CLC5622IN National Semiconductor, CLC5622IN Datasheet

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CLC5622IN

Manufacturer Part Number
CLC5622IN
Description
IC AMP VIDEO DUAL 8-DIP
Manufacturer
National Semiconductor
Datasheet

Specifications of CLC5622IN

Applications
Current Feedback
Number Of Circuits
2
-3db Bandwidth
160MHz
Slew Rate
370 V/µs
Current - Supply
3.2mA
Current - Output / Channel
130mA
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
*CLC5622IN

Available stocks

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Manufacturer
Quantity
Price
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Manufacturer:
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© 2005 National Semiconductor Corporation
CLC5622
Dual, High Output, Video Amplifier
General Description
The National CLC5622 has a new output stage that delivers
high output drive current (130mA), but consumes minimal
quiescent supply current (3.0mA/ch) from a single 5V supply.
Its current feedback architecture, fabricated in an advanced
complementary bipolar process, maintains consistent perfor-
mance over a wide range of gains and signal levels, and has
a linear phase response up to one half of the −3dB fre-
quency.
The CLC5622 offers 0.1dB gain flatness to 30MHz and
differential gain and phase errors of 0.05% and 0.02˚. These
features are ideal for professional and consumer video ap-
plications.
The CLC5622 offers superior dynamic performance with a
160MHz small-signal bandwidth, 370V/µs slew rate and
4.4ns rise/fall times (2V
cent power, high output current drive, and high speed per-
formance make the CLC5622 well suited for many battery
powered personal communication/computing systems.
The ability to drive low impedance, highly capacitive loads,
makes the CLC5622 ideal for single ended cable applica-
tions. It also drives low impedance loads with minimum
distortion. The CLC5622 will drive a 100Ω load with only
−95/−95dBc second/third harmonic distortion (A
= 2V
tions, it produces only −72/−77dBc second/third harmonic
distortion.
The CLC5622 can also be used for driving differential-input
step-up transformers for applications such as Asynchronous
Digital Subscriber Lines (ADSL) or High-Bit-Rate Digital
Subscriber Lines (HDSL).
When driving the input of high resolution A/D converters, the
CLC5622 provides excellent −90/−97dBc second/third har-
monic distortion (A
and fast settling time.
Connection Diagram
PP
, f = 1MHz). With a 25Ω load, and the same condi-
V
= +2, V
STEP
OUT
). The combination of low quies-
= 2V
PP
, f = 1MHz, R
DS015002
V
= +2, V
L
= 1kΩ)
DIP & SOIC
OUT
Pinout
Features
n 130mA output current
n 0.05%, 0.03˚ differential gain, phase
n 3.0mA/ch supply current
n 160MHz bandwidth (A
n −90/−97dBc HD2/HD3 (1MHz)
n 18ns settling to 0.05%
n 370V/µs slew rate
n Stable for capacitive loads up to 1000pf
n Single 5V or
Applications
n Video line driver
n ADSL/HDSL driver
n Coaxial cable driver
n UTP differential line driver
n Transformer/coil driver
n High capacitive load driver
n Portable/battery powered applications
n Differential A/D driver
01500203
Maximum Output Voltage vs. R
±
5V supplies
V
= +2)
OBSOLETE
01500201
L
www.national.com
March 2005

Related parts for CLC5622IN

CLC5622IN Summary of contents

Page 1

... OUT PP and fast settling time. Connection Diagram © 2005 National Semiconductor Corporation Features n 130mA output current n 0.05%, 0.03˚ differential gain, phase n 3.0mA/ch supply current n 160MHz bandwidth (A n −90/−97dBc HD2/HD3 (1MHz) n 18ns settling to 0.05% n 370V/µs slew rate ...

Page 2

... THE FOLLOWING DEVICES WERE OBSOLETED IN MARCH 2003 Package 8-pin plastic DIP 8-pin plastic SOIC www.national.com Temperature Range Part Number Industrial −40˚C to +85˚C CLC5622IN −40˚C to +85˚C CLC5622IM CLC5622IMX 2 01500202 Package NSC Marking Drawing CLC5622IN N08E CLC5622IM M08A CLC5622IM ...

