NSC CLC5602IN, CLC5602IMX, CLC5602IM Datasheet

Features
130mA output current
0.06%, 0.02° differential gain, phase
1.5mA/ch supply current
135MHz bandwidth (Av= +2)
15ns settling to 0.05%
300V/µs slew rate
Stable for capacitive loads up to 1000pf
Single 5V or ±5V supplies
Applications
Video line driver
ADSL/HDSL driver
Coaxial cable driver
UTP differential line driver
Transformer/coil driver
High capacitive load driver
Portable/battery-powered applications
Differential A/D driver
Typical Application
Differential Line Driver with Load Impedance Conversion
Pinout
DIP & SOIC
General Description
The National CLC5602 has a new output stage that delivers high output drive current (130mA), but consumes minimal quiescent supply current (1.5mA/ch) from a single 5V supply. Its current feedback architecture, fabricated in an advanced comple­mentary bipolar process, maintains consistent performance over a wide range of gains and signal levels, and has a linear-phase response up to one half of the -3dB frequency.
The CLC5602 offers 0.1dB gain flatness to 22MHz and differen­tial gain and phase errors of 0.06% and 0.02°. These features are ideal for professional and consumer video applications.
The CLC5602 offers superior dynamic performance with a 135MHz small-signal bandwidth, 300V/µs slew rate and 5.7ns rise/fall times (2V
step
). The combination of low quiescent power, high output current drive, and high-speed performance make the CLC5602 well suited for many battery-powered personal communication/computing systems.
The ability to drive low-impedance, highly capacitive loads, makes the CLC5602 ideal for single ended cable applications. It also drives low impedance loads with minimum distortion. The CLC5602 will drive a 100load with only -86/-85dBc second/third harmonic distortion (Av= +2, V
out
= 2Vpp, f = 1MHz).
With a 25load, and the same conditions, it produces only -86/
-72dBc second/third harmonic distortion. The CLC5602 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 CLC5602 provides excellent -87/-95dBc second/third harmonic distortion (Av= +2, V
out
= 2Vpp, f = 1MHz, RL= 1k) and fast
settling time.
CLC5602 Dual, High Output,Video Amplifier
N
June 1999
CLC5602
Dual, High Output, Video Amplifier
© 1999 National Semiconductor Corporation http://www.national.com
Printed in the U.S.A.
Maximum Output Voltage vs. R
10
9
)
8
pp
7 6 5 4 3
Output Voltage (V
2 1
10
VCC = ±5V
Vs = +5V
100
RL ()
L
1000
R
g2
V
V
in
+
CLC5602
R
t1
-
R
g1
d/2
1/2
R
f1
R
t2
R
-
1/2
CLC5602
+
f2
Vo1
V
1
V
non-inv
-V
inv
1
CC
-V
d/2
R
m/2
1:n
R
eq
R
m/2
Z
UTP
o
I
o
+
R
V
L
o
-
+V Vo2 V
inv
V
non-inv
CC
2
2
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PARAMETERS CONDITIONS TYP MIN/MAX RATINGS UNITS NOTES Ambient Temperature CLC5602IN/IM +25°C +25°C 0 to 70°C -40 to 85°C
