NJM2286M NJR, NJM2286M Datasheet

Video ICs 2-in 3-out Vid Swtch

NJM2286M

Manufacturer Part Number
NJM2286M
Description
Video ICs 2-in 3-out Vid Swtch
Manufacturer
NJR
Type
Higher efficiency video switchr
Datasheet

Specifications of NJM2286M

Operating Supply Voltage
14 V
Supply Current
18.4 mA
Maximum Operating Temperature
85 C
Package / Case
DMP-16
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
NJM2286M
Manufacturer:
NJRC
Quantity:
641
Part Number:
NJM2286M(TE1)
Manufacturer:
JRC
Quantity:
1 990
Part Number:
NJM2286M(TE1)
Manufacturer:
JRC
Quantity:
20 000
■ GENERAL DESCRIPTION
video input signal to another. Internalizing 2 inputs, 1 output, and
then each set of 3 can be operated independently. They are a
Clamp type", and it can be operated while DC level fixed in position
of the video signal. It is a higher efficiency video switch, featuring the
operating supply voltage 4.75 to 13.0V, the frequency feature 10MHz,
and then the Crosstalk 75dB (at 4.43MHz).
■ FEATURES
■ APPLICATIONS
■ BLOCK DIAGRAM
Ver.2004-02-17
NJM2286 is a switching IC for switching over from one audio or
• 2 Input-1 Output Internalizing 3 Circuits (Clamp type).
• Wide Operating Voltage
• Crosstalk 75dB (at 4.43MHz)
• Wide Bandwidth Frequency Feature 10MHz (2V
• Package Outline
• Bipolar Technology
• VCR, Video Camera, AV-TV, Video Disk Player.
DIP16, DMP16, SSOP16
2-INPUT 3CHANNEL VIDEO SWITCH
(4.75 to 13.0V)
P-P
NJM2286M
NJM2286D
Input)
■ PACKAGE OUTLINE
NJM2286D
NJM2286V
NJM2286M
- 1 -

Related parts for NJM2286M

NJM2286M Summary of contents

Page 1

... Wide Bandwidth Frequency Feature 10MHz (2V • Package Outline DIP16, DMP16, SSOP16 • Bipolar Technology ■ APPLICATIONS • VCR, Video Camera, AV-TV, Video Disk Player. ■ BLOCK DIAGRAM Ver.2004-02-17 2-INPUT 3CHANNEL VIDEO SWITCH (4.75 to 13.0V) Input) P-P NJM2286D NJM2286M ■ PACKAGE OUTLINE NJM2286D NJM2286M NJM2286V - 1 - ...

Page 2

MAXIMUM RATINGS PARAMETER Supply Voltage Power Dissipation Operating Temperature Range Storage Temperature Range ■ ELECTRICAL CHARACTERISTICS PARAMETER SYMBOL Operating Current (1) Operating Current (2) Voltage Gain Frequency Gain Differential Gain Differential Phasa Output Offset Voltage Crosstalk Switch Change Over ...

Page 3

TEST CIRCUIT PARAMETER CC1 CC2 ...

Page 4

TERMINLAL EXPLANATION PIN No. PIN NAME [Input] 2 CTL 1 12 CTL 2 7 CTL ...

Page 5

TYPICAL CHARACTERISTICS Operating Current 1 vs. Temperature Voltage Gain 1 vs. Temperature Differential Gain 1 vs. Temperature Ver.2004-02-17 Operating Current vs. Operating Voltage Frequency Gain 1 vs. Temperature Differential Phase 1 vs. Temperature - 5 - ...

Page 6

TYPICAL CHARACTERISTICS Offset Voltage vs. Temperature Crosstalk 2 vs. Temperature Crosstalk 4 vs. Temperature - 6 - Crosstalk 1 vs. Temperature Crosstalk 3 vs. Temperature Crosstalk 5 vs. Temperature Ver.2004-02-17 ...

Page 7

TYPICAL CHARACTERISTICS Crosstalk 6 vs. Temperature Supply Current 2 vs. Temperature Frequency Gain 1 vs. Operating Voltage Ver.2004-02-17 Switch Change Over 1 vs. Temperature Voltage Gain 1 vs. Operating Voltage Differential Gain 1 vs. Operating Voltage - 7 - ...

Page 8

TYPICAL CHARACTERISTICS Differential Phase 1 vs. Operating Voltage Crosstalk 1 vs. Operating Voltage Crosstalk 3 vs. Operating Voltage - 8 - Offset Voltage 1 vs. Operating Voltage Crosstalk 2 vs. Operating Voltage Crosstalk 4 vs. Operating Voltage Ver.2004-02-17 ...

Page 9

TYPICAL CHARACTERISTICS Crosstalk 5 vs. Operating Voltage Switch Change Over 1 vs. Operating Voltage Differential Gain 3 vs. Load Resistor Ver.2004-02-17 Crosstalk 6 vs. Operating Voltage Voltage Gain 1 vs. Frequency Feature Differential Phase 3 vs. Load Resistor - ...

Page 10

TYPICAL CHARACTERISTICS Differential Gain 3 vs. APL - 10 - Differential Phase 3 vs. APL Ver.2004-02-17 ...

Page 11

APPLICATION This IC requires 1MΩ resistance between INPUT and GND pin for clamp type input since the minute current causes an unstable pin voltage. This IC requires 0.1µF capacitor between INPUT and GND, 1MΩ resistance between INPUT and GND ...

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