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G8MNY > TECH 26.09.08 09:11l 83 Lines 3105 Bytes #999 (0) @ WW
BID : 3699_GB7CIP
Read: GUEST OE7FMI
Subj: An AF amplifier stage
Path: DB0FHN<DB0NOE<DB0GAP<DB0GPP<DB0KTL<DB0LHR<DB0GE<LX0PAC<DB0NDK<DB0MKA<
DB0ACC<DB0GOS<ON0AR<DB0RES<DK0WUE<7M3TJZ<UA6ADV<GB7CIP
Sent: 080926/0000Z @:GB7CIP.#32.GBR.EU #:3699 [Caterham] $:3699_GB7CIP
From: G8MNY@GB7CIP.#32.GBR.EU
To : TECH@WW
By G8MNY (Updated Dec 04)
(8 Bit ASCII Graphics use code page 437 or 850)
This simple amplifier circuit is easy for calculations.
+9V 컴컴컴컴컴컴컴컫컴컴컴컴컴� _
Rc /' `\
旼컴컴캑 Cout � �
Rb 쳐컴캑쳐컴� � � �
/'\,/ � �/ � �
I/P 컴캑쳐컴좔컴캑 NPN \._./
Cin �\e
� /'\,/
Re
0V컴컴컴컴컴컴컴컴좔컴컴컴컴컴
BASE BIAS R = Hfe x (Rc+Re) Approx
To get � the DC swing on the O/P. This is because we want the same voltage
C횱 (almost the same as across Rb) as across the total load R of Rc+Re.
GAIN = Rc/Re approx (Rc may be lower due to external load).
With high Hfe then Ie approx = Ic, so the emitter NFB Re controls the
collector current making the voltage gain just the voltage drop ratio of
Rc/Re. Assuming no external loads. For high gain applications Re includes
the internal emitter R of the transistor (typically a few ohms).
O/P Z = XCout + (Rc // ((G�1) x Rb))
This is the added components, including the apparent fraction of the bias
Rb with load current in it.
"//" means in parallel, many of the paralleled terms are insignificant.
Technically the amount that (G-1)x Rb component that affects the O/P Z
it will also depend the I/P source Z.
I/P Z = XCin + ((Hfe x Re) // (Rb/(G+1)))
This is the added components, including the apparent fraction of the bias
Rb with input current in it.
"//" means in parallel, many of the paralleled terms are insignificant.
LF Roll off
Cin & Cout affect the LF response. Basically each one will give �3dB &
6dB/Octave roll off when Xc equals the source + load Zs.
HF Response
Intrinsically limited by the transistor's FT when the Hfe becomes 1, &
component layout (inter capacitance) causing Miller HF N.F.B. effects
between O/P & I/P.
HF Compensation
HF loss can be compensated for by putting a suitable C across Re to give
+3dB boost were Xc=Re, e.g. where the measure drop is -3dB. The 6dB/Octave
lift after that should flatten the amp losses out. The input Z will be
reduced at HF though. Not often used!
EXAMPLE
+12V 컴컴컴컴컴컴컴쩡컴컴컴컴�
1k�
旼컴컴캑 + Cout
100k� 쳐컴캑쳐컴� Output
+ � �/ 0.5uF �
I/P 컴캑쳐컴좔컴캑 Hfe=100 10K Load
Cin NPN�\e �
1uF � �
100� �
0V 컴컴컴컴컴컴컴컨컴컴컴컴컴컴컴컴
So in the above example Collector should be around +6V
Gain about 9 times
O/P Z about 900� + XCout
I/P Z about 5k� + XCin
LF response with Input source Z of zero, & O/P load of 10k...
I/P �3dB LF roll off, @ 31Hz where Xc = 5k�
O/P �3dB LF roll off, @ 29Hz where Xc = 10.9k�
Giving �6dB @ 30Hz & 12dB/Octave LF cut.
Why don't U send an interesting bul?
73 De John, G8MNY @ GB7CIP
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