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AN608P

Panasonic Semiconductor
Part Number AN608P
Manufacturer Panasonic Semiconductor
Description Wide bandwidth video amplifier IC in-phase amplifier
Published Mar 26, 2005
Detailed Description ICs for Video Camera AN607P Wide bandwidth video amplifier IC (inverting amplifier) s Overview The AN607P is an amplifi...
Datasheet PDF File AN608P PDF File

AN608P
AN608P


Overview
ICs for Video Camera AN607P Wide bandwidth video amplifier IC (inverting amplifier) s Overview The AN607P is an amplifier IC with a 20 dB gain, a phase inverted output and a wide bandwidth (10 MHz).
It is best suited to video amplifier and sense amplifier.
7.
0±0.
3 5.
0±0.
3 Unit: mm 7.
0±0.
3 45° s Features • Wide bandwidth (10 MHz) • 20 dB, phase inverting amplifier • 4-pin SIP plastic package 12.
3±0.
25 s Applications • Video amplifier, sense amplifier 1.
27 9° 9° 1 2 3 4 0.
416±0.
1 0.
225 –0.
1 +0.
25 9° SSIP004-P-0000A s Equivalent Circuit 2 Q7 1 3 Q1 Q2 Q3Q4 Q5 Q6 4 s Pin Descriptions Pin No.
1 2 3 4 Output Supply voltage Input GND Description 1.
2 2.
0±0.
3 1 AN607P s Absolute Maximum Ratings at Ta = 25°C Parameter Supply voltage Circuit voltage Total consumption current Circuit current Symbol V2-4 V3-4 I2 I3 I1 Total power dissipation Operating ambient temperature Storage temperature PTOT Topr Tstg Rating 14.
4 V2-4 to −1 11 +1 to − 0.
5 0 to −5 160 −20 to +70 −40 to +125 ICs for Video Camera Unit V V mA mA mW °C °C Note) Do not apply current and voltage to the pins not described.
The mark '+' means the current flowing into the IC and the mark '−' means the current flowing out of the IC.
s Electrical Characteristics Parameter Circuit current Video signal output pin voltage Video signal input pin voltage Maximum output voltage Output voltage 1 Output voltage 2 Frequency characteristics Frequency characteristics Total harmonics distortion ratio Symbol I2 V1-4 V3-4 VOM VO(1) VO(2) ∆VO(f1) ∆VO(f2) THD VCC = 12 V VCC = 12 V VCC = 12 V f = 10 kHz, RL = 1.
5 kΩ f = 10 kHz, VI = 0.
1 V[p-p] VI = 0.
2 V[p-p] VI = 0.
1 V[p-p], f = 1 MHz to 5 MHz VI = 0.
1 V[p-p], f = 1 MHz to 10 MHz f = 10 kHz Conditions Min 5.
0 5.
0 1.
9 2 0.
8 1.
5 −1 −1 1.
1 2.
2 +1 +2 1 Typ Max 9.
0 8.
0 3.
5 Unit mA V V V[p-p] V[p-p] V[p-p] dB dB % s Basic Circuit 3 4 2 1 0.
01 µF Input +12 V Output 2 ...



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