BU2285FV,BU2363FV
Technical Note
13/16
www.rohm.com
2009.04 - Rev.
A
© 2009 ROHM Co., Ltd. All rights reserved.
1:VDD1 24:CLK33M
33.8688MHz
0.1uF
2:VSS1 23:CTRLB
OPEN:27.0000MHz
L :13.5000MHz
16.9344MHz
3:CLK16M 22:CLK54M
54.0000MHz
4:AVSS 21:OE
OPEN:Enable
0.1uF L :Disable
5:AVDD 20:CLKDAC
27.0000MHz
or 13.5000MHz
6:AVDD 19:DVDD
0.1uF 0.1uF
7:AVSS 18:DVSS
8:XTALIN 17:DVSS
9:XTALOUT 16:CLK27M
27.0000MHz
10:NC 15:VDD2
OPEN:48.0kHz type
0.1uF
L :44.1kHz type 11:CTRLA 14:VSS2
36.8640MHz
12:CLKA 13:CLKB
18.4320MHz
or 33.8688MHz or 16.9344MHz
BU2285FV
Example of application circuit
BU2285FV
Pin Function
PIN No. PIN Name PIN Function
1 VDD1 33MHz system power supply
2 VSS1 33MHz system GND
3 CLK16M 16.9344MHz output
4 AVSS Analog GND
5 AVDD Analog power supply
6 AVDD Analog power supply
7 AVSS Analog GND
8 XTALIN Crystal input terminal
9 XTALOUT Crystal output terminal
10 NC NC
11 CTRLA CLKA or B output selection (with pull-up)
12 CLKA CTRLA=OPEN:36.8640MHz, CTRLA=L:33.8688MHz
13 CLKB CTRLA=OPEN:18.4320MHz, CTRLA=L:16.9344MHz
14 VSS2 CLKA, B GND
15 VDD2 CLKA, B power supply
16 CLK27M 27.0000MHz output
17 DVSS Digital GND
18 DVSS Digital GND
19 DVDD Digital power supply
20 CLKDAC CTRLB=OPEN:27.0000MHz, CTRLB=L:13.5000MHz
21 OE Output enable (with pull-up), OPEN:enable, L:disable
22 CLK54M 54.0000MHz output
23 CTRLB CLKDAC output selection(with pull-up)
24 CLK33M 33.8688MHz output
Note) Basically, mount ICs to the printed circuit board for use.
(If the ICs are not mounted to the printed circuit board, the characteristics of ICs may not be fully demonstrated.)
Mount 0.1F capacitors in the vicinity of the IC PINs between 1PIN (VDD1) and 2PIN (VSS1), 4PIN (AVSS) and 5PIN (AVDD), 6PIN (AVDD) and 7PIN
(AVSS), 14PIN (VSS2) and 15PIN (VDD2), and 17PIN/18PIN (DVSS) and 19PIN (DVDD), respectively.
Depending on the conditions of the printed circuit board, mount an additional electrolytic capacitor between the power supply and GND terminal.
For EMI protection, it is effective to put ferrite beads in the origin of power supply to be fed to BU2285FV from the printed circuit board or to insert a
capacitor (of 1 or less), which bypasses high frequency desired, between the power supply and the GND terminal.
Fig.85
BU2285FV,BU2363FV
Technical Note
14/16
www.rohm.com
2009.04 - Rev.
A
© 2009 ROHM Co., Ltd. All rights reserved.
OPEN:Enable
1:VDD2 16:OE
L :Disable
0.1uF
2:VSS2 15:CLK33M
33.8688MHz
54.0000MHz
3:CLK254M 14:FSEL
OPEN:48.0kHz type
L :44.1kHz type
27.0000MHz
4:CLK27M 13:CLK16M
16.9344MHz
5:AVDD 12:DVDD
0.1uF 0.1uF
6:AVSS 11:DVSS
7:XTALIN 10:768FS1
36.8640MHz
or 33.8688MHz
8:XTALOUT 9:384FS2
18.4320MHz
or 16.9344MHz
BU2363FV
Example of application circuit
BU2363FV
Pin Function
PIN No. PIN Name PIN Function
1 VDD2 27MHz, 54MHz power supply
2 VSS2 27MHz, 54MHzGND
3 CLK54M 54.0000MHz output
4 CLK27M 27.0000MHz output
5 AVDD Analog power supply
6 AVSS Analog GND
7 XTALIN Crystal input terminal
8 XTALOUT Crystal output terminal
9 384FS2 FSEL=OPEN:18.4320MHz, FSEL=L:16.9344MHz
10 768FS1 FSEL=OPEN:36.8640MHz, FSEL=L:33.8688MHz
11 DVSS Digital GND
12 DVDD Digital power supply
13 CLK16M 16.9344MHz output
14 FSEL
9, 10PIN output selection(with pull-up)
OPEN:18.4320MHz(9PIN), 36.8640MHz(10PIN)
L:16.9344MHz(9PIN), 33.8688MHz(10PIN)
15 CLK33M 33.8688MHz output
16 OE Output enable (with pull-up), OPEN:enable, L:disable
Note) Basically, mount ICs to the printed circuit board for use.