FREQUENCY DOMAIN RESPONSE
-3dB bandwidth V
o
= 0.5V
pp
100 85 75 70 MHz
V
o
= 2.0V
pp
65 60 55 50 MHz
-
0.1dB bandwidth Vo= 0.5V
pp
22 20 17 15 MHz
gain peaking <200MHz, V
o
= 0.5V
pp
0 0.5 0.9 1.0 dB
gain rolloff <30MHz, V
o
= 0.5V
pp
0.1 0.3 0.4 0.5 dB
linear phase deviation <30MHz, V
o
= 0.5V
pp
0.3 0.5 0.6 0.6 deg
differential gain NTSC, R
L
= 150to -1V 0.04 %
differential phase NTSC, R
L
= 150to -1V 0.09 deg
TIME DOMAIN RESPONSE
rise and fall time 2V step 6.1 8.5 9.2 10.0 ns settling time to 0.05% 1V step 25 35 50 80 ns overshoot 2V step 10 20 22 22 % slew rate 2V step 220 190 165 150 V/µs
DISTORTION AND NOISE RESPONSE
2
nd
harmonic distortion 2Vpp, 1MHz -77 -74 -71 -71 dBc
2V
pp
, 1MHz; RL= 1k -80 -77 -75 -70 dBc
2V
pp
, 5MHz -63 -59 -57 -57 dBc
3
rd
harmonic distortion 2Vpp, 1MHz -85 -81 -78 -78 dBc
2V
pp
, 1MHz; RL= 1k -82 -79 -76 -76 dBc
2V
pp
, 5MHz -62 -57 -54 -54 dBc
equivalent input noise
voltage (e
ni
) >1MHz 3.4 4.4 4.9 4.9 nV/√Hz
non-inverting current (i
bn
) >1MHz 6.3 8.2 9.0 9.0 pA/Hz
inverting current (i
bi
) >1MHz 8.7 11.3 12.4 12.4 pA/Hz
crosstalk (input referred) 10MHz, 1V
pp
-72 dB
STATIC DC PERFORMANCE
input offset voltage 1 4 5 6 mV A
average drift 7 15 15 µV/˚C
input bias current (non-inverting) 5 12 15 16 µAA
average drift 25 60 60 nA/˚C
input bias current (inverting) 3 10 12 13 µAA
average drift 10 20 20 nA/˚C power supply rejection ratio DC 48 45 43 43 dB common-mode rejection ratio DC 49 47 45 45 dB supply current per channel R
L
= 1.5 1.7 1.8 1.8 mA A
MISCELLANEOUS PERFORMANCE
input resistance (non-inverting) 0.46 0.36 0.32 0.32 M input capacitance (non-inverting) 1.8 2.75 2.75 2.75 pF input voltage range, High 4.2 4.1 4.1 4.0 V input voltage range, Low 0.8 0.9 0.9 1.0 V output voltage range, High R
L
= 100 4.0 3.9 3.9 3.8 V
output voltage range, Low R
L
= 100 1.0 1.1 1.1 1.2 V
output voltage range, High R
L
= 4.1 4.0 4.0 3.9 V
output voltage range, Low R
L
= 0.9 1.0 1.0 1.1 V output current 100 80 65 40 mA B output resistance, closed loop DC 55 90 90 120 m
Min/max ratings are based on product characterization and simulation. Individual parameters are tested as noted. Outgoing quality levels are determined from tested parameters.
+5V Electrical Characteristics
(Av= +2, Rf= 750Ω,RL= 100Ω,Vs= +5V1,Vcm= VEE+ (Vs/2), RLtied to Vcm, unless specified)
Absolute Maximum Ratings
supply voltage (VCC- VEE)
+
14V output current (see note C) 140mA common-mode input voltage
VEEto
V
CC
maximum junction temperature +150°C storage temperature range -65°C to +150°C lead temperature (soldering 10 sec) +300°C ESD rating (human body model) 1000V
Notes
A) J-level:spec is 100% tested at +25°C. B)The short circuit current can exceed the maximum safe
output current.
