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 TK15404
75 VIDEO LINE DRIVER FEATURES
s s s s s s Gain Set by External Components (6 dB typ.) Internal 75 Driver Active High ON/OFF Control with Internal Pull-up Very Low Standby Current (typ. ISTBY 25 A) Very Small SOT23-6 Package Single +5 V Power Supply Operation
APPLICATIONS
s s s s s s Video Equipment Digital Cameras CCD Cameras TV Monitors Video Tape Recorders LCD Projectors
DESCRIPTION
Operating from a single +5 V supply, the TK15404 is a single-channel video driver IC that takes a standard video signal as the analog input and provides a buffered analog output for driving a 150 load (series 75 resistor and 75 cable load). The standard video input signal (1 VP-P) is typically amplified 6 dB using external components to produce a 2 VP-P signal into an AC-coupled 150 load. During standby (Pin 1 grounded), the TK15404 consumes only 120 W of power. Nominal power dissipation (no input) is typically 32 mW. The TK15404M is available in the very small SOT23-6 surface mount package.
TK15404
STANDBY OUTPUT -INPUT
VCC GND +INPUT
01 S
BLOCK DIAGRAM
VCC
75 DRIVER
ORDERING INFORMATION
TK15404M
STANDBY GND
Tape/Reel Code
TAPE/REEL CODE
TL: Tape Left
January 2000 TOKO, Inc.
Page 1
TK15404
TK15404M ABSOLUTE MAXIMUM RATINGS
Supply Voltage ........................................................... 6 V Operating Voltage ......................................... 4.5 to 5.5 V Power Dissipation (Note 1) ............................... 150 mW Storage Temperature Range ................... -55 to +150 C Operating Temperature Range ...................-25 to +75 C
TK15404M ELECTRICAL CHARACTERISTICS
Test conditions: VCC = 5.0 V, VIN = 1.0 VP-P, RL = 150 , TA = 25 C unless otherwise specified.
SYMBOL ICC ISTBY IOS VTHL VTLH GVA fr 1 fr 2 THD VOUT(MAX) S/N DG DP GVO BW SR CIN RIN
PARAMETER Supply Current Standby Supply Current Standby Terminal Current Standby Threshold Voltage (High to Low) Standby Threshold Voltage (Low to High) Voltage Gain Frequency Response 1 Frequency Response 2 Total Harmonic Distortion Maximum Output Voltage Signal to Noise Ratio Differential Gain Differential Phase Open Circuit Voltage Gain Frequency Band Width Slew Rate Input Capacitance Input Resistance
TEST CONDITIONS No input Pin 1 Grounded Pin 1 in Standby mode Pin 1 Operating to Standby mode Pin 1 Standby to Operating mode fin = 1 MHz (Note 2)
MIN
TYP 6.3 24.0 24.0
MAX 8.5 50.0 50.0 0.3 VCC 6.3
UNITS mA A A V V dB dB dB
GND 1.8 5.7
0.1 2.0 6.0 0.0 -0.6 0.2
fin = 1 MHz / 5 MHz fin = 1 MHz / 10 MHz fin = 1.0 kHz THD = 10% point Pedestal signal Staircase signal input Staircase signal input -3.0 -3.0 1.0
1.0
% Vrms dB
1.2 -70 +3.0 +3.0 40 20 70 9 1.6
% deg dB MHz V/S pF M
Note 1: Power dissipation is 150 mW when in free air. Derate at 1.2 mW/C for operation above 25C. Note 2: Set by external components.
Page 2
January 2000 TOKO, Inc.
TK15404
TEST CIRCUIT
V CC
+
V
CC 10 k
VCC = 5.0 V 33 F
4.7 F + TP1
+Input TP2 Output VOUT = 2.0 VP-P 75 TP3 47 F SW1 75
SW1 is turned on only when DG and DP are measured.
-Input Standby GND
47 F
2 k
2 k
MEASUREMENT METHOD 1. Supply Current (ICC) The Pin 6 current is measured with no input signal and the Standby Pin (Pin 1) open. 2. Standby Supply Current (ISTBY) The Pin 6 current is measured when the Standby Pin (Pin 1) is connected to ground. 3. Standby Terminal Current (IOS) The Pin 1 current is measured when Pin 1 is connected to ground. 4. Threshold Voltage (High to Low) (VTHL) The Pin 1 voltage is measured at the point which changes the device from operating mode into standby mode. 5. Threshold Voltage (Low to High) (VTLH) The Pin 1 voltage is measured at the point which changes the device from standby mode into operating mode. 6. Voltage Gain (GVA) The voltage gain equation is as follows: GVA = 20 log10 V2/V1 Where V1 is the input voltage at TP1 and V2 is the measured output voltage at TP2. 7. Frequency Response (fr) The frequency response equation is as follows: fr = 20 log10 V2/V1 Where V1 is the measured TP3 voltage when the TP1 input frequency is set to 1 MHz and V2 is the measured TP3 voltage when the TP1 input frequency is set to 5 MHz. Furthermore, V1 is the measured TP3 voltage when the TP1 input frequency is set to 1 MHz and V2 is the measured TP3 voltage when the TP1 input frequency is set to 10 MHz.
January 2000 TOKO, Inc.
+
75
20 k
10 k
+
Page 3
TK15404
MEASUREMENT METHOD 8. Total Harmonic Distortion (THD) The TP3 signal is measured when a 1 kHz 1 VP-P input signal is applied to TP1. 9. Maximum Output Voltage (VOUT(MAX)) A 1 kHz input signal is applied to TP1 and the amplitude is slowly increased. The output voltage at TP2 is measured at the point the THD reaches 10%. 10. Signal to Noise Ratio (S/N) The signal to noise ratio is measured at TP3 when a pedestal input signal is applied to TP1. 11. Differential Gain (DG) SW1 is closed to change the input bias voltage. The differential gain is measured at TP3 when a staircase waveform of 10 steps is applied to TP1. 12. Differential Phase (DP) SW1 is closed to change the input bias voltage. The differential phase is measured at TP3 when a staircase waveform of 10 steps is applied to TP1.