(If the ICs are not mounted to the printed circuit board, the characteristics of ICs may not be fully demonstrated.)
Mount 0.1F capacitors in the vicinity of the IC PINs between 1PIN (VDD2) and 2PIN (VSS2), 5PIN (AVDD) and 6PIN (AVSS), 11PIN (DVSS) and 12PIN
(DVDD), respectively.
Depending on the conditions of the printed circuit board, mount an additional electrolytic capacitor between the power supply and GND terminal.
For EMI protection, it is effective to put ferrite beads in the origin of power supply to be fed to BU2363FV from the printed circuit board or to insert a
capacitor (of 1 or less), which bypasses high frequency desired, between the power supply and the GND terminal.
Even though we believe that the example of recommended circuit is worth of a recommendation, please be sure to thoroughly recheck the characteristics
before use.
Fig.86
BU2285FV,BU2363FV
Technical Note
15/16
www.rohm.com
2009.04 - Rev.
A
© 2009 ROHM Co., Ltd. All rights reserved.
Notes for use
(1) Absolute Maximum Ratings
An excess in the absolute maximum ratings, such as applied voltage (VDD or VIN), operating temperature range (Topr),
etc., can break down devices, thus making impossible to identify breaking mode such as a short circuit or an open circuit.
If any special mode exceeding the absolute maximum ratings is assumed, consideration should be given to take physical
safety measures including the use of fuses, etc.
(2) Recommended operating conditions
These conditions represent a range within which characteristics can be provided approximately as expected. The
electrical characteristics are guaranteed under the conditions of each parameter.
(3) Reverse connection of power supply connector
The reverse connection of power supply connector can break down ICs. Take protective measures against the breakdown
due to the reverse connection, such as mounting an external diode between the power supply and the IC’s power supply
terminal.
(4) Power supply line
Design PCB pattern to provide low impedance for the wiring between the power supply and the GND lines.
In this regard, for the digital block power supply and the analog block power supply, even though these power supplies has
the same level of potential, separate the power supply pattern for the digital block from that for the analog block, thus
suppressing the diffraction of digital noises to the analog block power supply resulting from impedance common to the
wiring patterns. For the GND line, give consideration to design the patterns in a similar manner.
Furthermore, for all power supply terminals to ICs, mount a capacitor between the power supply and the GND terminal. At
the same time, in order to use an electrolytic capacitor, thoroughly check to be sure the characteristics of the capacitor to be
used present no problem including the occurrence of capacity dropout at a low temperature, thus determining the constant.
(5) GND voltage
Make setting of the potential of the GND terminal so that it will be maintained at the minimum in any operating state.
Furthermore, check to be sure no terminals are at a potential lower than the GND voltage including an actual electric transient.
(6) Short circuit between terminals and erroneous mounting
In order to mount ICs on a set PCB, pay thorough attention to the direction and offset of the ICs. Erroneous mounting can
break down the ICs. Furthermore, if a short circuit occurs due to foreign matters entering between terminals or between
the terminal and the power supply or the GND terminal, the ICs can break down.
(7) Operation in strong electromagnetic field
Be noted that using ICs in the strong electromagnetic field can malfunction them.
(8) Inspection with set PCB
On the inspection with the set PCB, if a capacitor is connected to a low-impedance IC terminal, the IC can suffer stress.
Therefore, be sure to discharge from the set PCB by each process. Furthermore, in order to mount or dismount the set
PCB to/from the jig for the inspection process, be sure to turn OFF the power supply and then mount the set PCB to the jig.
After the completion of the inspection, be sure to turn OFF the power supply and then dismount it from the jig. In addition,
for protection against static electricity, establish a ground for the assembly process and pay thorough attention to the
transportation and the storage of the set PCB.
(9) Input terminals
In terms of the construction of IC, parasitic elements are inevitably formed in relation to potential. The operation of the
parasitic element can cause interference with circuit operation, thus resulting in a malfunction and then breakdown of the
input terminal. Therefore, pay thorough attention not to handle the input terminals, such as to apply to the input terminals a
voltage lower than the GND respectively, so that any parasitic element will operate. Furthermore, do not apply a voltage to
the input terminals when no power supply voltage is applied to the IC. In addition, even if the power supply voltage is
applied, apply to the input terminals a voltage lower than the power supply voltage or within the guaranteed value of
electrical characteristics.
(10) Ground wiring pattern
If small-signal GND and large-current GND are provided, It will be recommended to separate the large-current GND
pattern from the small-signal GND pattern and establish a single ground at the reference point of the set PCB so that
resistance to the wiring pattern and voltage fluctuations due to a large current
will cause no fluctuations in voltages of the
small-signal GND. Pay attention not to cause fluctuations in the GND wiring pattern of external parts as well.
(11) External capacitor
In order to use a ceramic capacitor as the external capacitor, determine the constant with consideration given to a
degradation in the nominal capacitance due to DC bias and changes in the capacitance due to temperature, etc.

BU2363FV-E2

Mfr. #:
Manufacturer:
Description:
Clock Generators & Support Products AV EQUIP DVDVID REF CLOCK GEN
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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