BH76206HFV-TR Rohm Semiconductor, BH76206HFV-TR Datasheet - Page 3

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BH76206HFV-TR

Manufacturer Part Number
BH76206HFV-TR
Description
IC VIDEO DVR LPF SGL 6HVSOF
Manufacturer
Rohm Semiconductor
Datasheets

Specifications of BH76206HFV-TR

Package / Case
5-HVSOF
Applications
Driver
Number Of Circuits
1
Current - Supply
8mA
Voltage - Supply, Single/dual (±)
2.6 V ~ 5.5 V
Mounting Type
Surface Mount
Svhc
No SVHC (18-Jun-2010)
Base Number
76206
No. Of Pins
6
Operating Temperature Range
-40°C To +85°C
Power Dissipation Pd
410mW
Supply Current
8mA
Supply Voltage Max
5.5V
Supply Voltage Min
2.6V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
BH76206HFV-TR
Manufacturer:
ROHM
Quantity:
3 322
Part Number:
BH76206HFV-TR
Manufacturer:
ROHM
Quantity:
1 706
Part Number:
BH76206HFV-TR
Manufacturer:
ROHM/罗姆
Quantity:
20 000
※The values show above (Voltage and resistance values) are reference values used for description, and are not guaranteed.
●Cautions on Use
© 2009 ROHM Co., Ltd. All rights reserved.
BH76106HFV, BH76109HFV, BH76112HFV, BH76206HFV
www.rohm.com
No.
Pin
(5) Thermal design
(6) Shorts between pins and mounting errors
(7) Operation in a strong electromagnetic field
(1) Numeric values and data that are cited are representative design values and their values are not guaranteed.
(2) Although we are confident recommending the application circuit example, carefully check the characteristics further in
(3) Absolute maximum ratings
(4) GND potential
(8) Input termination resistor
1
6
5
2
3
conjunction with its use. If using it after modifying externally attached component constants, try to determine adequate
margins by including not just static characteristics but also transient characteristics to take into account variations in
externally attached components and the ROHM LSI.
If absolute maximum ratings such as applied voltage and operating temperature range are exceeded, the IC may be
damaged. Do not apply voltages or temperatures that exceed the absolute maximum ratings. If you are considering
circumstances in which an absolute maximum rating would be exceeded, implement physical safety measures such as
fuses and investigate ways of not applying conditions exceeding absolute maximum ratings to the LSI.
Even if the voltage of the GND pin is left in an operating state, make it the minimum voltage. Actually confirm that the
voltage of each pin does not become a lower voltage than the GND pin, including for transient phenomena.
Perform thermal design in which there are adequate margins by taking into account the allowable dissipation under
conditions of actual use.
When mounting the LSI on a board, be careful of the direction of the LSI and of misalignment. If mounted badly and
current is passed though it, the LSI may be damaged. The LSI also may be damaged if shorted by a foreign
substance getting in between LSI pins, between a pin and the power supply, or between a pin and GND.
Since the LSI could malfunction if used in a strong electromagnetic field, evaluate this carefully.
Since there is a risk of oscillation at low temperatures (approximately -60 °C) if the termination resistor of the input pin
is made high impedance, set it to no more than 700 Ω.
If the termination resistor of the input pin is greater than 700 Ω, connect it as shown in the figure below.
Name
Stnby
Vsag
GND
Vout
Pin
Vin
DAC
IN
-
-
OUT
-
-
-
1kΩ
0.1μ
voltage
Typical
1.4V
0.2V
0V
-
Vin
Fig.3
Equivalent Circuit
100
3/8
500
(35k)
GN
45k
DAC
D
DAC
1
2
(150k)
225k
2Pin
3Pin
1
2
1kΩ
0.1μ
470Ω
0.1μ
Insert an emitter follower to
lower the output impedance.
Video signal SAG correction pin
Standby pin
This is a sync-tip clamp format
video signal input pin.
For the coupling capacitor,
0.1 μF is recommended.
Vin
Video signal input pin
Video signal output pin
Vin
※1 BH76106HFV
※2 BH76206HFV
Fig.2
LOW: Standby
HIGH: Active
BH76109HFV
BH76112HFV
Function
GND pin
Technical Note
2009.03 - Rev.A

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