TA2024C Tripath Technology Inc., TA2024C Datasheet - Page 6

no-image

TA2024C

Manufacturer Part Number
TA2024C
Description
Stereo 15w 4 ? Class-t ?igital Audio Amplifier Using Digital Power Processing ?echnology
Manufacturer
Tripath Technology Inc.
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TA2024C
Manufacturer:
TRIPATH
Quantity:
20 000
E X T E R N A L C O M P O N E N T S D E S C R I P T I O N
Components
R
R
C
R
C
C
C
C
C
C
R
D
L
C
C
6
O
I
F
I
REF
A
D
P
S
SW
Z
Z
O
O
DO
Description
Inverting Input Resistance to provide AC gain in conjunction with R
biased at the BIASCAP voltage (approximately 2.4VDC).
Feedback resistor to set AC gain in conjunction with R
to the Amplifier Gain paragraph in the Application Information section.
AC input coupling capacitor which, in conjunction with R
Bias resistor. Locate close to pin 6 (REF) and ground at pin 8 (AGND2).
BIASCAP decoupling capacitor. Should be located close to pin 16.
Charge pump input capacitor. This capacitor should be connected directly between
pins 2 (DCAP2) and 3 (DCAP1) and located physically close to the TA2024C.
Charge pump output capacitor that enables efficient high side gate drive for the
internal H-bridges. To maximize performance, this capacitor should be connected
directly between pin 36 (CPUMP) and pin 33 (VDDA). Please observe the polarity
shown in the Application/ Test Circuit.
Supply decoupling for the low current power supply pins. For optimum performance,
these components should be located close to the pin and returned to their
respective ground as shown in the Application/Test Circuit.
Supply decoupling for the high current, high frequency H-Bridge supply pins. These
components must be located as close to the device as possible to minimize supply
overshoot and maximize device reliability. Both the high frequency bypassing
(0.1uF) and bulk capacitor (180uF) should have good high frequency performance
including low ESR and low ESL. Panasonic HFQ or FC capacitors are ideal for the
bulk capacitor.
Zobel Capacitor.
Zobel resistor, which in conjunction with C
frequencies. The combination of R
under both no load conditions or with real world loads, including loudspeakers which
usually exhibit a rising impedance with frequency.
Schottky diodes that minimize undershoots of the outputs with respect to power
ground during switching transitions. For maximum effectiveness, these diodes must
be located close to the output pins and returned to their respective PGND. Please
see Application/Test Circuit for ground return pin.
Output inductor, which in conjunction with C
switching waveform into an audio signal. Forms a second order filter with a cutoff
frequency of
Output capacitor.
Differential Output Capacitor. Differential noise decoupling for reduction of
conducted emissions. Must be located near chassis exit point for maximum
effectiveness.
f
Q
C
1
R
2 (
L
S
C
R
I
TOT
C
I
)
f
C
2
L
1
O
C
2 (
TOT
S
where C
L
O
C
TOT
Z
and C
TOT
)
and a quality factor of
T r i p a t h T e c h n o l o g y , I n c . - T e c h n i c a l I n f o r m a t i o n
= C
Z
Z
, terminates the output filter at high
O
minimizes peaking of the output filter
O
(Refer to the Application/Test Circuit)
and C
|| 2 * C
DO
DO
, demodulates (filters) the
I
;
.
I
A
, forms a highpass filter at
V
12
TA2024C –KL/1.0/01.06
R (
F
/
F
. This input is
R
I
)
. Please refer

Related parts for TA2024C