SI4136-F-BT Silicon Laboratories Inc, SI4136-F-BT Datasheet - Page 9

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SI4136-F-BT

Manufacturer Part Number
SI4136-F-BT
Description
SYNTH WLAN SAT RADIO(RF1/RF2/IF)
Manufacturer
Silicon Laboratories Inc
Type
Frequency Synthesizerr
Datasheet

Specifications of SI4136-F-BT

Pll
Yes
Input
Clock
Output
Clock
Number Of Circuits
1
Ratio - Input:output
1:2
Differential - Input:output
No/No
Frequency - Max
2.5GHz
Divider/multiplier
Yes/No
Voltage - Supply
2.7 V ~ 3.6 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
24-TSSOP
Frequency-max
2.5GHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Table 5. RF and IF Synthesizer Characteristics (Continued)
(V
Parameter
RF1 Harmonic Suppression
RF2 Harmonic Suppression
IF Harmonic Suppression
RFOUT Power Level
RFOUT Power Level
IFOUT Power Level
RF1 Output Reference Spurs
RF2 Output Reference Spurs
Powerup Request to Synthesizer Ready
Time
Powerup Request to Synthesizer Ready
Time
Powerdown Request to Synthesizer Off
Time
Notes:
DD
1. f
2. RF VCO tuning range limits are fixed by inductance of internally bonded wires.
3. From powerup request (PWDN or SEN during a write of 1 to bits PDIB and PDRB in Register 2) to RF and IF
4. From powerdown request (PWDN, or SENduring a write of 0 to bits PDIB and PDRB in Register 2) to supply current
=
2.7
unless otherwise noted.
synthesizers ready (settled to within 0.1 ppm frequency error).
equal to I
(RF) = 1 MHz, f
to 3.6 V, T
1
PWDN
A
.
= –40 to 85 °C)
(IF) = 1 MHz, RF1 = 2.4 GHz, RF2 = 2.1 GHz, IFOUT = 800 MHz, LPWR = 0, for all parameters
4
3
3
Symbol
t
t
t
pup
pup
pdn
Rev. 1.41
Z
Z
L
L
Second Harmonic
= 50RF1 active
= 50RF2 active
Offset = 2 MHz
Offset = 3 MHz
Offset = 2 MHz
Offset = 3 MHz
Offset = 1 MHz
Offset = 1 MHz
Test Condition
f
f
Figures 4, 5
Figures 4, 5
Figures 4, 5


Z
> 500 kHz
 500 kHz
L
= 50 
Min
–7
–7
–7
Si4136/Si4126
40/f
–3.5
–3.5
–28
–23
–26
–63
–68
–70
–63
–68
–70
Typ
–4
80
50/f
–0.5
–0.5
Max
–20
–20
–20
100
100
0
dBm
dBm
dBm
Unit
dBc
dBc
dBc
dBc
dBc
dBc
dBc
dBc
dBc
s
ns
9

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