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RF2046PCBA-41X 数据表(PDF) 3 Page - RF Micro Devices

部件名 RF2046PCBA-41X
功能描述  GENERAL PURPOSE AMPLIFIER
PDF  8 Pages
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制造商  RFMD [RF Micro Devices]
网页  http://www.rfmd.com
标志 RFMD - RF Micro Devices

RF2046PCBA-41X 数据表(HTML) 3 Page - RF Micro Devices

  RF2046PCBA-41X Datasheet HTML 1Page - RF Micro Devices RF2046PCBA-41X Datasheet HTML 2Page - RF Micro Devices RF2046PCBA-41X Datasheet HTML 3Page - RF Micro Devices RF2046PCBA-41X Datasheet HTML 4Page - RF Micro Devices RF2046PCBA-41X Datasheet HTML 5Page - RF Micro Devices RF2046PCBA-41X Datasheet HTML 6Page - RF Micro Devices RF2046PCBA-41X Datasheet HTML 7Page - RF Micro Devices RF2046PCBA-41X Datasheet HTML 8Page - RF Micro Devices  
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4-175
RF2046
Rev A11 050207
Application Schematic
Pin
Function
Description
Interface Schematic
1RF IN
RF input pin. This pin is NOT internally DC-blocked. A DC-blocking
capacitor, suitable for the frequency of operation, should be used in
most applications. DC-coupling of the input is not allowed, because this
will override the internal feedback loop and cause temperature instabil-
ity.
2GND
Ground connection. For best performance, keep traces physically short
and connect immediately to ground plane.
3RF OUT
RF output and bias pin. Biasing is accomplished with an external series
resistor and choke inductor to VCC. The resistor is selected to set the
DC current into this pin to a desired level. The resistor value is deter-
mined by the following equation:
Care should also be taken in the resistor selection to ensure that the
current into the part never exceeds 35mA over the planned oper-
ating temperature. This means that a resistor between the supply and
this pin is always required, even if a supply near 3.5V is available, to
provide DC feedback to prevent thermal runaway. Because DC is
present on this pin, a DC-blocking capacitor, suitable for the frequency
of operation, should be used in most applications. The supply side of
the bias network should also be well bypassed.
4GND
Same as pin 2.
R
V
SUPPLY
V
DEVICE
()
I
CC
-------------------------------------------------------
=
RF OUT
RF IN
RF OUT
22 pF
R
BIAS
10 nF
22 pF
47 nH
22 pF
RF IN
V
CC
13
2
4



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