2 Troubleshooting Waveforms PP34 SPI CLK 7 3 41 7 3 40PP34 SPI CLK Probe Point R803 ...
Страница 486: ...August 16 2007 6816985H01 B 7 5 12 Troubleshooting Waveforms PP7 TX LO 7 5 11PP7 TX LO Probe point Shield Tx_INJ ...
Страница 492: ...August 16 2007 6816985H01 B 7 5 18 Troubleshooting Waveforms TP13 Mod In 7 5 17TP13 Mod In Test point TP203 ...
Страница 501: ...6816985H01 B August 16 2007 Troubleshooting Waveforms PP22 Analog 5V 7 5 27 7 5 26PP22 Analog 5V Probe point U500 pin 5 ...
Страница 517: ...6816985H01 B August 16 2007 Troubleshooting Waveforms PP33 SPI Data 7 5 43 7 5 42PP33 SPI Data Probe Point R802 ...
Страница 518: ...August 16 2007 6816985H01 B 7 5 44 Troubleshooting Waveforms PP34 SPI CLK 7 5 43PP34 SPI CLK Probe Point R803 ...
Страница 521: ...6816985H01 B August 16 2007 Troubleshooting Waveforms TP37 RX SSI Data 7 5 47 7 5 46TP37 RX SSI Data Test Point TP403 ...
Страница 522: ...August 16 2007 6816985H01 B 7 5 48 Troubleshooting Waveforms TP38 RX SSI Clock 7 5 47TP38 RX SSI Clock Test Point TP404 ...
Страница 710: ...9 2 40 UHF1 Schematics Board Overlays and Parts Lists August 16 2007 6816985H01 B Notes ...
Страница 806: ...9 5 32 900MHz Schematics Board Overlays and Parts Lists August 16 2007 6816985H01 B Notes ...
Страница 816: ...Index 4 August 16 2007 6816985H01 B Notes ...
Страница 817: ......