Page 3

... Power Supply Rejection Ratio (Note 1) Lead Temperature (soldering 10 sec) ESD (Human Body Model) Operating Ratings +14V Thermal Resistance 140mA Package MDIP +150˚C SOIC −65˚C to +150˚C = +5V (Note 5 /2), RL tied Conditions CLC5622IN < 200MHz 0. < 30MHz 0. < 30MHz, V =0.5V ...

Page 4

... Crosstalk (Input Referred) Static, DC Performance Input Offset Voltage www.national.com (Continued) = +5V (Note 5 /2), RL tied Conditions DC ∞ 100Ω 100Ω L ∞ ∞ ± = 5V, Unless Specified) Conditions CLC5622IN/IM V =1. =4. =1. < 200MHz, V =1. < 30MHz, V =1. < 30MHz, V =1. NTSC 150Ω L NTSC 150Ω Step 2V Step 2V Step ...

Page 5

Electrical Characteristics ( 750Ω, R =100Ω Symbol Parameter Average Drift Input Bias Current (Non-Inverting) Average Drift Input Bias Current (Inverting) Average Drift Power Supply Rejection Ratio Common Mode Rejection ...

Page 6

Typical Performance Characteristics /2), R tied unless specified). (Continued Frequency Response vs. R Gain Flatness & Linear Phase Gain Phase Frequency (MHz) www.national.com ...

Page 7

Typical Performance Characteristics /2), R tied unless specified). (Continued PSRR & CMRR 2nd & 3rd Harmonic Distortion - 3rd R = ...

Page 8

Typical Performance Characteristics /2), R tied unless specified). (Continued 2nd & 3rd Harmonic Distortion, R -50 3rd, 10MHz -60 -70 2nd, 10MHz -80 2nd, 1MHz -90 ...

Page 9

Typical Performance ( 750Ω 100Ω specified) Frequency Response Gain 1.2kΩ f Phase ...

Page 10

Typical Performance Gain Flatness & Linear Phase Gain Phase Frequency (MHz) Large Signal Pulse Response Time (10ns/div) 2nd & 3rd Harmonic Distortion - ...

Page 11

Typical Performance 2nd & 3rd Harmonic Distortion, R -60 -70 -80 -90 -100 0 0.5 1 1.5 Output Amplitude (V Short Term Settling Time 0.2 0.15 0.1 0.05 0 -0.05 -0.1 -0.15 -0 100 Time (ns) ...

Page 12

Typical Performance Input Referred Crosstalk - -30 -40 -50 -60 -70 -80 -90 1M 10M Frequency (Hz) Application Division CLC5622 Operation The CLC5622 is a current feedback amplifier fabricated in an advanced complementary ...

Page 13

V CC Note and R are tied 6.8µ for minimum power cm consumption and maximum output swing. 0.1µ 1/2 CLC5622 ...

Page 14

V CC 6.8µF + 0.1µ 1/2 1 CLC5622 0.1µ − f 6.8µ FIGURE 6. ...

Page 15

The maximum power that the DIP and SOIC packages can dissipate at a given temperature is illustrated in Figure 9. The power derating curve for any CLC5622 package can be derived by utilizing the following equation: where T =Ambient temperature ...

Page 16

Use the design equa- tions to determine and and corner frequency. FIGURE 12. Lowpass Filter Topology FIGURE 13. Design Equations This example ...

Page 17

Select the transformer so that it loads the line with a value very near Z over frequency range. The output impedance O of the CLC5622 also affects the match. With an ideal trans- former we obtain: where Z (jω) is ...

Page 18

Physical Dimensions unless otherwise noted www.national.com inches (millimeters) 8-Pin SOIC NS Package Number M08A 8-Pin MDIP NS Package Number N08E 18 ...

Page 19

... BANNED SUBSTANCE COMPLIANCE National Semiconductor manufactures products and uses packing materials that meet the provisions of the Customer Products Stewardship Specification (CSP-9-111C2) and the Banned Substances and Materials of Interest Specification (CSP-9-111S2) and contain no ‘‘Banned Substances’’ as defined in CSP-9-111S2. ...

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