ncp2890-d ON Semiconductor, ncp2890-d Datasheet - Page 11

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ncp2890-d

Manufacturer Part Number
ncp2890-d
Description
1w Audio Power Amplifier
Manufacturer
ON Semiconductor
Datasheet
Detailed Description
until 5.5 V power supply. It delivers 320 mW rms output
power to 4.0 W load (V
power to 8.0 W load (V
two identical internal power amplifiers; the first one is
externally configurable with gain−setting resistors R
R
resistors) and the second is internally fixed in an inverting
unity−gain configuration by two resistors of 20 kW. So the
load is driven differentially through OUTA and OUTB
outputs. This configuration eliminates the need for an
output coupling capacitor.
Internal Power Amplifier
were designed to deliver the output power of the
specifications without clipping. The channel resistance
(R
0.6 W when they drive current.
composed of three symmetrical gain stages, first and
medium gain stages are transconductance gain stages to
obtain maximum bandwidth and DC gain.
Turn−On and Turn−Off Transitions
illustrated with plots that show both single ended signals on
the previous page.
transitions, output power in the load must be slowly
established or cut. When logic high is applied to the
shutdown pin, the bypass voltage begins to rise
exponentially and once the output DC level is around the
common mode voltage, the gain is established slowly
(50 ms). This way to turn−on the device is optimized in
terms of rejection of “pop and click” noises.
by a logic low on the shutdown pin. During the shutdown
mode, amplifier outputs are connected to the ground.
before the DC output level is tied to Ground. However, as
shown on Figure 30, the turn off time of the audio signal is
40 ms.
the following formula.
capacitor can be used. The other option is to use NCP2892
which offers 100 ms with 1 mF bypass capacitor.
f
The NCP2890 audio amplifier can operate under 2.6 V
The structure of the NCP2890 is basically composed of
The output PMOS and NMOS transistors of the amplifier
The structure of the internal power amplifier is
A cycle with a turn−on and turn−off transition is
In order to eliminate “pop and click” noises during
The device has the same behavior when it is turned−off
When a shutdown low level is applied, it takes 350 ms
A theoretical value of turn−on time at 25°C is given by
C
R: internal 300 k resistor with a 25% accuracy
If a faster turn on time is required then a lower bypass
on
(the closed−loop gain is fixed by the ratios of these
by
) of the NMOS and PMOS transistors does not exceed
T
: bypass capacitor
on
= 0.95 * R * C
p
by
p
= 5.0 V).
= 2.6 V) and 1.0 W rms output
(285 ms with C
by
APPLICATION INFORMATION
= 1 mF)
NCP2890, NCV2890
http://onsemi.com
in
and
11
− The possible output power is four times larger (the
− Output pins (OUTA and OUTB) are biased at the same
Shutdown Function
is low. During the shutdown mode, the DC quiescent
current of the circuit does not exceed 100 nA.
Current Limit Circuit
1.0 W, V
the load of 500 mA.
load when a short−circuit occurs, the current limit in the
load is fixed to 800 mA. The current in the four output MOS
transistors are real−time controlled, and when one current
exceeds 800 mA, the gate voltage of the MOS transistor is
clipped and no more current can be delivered.
Thermal Overload Protection
temperature exceeds 160°C, and will be switched on again
only when the temperature decreases fewer than 140°C.
external components besides gain−setting resistors, an
input coupling capacitor and a proper bypassing capacitor
in the typical application.
R
configuration.
advantages:
given by
output voltage).
output power, check that the amplifier is not current limited
or clipped.
is 500 mA
P orms
in
The device enters shutdown mode when shutdown signal
The maximum output power of the circuit (Porms =
In order to limit the excessive power dissipation in the
Internal
The NCP2890 is unity−gain stable and requires no
The first amplifier is externally configurable (R
The differential−ended amplifier presents two major
The differential closed loop−gain of the amplifier is
Output power delivered to the load is given by
When choosing gain configuration to obtain the desired
The maximum current which can be delivered to the load
output swing is doubled) as compared to a single−ended
amplifier under the same conditions.
potential V
coupling capacitor required with a single−ended
amplifier configuration.
), while the second is fixed in an inverting unity gain
+
p
A vd
= 5.0 V, R
(Vopeak) 2
I opeak
amplifiers are switched off when the
2 * R L
+
p
/2, this eliminates the need for an output
2 *
+
L
R in
V opeak
R f
(Vopeak is the peak differential
= 8.0 W) requires a peak current in
R L
+
V inrms
V orms
.
.
f
and

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