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MAS6179A2 Просмотр технического описания (PDF) - Micro Analog systems

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MAS6179A2
MAS
Micro Analog systems MAS
MAS6179A2 Datasheet PDF : 10 Pages
1 2 3 4 5 6 7 8 9 10
DA6179.000
22 January, 2007
FREQUENCY SELECTION
The frequency selection and power down control is
accomplished via two digital control pins PDN1 and
PDN2. The control logic is presented in table 1.
Table 1. Frequency selection and power down control
PDN1
PDN2 RFI2 Switch RFI3 Switch
High
High
Low
Low
High
Low
High
Low
Open
Open
Closed
Closed
Open
Open
Open
Closed
Selected Crystal
Output
-
QO1
QO2
QO3
Description
Power down
Frequency 1
Frequency 2, RFI2 capacitor
connected in parallel with antenna
Frequency 3, RFI2 and RFI3
capacitors connected in parallel
with antenna
The internal antenna tuning capacitor switches
(RFI2, RFI3) and crystal filter output switches (QO1,
QO2, QO3) are controlled according table 1.
If frequency 1 is selected the RFI2 and RFI3
switches are open and only crystal output QO1 is
active. Antenna frequency is determined by antenna
inductor LANT (see Typical Application on page 6),
antenna capacitor CANT1 and parasitic capacitances
related to antenna inputs RFIP, RFIM, RFI2 and
RFI3 (see Antenna Tuning Considerations below).
Frequency 1 is the highest frequency of the three
selected frequencies.
If frequency 2 is selected then RFI2 switch is closed
to connect CANT2 to pin RFIM in parallel with ferrite
antenna and tune it to frequency 2. Then only
crystal output QO2 is active. Frequency 2 is the
medium frequency of the three selected
frequencies.
If frequency 3 is selected both RFI2 and RFI3
switches are closed to connect both CANT2 and CANT3
capacitors to RFIM pin in parallel with ferrite
antenna and tune it to frequency 3. Then only
crystal output QO3 is active. Frequency 3 is the
lowest frequency of the three selected frequencies.
It is recommended to switch the device to power
down for at least 50ms before switching to another
frequency. This guarantees fast startup in switching
to another frequency. During minimum 50ms power
down time the AGC capacitor voltage is completely
pulled to VDD and the proper fast startup conditions
are met. Without proper fast startup control the
startup time can be several minutes. With fast
startup it is shortened typically to few seconds.
4 (10)

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