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PDF TB2924FG Data sheet ( Hoja de datos )

Número de pieza TB2924FG
Descripción 2-channel (BTL) Low-Frequency Power Amplifier IC
Fabricantes Toshiba Semiconductor 
Logotipo Toshiba Semiconductor Logotipo



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No Preview Available ! TB2924FG Hoja de datos, Descripción, Manual

TB2924FG
TOSHIBA Bi-CMOS Digital Integrated Circuit Silicon Monolithic
TB2924FG
Class D, 20 W × 2-channel (BTL) Low-Frequency Power Amplifier IC
The TB2924FG is an audio output IC that employs the highly
efficient class D method, developed for TV and home audio
applications.
The TB2924FG eliminates the need for heatsink(Note), thus
allowing the design of an end product with a small footprint. It
www.DataSheeta4lUs.ocoinmcorporates a range of features, such as standby and muting,
as well as different protective circuits.
Features
Output: POUT = 13 W × 2ch (typ.) BTL
VCC = 12 V, RL = 4 , THD = 10%, f = 1 kHz
Weight: 0.85 g (typ.)
POUT = 7.5 W × 2ch (typ.) BTL
VCC = 12 V, RL = 8 , THD = 10%, f = 1 kHz
POUT = 19.5 W × 2ch (typ.) BTL
VCC = 15 V, RL = 4 , THD = 10%, f = 1 kHz
POUT = 21 W × 2ch (typ.) BTL
VCC = 20 V, RL = 8 , THD = 10%, f = 1 kHz
High efficiency: When output is 10 W η = 88% (VCC = 15 V, RL = 8 )
Distortion: 0.1% (1 W output, f = 1 kHz)
Gain: 34dB (typ.)
Small flat package: HSOP36-P-450-0.65
Muting/standby features
Thermal AGC features
Master and slave oscillation frequencies
Oscillation frequency: fsw = 200 kHz (typ.)
Operating supply voltage range: VCC (opr) = 11 V to 18V (Topr = 0°C to 75°C),
(4 )
VCC (opr) = 11.4 V to 18 V (Topr = −20°C to 75°C)
Operating supply voltage range: VCC (opr) = 11 V to 20V (Topr = 0°C to 75°C),
(8 )
VCC (opr) = 11.4 V to 20 V (Topr = −20°C to 75°C)
Protective circuits: thermal shutdown, short-circuit protection (load)
These protection functions are intended to avoid some output short circuits or other abnormal conditions
temporarily.
These protect functions do not warrant to prevent the IC from being damaged.
In case of the product would be operated with exceeded guaranteed operating ranges, these protection features
may not operate and some output short circuits may result in the IC being damaged.
The TB2924FG does not contain protection circuitry for shorts against VCC and ground. Extra care should be
exercised when output pins serve as line output or adjacent pins are shorted together on the board.
Note: Generally, the average power of the audio signal constitutes only one-fifth to one-tenth of the maximum output
power, and in practice, will not exceed the permissible loss. However, care should be exercised so that it will
not be really exceeded, considering the board’s thermal resistance, ambient temperature, average output
power and so forth. Toshiba has verified that the TB2924FG works properly without a heatsink on the Toshiba
PC board for up to 10-watt by 2-channel output typical (VCC = 15 V, RL = 8 , THD = 10%, f = 1 kHz) with a
sine-wave input.
This product are sensitive to electrostatic discharge. When handling this product, protect the environment to
avoid electrostatic discharge.(MM:±200V OK,HBM:±1500V OK)
Install the product correctly. Otherwise, it may result in break down, damage and/or degradation to the product
or equipment.
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TB2924FG pdf
TB2924FG
5. Reduction of Pop Noise Generated when Turning on and Off the Power Supply
To reduce pop noise, it is recommended to enable muting by setting pin 17 (mute switch) to logic low
before turning on or off the power supply or standby mode.
When turning on or off the standby mode (When the power supply is not turned on or off)
Mute Pin
www.DataSheet4U.com
Standby Pin
Turn on or off the standby mode after turning on muting.
When the power supply is off
Mute Pin
Standby Pin
Power Supply Pin
Turn off the power supply after turning on muting.
Don’t turn off the standby mode before turning off the power supply.
When the power supply is on
Mute Pin
Standby Pin
Turn on the power supply after turning on muting.
Timing charts may be simplified for explanatory purpose.
6. Board Mounting Consideration
The switching of the TB2924FG is controlled with a rectangular-wave signal of approximately 200 kHz
(typical). It is recommended to place the TB2924FG far from the tuner portion, etc. that might be
affected.
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TB2924FG arduino
DATAs for reference (Typ.)
THD – POUT_f
50
30 VCC = 15 V
RL = 8
100: to 30 k
10
1 k: 400 to 30 k
5 10k: 400 to
3 30 kHz LPF
OUT2_10 k
1 OUT1_10 k
0.5
0.3
OUT1_1 k
OUT2_1 k
0.1
0.05
www.DataSheet4U.com0.03
OUT1_100
0.01
0.01 0.03 0.1
0.3
OUT2_100
1 3 10 30 100
POUT (W)
THD –f
50
30 VCC = 15 V
RL = 8
10 POUT = 1 W
Filtr: to 30 k (f = 20~800)
5 400 to 30 k (f = 1 k to 2 k)
3 400 to 80 k (f = 4 k to 6 k)
400 to (f = 8 k to 40 k)
1
0.5 OUT2
0.3
0.1
0.05
0.03
OUT1
0.01
10
100 1000
f (Hz)
10000
100000
TB2924FG
THD – POUT_VCC
50
30 f = 1 kHz
RL = 8
10 1 k: 400 to 30 k
5 30 kHz LPF
3
1
0.5
OUT1_15 V
0.3
OUT1_12 V
0.1
0.05
0.03 OUT2_15 V
OUT2_12 V
0.01
0.01 0.03 0.1 0.3
1
3
POUT (W)
10 30 100
POUT_VCC
25
f = 1 kHz
RL = 8
THD = 10%
20 Analyzer filter:
400 Hz to 30 kHz
Output: 30 k LPF
15
OUT1
OUT2
10
5
0
0 5 10 15 20
VCC (V)
η – POUT
100
80
60
40
20
VCC = 15 V
f = 1 kHz
RL = 8
0
0 2 4 6 8 10 12 14 16
POUT (W)
5
VCC = 15 V
f = 1 kHz
RL = 8
4
PD – POUT
3
2
1
0
0 2 4 6 8 10 12
POUT (W)
11 2006-01-25

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