Ata8402, Electrical characteristics (continued) – Rainbow Electronics ATA8402 User Manual
Page 10
10
4982A–IND–02/07
ATA8402
Output power variation for the full
temperature range
T
amb
= 25°C,
V
S
= 3.0V
V
S
= 2.0V
∆
P
Ref
∆
P
Ref
–1.5
–4.0
dB
dB
Output power variation for the full
temperature range
T
amb
= 25°C,
V
S
= 3.0V
V
S
= 2.0V
P
Out
= P
Ref
+
∆
P
Ref
∆
P
Ref
∆
P
Ref
–2.0
–4.5
dB
dB
Achievable output-power range
Selectable by load impedance
P
Out_typ
0
7.5
dBm
Spurious emission
f
CLK
= f
0
/128
Load capacitance at pin CLK = 10 pF
f
O
±1
×
f
CLK
f
O
±4
×
f
CLK
Other spurious are lower
–55
–52
dBc
dBc
Oscillator frequency XTO
(= phase comparator frequency)
f
XTO
= f
0
/32
f
XTAL
= resonant frequency of the XTAL,
C
M
≤
10 fF, load capacitance selected
accordingly
T
amb
= 25°C
f
XTO
f
XTAL
ppm
PLL loop bandwidth
250
kHz
Phase noise of phase comparator
Referred to f
PC
= f
XT0,
25 kHz distance to carrier
–116
–110
dBc/Hz
In-loop phase noise PLL
25 kHz distance to carrier
–86
–80
dBc/Hz
Phase noise VCO
At 1 MHz
At 36 MHz
–94
–125
–90
–121
dBc/Hz
dBc/Hz
Frequency range of VCO
f
VCO
429
439
MHz
Clock output frequency (CMOS
microcontroller compatible)
f
0
/128
MHz
Voltage swing at pin CLK
C
Load
≤
10 pF
V
0h
V
0l
V
S
×
0.8
V
S
×
0.2
V
V
Series resonance R of the crystal
Rs
110
Ω
Capacitive load at pin XT0
7
pF
FSK modulation frequency rate
Duty cycle of the modulation signal = 50%
0
32
kHz
ASK modulation frequency rate
Duty cycle of the modulation signal = 50%
0
50
kHz
ENABLE input
Low level input voltage
High level input voltage
Input current high
V
Il
V
Ih
I
In
1.7
0.25
20
V
V
µA
PA_ENABLE input
Low level input voltage
High level input voltage
Input current high
V
Il
V
Ih
I
In
1.7
0.25
V
S
(1)
5
V
V
µA
7.
Electrical Characteristics (Continued)
V
S
= 2.0V to 4.0V, T
amb
= 25°C unless otherwise specified.
Typical values are given at V
S
= 3.0 V and T
amb
= 25°C. All parameters are referred to GND (pin 7).
Parameters
Test Conditions
Symbol
Min.
Typ.
Max.
Unit
Note:
1. If V
S
is higher than 3.6V, the maximum voltage will be reduced to 3.6V.