1) V
s
= VCC- V
EE
Reliability Information
Transistor Count 98 MTBF (based on limited test data) 290Mhr
3 http://www.national.com
PARAMETERS CONDITIONS TYP GUARANTEED MIN/MAX UNITS NOTES Ambient Temperature CLC5602IN/IM +25°C +25°C 0 to 70°C -40 to 85°C
FREQUENCY DOMAIN RESPONSE
-3dB bandwidth V
o
= 1.0V
pp
135 115 105 100 MHz
V
o
= 4.0V
pp
48 45 42 40 MHz
-
0.1dB bandwidth Vo= 1.0V
pp
20 18 15 12 MHz
gain peaking <200MHz, V
o
= 1.0V
pp
0 0.5 0.9 1.0 dB
gain rolloff <30MHz, V
o
= 1.0V
pp
0.1 0.3 0.4 0.5 dB
linear phase deviation <30MHz, V
o
= 1.0V
pp
0.15 0.3 0.4 0.4 deg
differential gain NTSC, R
L
=150 0.06 0.18 %
differential phase NTSC, R
L
=150 0.02 0.04 deg
TIME DOMAIN RESPONSE
rise and fall time 2V step 5.7 6.2 6.8 7.3 ns settling time to 0.05% 2V step 15 25 40 60 ns overshoot 2V step 18 20 22 22 % slew rate 2V step 300 225 190 175 V/µs
DISTORTION AND NOISE RESPONSE
2
nd
harmonic distortion 2Vpp, 1MHz -86 -82 -79 -79 dBc
2V
pp
, 1MHz; RL= 1k -87 -83 -80 -80 dBc
2V
pp
, 5MHz -70 -64 -61 -60 dBc
3
rd
harmonic distortion 2Vpp, 1MHz -85 -81 -78 -78 dBc
2V
pp
, 1MHz; RL= 1k -95 -90 -87 -87 dBc
2V
pp
, 5MHz -66 -64 -61 -60 dBc
equivalent input noise
voltage (e
ni
) >1MHz 3.4 4.4 4.9 4.9 nV/√Hz
non-inverting current (i
bn
) >1MHz 6.3 8.2 9.0 9.0 pA/Hz
inverting current (i
bi
) >1MHz 8.7 11.3 12.4 12.4 pA/Hz
crosstalk (input referred) 10MHz, 1V
pp
-72 dB
STATIC DC PERFORMANCE
input offset voltage 2 6 7 8 mV
average drift 8 µV/˚C
input bias current (non-inverting) 5 12 16 17 µA
average drift 40 nA/˚C
input bias current (inverting) 8 24 28 28 µA
average drift 20 45 45 nA/˚C power supply rejection ratio DC 48 45 43 43 dB common-mode rejection ratio DC 51 49 47 47 dB supply current (per channel) R
L
= 1.6 1.9 2.0 2.0 mA
MISCELLANEOUS PERFORMANCE
input resistance (non-inverting) 0.59 0.47 0.43 0.43 M input capacitance (non-inverting) 1.45 2.15 2.15 2.15 pF common-mode input range
±
4.2
±
4.1
±
4.1
±
4.0 V
output voltage range R
L
= 100
±
3.8
±
3.6
±
3.6
±
3.5 V
output voltage range R
L
=
±
4.0
±
3.8
±
3.8
±
3.7 V output current 130 100 80 50 mA B output resistance, closed loop DC 40 70 70 90 m
±5V Electrical Characteristics
(Av= +2, Rf= 750Ω,RL= 100Ω,VCC= ±5V, unless specified)
Notes
B)The short circuit current can exceed the maximum safe
output current.
