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PDF MB15F76UV Data sheet ( Hoja de datos )

Número de pieza MB15F76UV
Descripción ASSP Dual Serial Input PLL Frequency Synthesizer
Fabricantes Fujitsu Media Devices 
Logotipo Fujitsu Media Devices Logotipo



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No Preview Available ! MB15F76UV Hoja de datos, Descripción, Manual

www.DataSheet4U.com
Aug. 2003
Edition 0.2
ASSP
Dual Serial Input
PLL Frequency Synthesizer(Small Package)
MB15F76UV
„ DESCRIPTION
The Fujitsu MB15F76UV is a serial input Phase Locked Loop (PLL) frequency synthesizer with a 6000MHz and a
1500MHz prescalers. Both IF and RF PLL section have a 1/4 divider. And a 16/17 or a 32/33 for the 6000MHz
prescaler, and a 4/5 or a 8/9 for the 1500MHz prescaler can be selected for the prescaler that enables pulse swallow
operation.
The BiCMOS process is used, as a result, a supply current is typically 8.5mA typ. at 3.0V. The supply voltage range
is from 2.5V to 3.6V. A refined charge pump supplies well-balanced output current with 1.5mA and 6mA selectable
by serial data. Fast locking is acheived for adopting the new circuit.
The new package(BCC18) decreases a mount area of MB15F76UV about 50% comparing with the former BCC20(for
dual PLL).
MB15F76UV is ideally suited for wireless communications, such as W-LAN.
„ FEATURES
• Very small package: BCC18 (2.4*2.7*0.45mm)
• High frequency operation: RF synthesizer : 6000MHz max
IF synthesizer : 1500MHz max
• Low power supply voltage: VCC = 2.5 to 3.6 V
• Ultra Low power supply current : ICC = 8.5 mA typ. (VCC = 3.0V, Ta=25°C, SW=0 in RF, IF locking state)
ry.• Direct power saving function : Power supply current in power saving mode
Typ. 0.1 µA(Vcc=3.0V, Ta=25°C), Max. 10 µA(Vcc=3.0V)
• Dual modulus prescaler : 6000MHz prescaler(16/17 or 32/33, and 1/4divider)
a• 1500MHz prescaler(4/5 or 8/9, and 1/4divider)
in• Serial input 14-bit programmable reference divider: R = 3 to 16,383
• Serial input programmable divider consisting of:
lim- Binary 5-bit swallow counter: 0 to 31
re- Binary 13-bit programmable counter: 3 to 8191
• On-chip phase comparator for fast lock and low noise
P• On-chip phase control for phase comparator
• Operating temperature: Ta = –40 to 85°C
• Sireal data format compatible with MB15F76UL
18-pad, Plastic BCC
(LCC-18P-M05)
1

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MB15F76UV pdf
www.DataSheet4U.com
Aug. 2003
Edition 0.2
MB15F76UV
„ ABSOLUTE MAXIMUM RATINGS
Parameter
Power supply voltage
Input voltage
Output voltage
Storage temperature
Symbol
VCC
VI
VO
VDO
Tstg
Rating
–0.5 to +4.0
–0.5 to VCC +0.5
GND to Vcc
GND to Vcc
–55 to +125
Unit Remark
V
V
V LD/fout
V Do
°C
Note: Permanent device damage may occur if the above Absolute Maximum Ratings are exceeded. Functional
operation should be restricted to the conditions as detailed in the operational sections of this data sheet.
Exposure to absolute maximum rating conditions for extended periods may affect device reliability.
„ RECOMMENDED OPERATING CONDITIONS
Parameter
Power supply voltage
Input voltage
Operating temperature
Symbol
VCC
VI
Ta
Min.
2.5
GND
–40
Value
Typ.
3.0
Max.
3.6
VCC
+85
Unit
V
V
°C
Remark
VCCRF = VCCIF
Handling Precautions
(1) VccRF and,VccIF must supply equal voltage.
Even if either RF-PLL or IF-PLL is not used, power must be supplied to both VccRF and VccIF to keep them equal. It is
recommended that the non-use PLL is controlled by power saving function.
(2) To protect against damage by electrostatic discharge, note the following handling precautions:
-Store and transport devices in conductive containers.
-Use properly grounded workstations, tools, and equipment.
-Turn off power before inserting or removing this device into or from a socket.
-Protect leads with conductive sheet, when transporting a board mounted device.
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MB15F76UV arduino
www.DataSheet4U.com
Aug. 2003
Edition 0.2
MB15F76UV
Table. 8 Charge Pump Current Setting
CS Current value
1 + 6.0 mA
0 + 1.5 mA
4. Power Saving Mode (Intermittent Mode Control Circuit)
Table 9. PS Pin Setting
PS pin
Status
H Normal mode
L Power saving mode
The intermittent mode control circuit reduces the PLL power consumption.
By setting the PS pin low, the device enters into the power saving mode, reducing the current consumption. See
the Electrical Characteristics chart for the specific value.
The phase detector output, Do, becomes high impedance.
For the single PLL, the lock detector, LD, remains high, indicating a locked condition.
For the dual PLL, the lock detector, LD, is as shown in the LD Output Logic table.
Setting the PS pin high, releases the power saving mode, and the device works normally.
The intermittent mode control circuit also ensures a smooth startup when the device returns to normal operation.
When the PLL is returned to normal operation, the phase comparator output signal is unpredictable. This is because
of the unknown relationship between the comparison frequency (fp) and the reference frequency (fr) which can
cause a major change in the comparator output, resulting in a VCO frequency jump and an increase in lockup time.
To prevent a major VCO frequency jump, the intermittent mode control circuit limits the magnitude of the error signal
from the phase detector when it returns to normal operation.
Note: When power (VCC) is first applied, the device must be in standby mode.
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