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ACE9030FP2N Просмотр технического описания (PDF) - Mitel Networks

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Компоненты Описание
производитель
ACE9030FP2N
Mitel
Mitel Networks Mitel
ACE9030FP2N Datasheet PDF : 39 Pages
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ACE9030
ELECTRICAL CHARACTERISTICS
These characteristics apply over these ranges of conditions (unless otherwise stated):
TAMB = – 40 °C to + 85 °C, all VDD = + 3·6 to + 5·0 V, GND ref. = VSS
A.C. Characteristics (continued)
Parameter
LOW FREQUENCY AMPLIFIERS (1 and 2)
Voltage Gain
Input Offset
Open loop input resistance
Open loop output resistance
Unity Gain bandwidth
Input bias current, inverting input
Power supply rejection at 120 Hz, 10 kHz
Output voltage maximum
Output voltage maximum, as a comparator
Output voltage minimum level
Output voltage minimum level
Common mode input range (LF1 1)
Common mode input range (LF1 2)
Output slew rate
Output load capacitance
8 MHz OSCILLATOR and PLL
OSC8 centre frequency
OSC8 VCO sensitivity
OSC8 charge pump output current
CLK8 output load, resistive:
capacitive:
CLK8 output amplitude
CLK8 total output jitter
Start-up time at power-on, to default settings
Lock time to within 125 ppm, after
reprogramming set-ups
AFCIN F.M. DISCRIMINATOR and AFC
AFCIN input signal level
AFCIN input impedance, resistive:
capacitive:
Input frequency
Input signal to integrated noise ratio
Input Schmitt Hysteresis
AUDIO signal SINAD, psophometric, note 7
AUDIO signal hum and noise, note 7
AUDIO output signal level, note 7
AFCOUT load
AFCOUT duty cycle
AFCOUT rise and fall times
Min.
1200
40
VDDA – 0·2
VDDA – 0·1
Typ.
2800
10
1
8
2
50
VSSA
VSSA
0.15
0.25
8·064
25
50
15
25
15
25
0·8
1·0
0·05
50
400
10
8
40
45
195
260
37
Max.
20
200
0·2
0·1
2.5
VDDA
30
100
30
2·4
500
15
15
2·5
10
500
– 46
30
63
75
Unit Conditions
mV
M
k
MHz
nA
dB
V
V
V
V
V
10 kto 6ND
10 kto 6ND
10 kto 6ND
10 kto 6ND
V/µs
pF
MHz
MHz/V
µA
k
pF
Vpk-pk
Hz 0 - 3 kHz
ms With a loop filter as
described in fig. 17
ms
Vpk-pk
k
pF
kHz
dB I.F. ± 15 kHz.
mV
dB 1 kHz tone at 3 kHz
dB peak deviation on
mVrms AFCIN input at I.F.
pF
%
ns
Note
7. AUDIO signal quality is measured with feedback components as shown in figure 18 and with 500 mV peak to peak input to AFCIN.
Discriminator gain is set with D = 3 and M = 40 and VDD = 3·75 V and a crystal at 14·85 MHz. SINAD is defined as the ratio of wanted signal
to all unwanted output, measured simultaneously with filters. The hum and noise figure is defined as the ratio of output power at AUDIO when
AFCIN is unmodulated to the output power when AFCIN is driven as specified above.
8

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