Ordering Information
Model Temperature Range Description
CLC5602IN -40°C to +85°C 8-pin PDIP CLC5602IM -40°C to +85°C 8-pin SOIC CLC5602IMX -40°C to +85°C 8-pin SOIC tape & reel
Pac kage Thermal Resistance
Package
θθ
JC
θθ
JA
Plastic (IN) 65°C/W 130°C/W Surface Mount (IM) 50°C/W 145°C/W
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+5V T ypical Performance
(Av= +2, Rf= 750Ω,RL= 100Ω,Vs= +5V1,Vcm= VEE+ (Vs/2), RLtied to Vcm, unless specified)
Non-Inverting Frequency Response
Vo = 0.5V
pp
Gain
Av = +1
Rf = 1.0k
Phase
Av = +5
Rf = 301
Av = +10
Normalized Magnitude (1dB/div)
1M
Rf = 200
10M
Frequency (Hz)
Frequency Response vs. V
Vo = 1V
Vo = 2V
o
Vo = 0.1V
pp
pp
Magnitude (1dB/div)
1M
10M
Frequency (Hz)
PSRR & CMRR
60
PSRR
50
CMRR
40
30
20
PSRR & CMRR (dB)
10
0
1k 10k 100M
100k 1M 10M
Frequency (Hz)
2nd & 3rd Harmonic Distortion, RL = 25
-20
-30
3rd, 10MHz
-40
-50
2nd, 10MHz
-60
-70
Distortion (dBc)
-80
3rd, 1MHz
2nd, 1MHz
-90 0 0.5 1 1.5 2 2.5
Output Amplitude (Vpp)
Large & Small Signal Pulse Response
Large Signal
Small Signal
Output Voltage (0.5V/div)
Time (10ns/div)
Av = +2
Rf = 649
100M
100M
pp
Phase (deg)
0
-90
-180
-270
-360
-450
Inverting Frequency Response
Vo = 0.5V
pp
Gain
Av = -2
Rf = 649
Phase
Av = -5
Rf = 649
Av = -10
Normalized Magnitude (1dB/div)
1M
Rf = 500
10M
Frequency (Hz)
Gain Flatness & Linear Phase
Gain
Phase
Magnitude (0.05dB/div)
0
10
20
Frequency (MHz)
Equivalent Input Noise
3.6
3.5
3.4
Inverting Current 8.7pA/Hz
Non-Inverting Current 7pA/Hz
Voltage 3.35nV/Hz
3.3
Noise Voltage (nV/Hz)
3.2 10k 100k 1M 10M
Frequency (Hz)
2nd & 3rd Harmonic Distortion, RL = 100
-40
-50
3rd, 10MHz
-60
-70
-80
Distortion (dBc)
-90
2nd, 10MHz
3rd, 1MHz
2nd, 1MHz
-100 0 0.5 1 1.5 2 2.5
Output Amplitude (Vpp)
Closed Loop Output Resistance
100
VCC = ±5V
10
1
0.1
Output Resistance (Ω)
0.01
10k 100k 1M 10M
Frequency (Hz)
Av = -1
Rf = 649
100M
100M
180 135 90 45 0
-45
0.5
0.4
0.3
0.2
0.1 0
-0.1
-0.2
-0.3
30
12.5
10
7.5
5
2.5
Phase (deg)
Frequency Response vs. R
Vo = 0.5V
pp
Gain
Phase
RL = 25
RL = 1k
L
Phase (deg)
RL = 100
0
-90
-180
Magnitude (1dB/div)
-270
-360
-450
1M
10M
100M
Frequency (Hz)
Open Loop Transimpedance Gain, Z(s)
140
120
Phase (deg)
100
80
Magnitude (dBΩ)
60
40
Phase
Gain
1k 10k 100k 1M 10M 100M
225
180
Phase (deg)
135
90
45
0
Frequency (Hz)
2nd & 3rd Harmonic Distortion
-30
Vo = 2V
Noise Current (pA/Hz)
-40
-50
pp
3rd
RL = 1k
-60
2nd
-70
RL = 1k
-80
Distortion (dBc)
-90
2nd
RL = 100
3rd
RL = 100
-100 1M
10M
Frequency (Hz)
2nd & 3rd Harmonic Distortion, RL = 1k
-50
-60
3rd, 10MHz
2nd, 10MHz
-70
-80
Distortion (dBc)
2nd, 1MHz
-90
-100
3rd, 1MHz
0 0.5 1 1.5 2 2.5
Output Amplitude (Vpp)
IBI, IBN, VIO vs. Temperature
-1.5 3
V
1.0 2
(mV)
0.5 1
IO
00
-0.5 -1
-1.0 -2
Offset Voltage V
-1.5
IO
I
BI
I
BN
I
BI
, I
BN
(µA)
-3
-60 -20 20 60 100 140
Temperature (°C)
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