TYPICAL PERFORMANCE CHARACTERISTICS
SUPPLY CURRENT VS. TEMPERATURE 9
VCC = 5.0 V, No Input
SUPPLY CURRENT VS. SUPPLY VOLTAGE 9
TA = 25 C, No Input
8
8
ICC (mA)
ICC (mA)
7 6 5 4 -50
7 6 5 4 4.0
0 TA (C)
50
100
4.5
5.0 VCC (V)
5.5
6.0
Page 4
January 2000 TOKO, Inc.
TK15404
TYPICAL PERFORMANCE CHARACTERISTICS (CONT.)
STANDBY SUPPLY CURRENT VS. TEMPERATURE 50
VCC = 5.0 V, Pin 1 = GND
STANDBY SUPPLY CURRENT VS. SUPPLY VOLTAGE 50
TA = 25 C, Pin 1 = GND
40
ISTBY (A) ISTBY (A)
40 30 20 10 0 4.0
30 20 10 0 -50
0 TA (C)
50
100
4.5
5.0 VCC (V)
5.5
6.0
VOLTAGE GAIN VS. TEMPERATURE 8.0
VCC = 5.0 V, fin = 1 MHz, VIN = 1 VP-P
VOLTAGE GAIN VS. SUPPLY VOLTAGE 8.0
TA = 25 C, fin = 1 MHz, VIN = 1 VP-P
7.0
GVA (dB) GVA (dB)
7.0
6.0
6.0
5.0
5.0
4.0 -50
0 TA (C)
50
100
4.0 4.0
4.5
5.0 VCC (V)
5.5
6.0
FREQUENCY RESPONSE VS. TEMPERATURE 0.5
fin = 1/5 MHz, VIN = 1 VP-P
FREQUENCY RESPONSE VS. SUPPLY VOLTAGE 0.5
fin = 1/5 MHz, VIN = 1 VP-P
0.0
fr (dB)
0.0
fr (dB)
-0.5
-0.5
-1.0
-1.0
-1.5 -50
0 TA (C)
50
100
-1.5 4.0
4.5
5.0 VCC (V)
5.5
6.0
January 2000 TOKO, Inc.
Page 5
TK15404
TYPICAL PERFORMANCE CHARACTERISTICS (CONT.)
DIFFERENTIAL GAIN VS. TEMPERATURE 4 2 0 -2 -4 -6 -50
VCC = 5.0 V, VIN = 1 VP-P
DIFFERENTIAL GAIN VS. SUPPLY VOLTAGE 10
TA = 25 C VIN = 1 VP-P
0
DG (%)
DG (%)
-10
-20
0 TA (C)
50
100
-30 4.0
4.5
5.0 VCC (V)
5.5
6.0
DIFFERENTIAL PHASE VS. TEMPERATURE 4
VCC = 5.0 V, VIN = 1 VP-P
DIFFERENTIAL PHASE VS. SUPPLY VOLTAGE 4 2
DP (deg)
TA = 25 C, VIN = 1 VP-P
2
DP (deg)
0 -2 -4 -6 -50
0 -2 -4 -6 4.0
0 TA (C)
50
100
4.5
5.0 VCC (V)
5.5
6.0
VOLTAGE GAIN VS. INPUT FREQUENCY 10
VCC = 5 V, VIN = 1 VP-P
OPEN CIRCUIT VOLTAGE GAIN VS. INPUT FREQUENCY 50 40 30
VCC = 5 V, VIN = 1 VP-P
5
GVO (dB)
GV (dB)
0
20 10
-5
0
-10 0.1
1
10 fIN (MHz)
100
-10 0.1
1
10 fIN (MHz)
100
Page 6
January 2000 TOKO, Inc.
TK15404
PIN FUNCTION DESCRIPTION
TERMINAL PIN NO. 1 INTERNAL EQUIVALENT CIRCUIT SYMBOL STANDBY VOLTAGE 1.4 V
VCC 200 k
DESCRIPTION
5k
Standby Logic Terminal. The device is in the standby mode when Pin 1 is connected to Low. The device is in the operating mode when Pin 1 is connected to High or Open.
2
OUTPUT
VCC
Output Terminal. The output is available to drive a 75 + 75 load.
3 4
-INPUT +INPUT
VCC
Pin 3: Inverting Signal Input Terminal. Pin 4: Non-inverting Input Terminal.
5 6
GND VCC
GND VCC
GND Terminal Power Supply Terminal
January 2000 TOKO, Inc.
Page 7
TK15404
PACKAGE OUTLINE
SOT23-6
0.7
Marking Information
Marking 404
TK15404
Marking 1.0 6 5 4
1.6
e 0.95 1 2 3 0.3 0.95 e 0.95
+ 0.15 0.05
e 0.95
Recommended Mount Pad e
(1.9) 0.1 M
2.9
e 1 2.4 1.4 max 1.1 0.13
+ 0.15 0.05
0 ~ 0.1
0.1
Dimensions are shown in millimeters Tolerance: x.x = 0.2 mm (unless otherwise specified)
2.8
+ 0.3
Toko America, Inc. Headquarters 1250 Feehanville Drive, Mount Prospect, Illinois 60056 Tel: (847) 297-0070 Fax: (847) 699-7864
TOKO AMERICA REGIONAL OFFICES
Midwest Regional Office Toko America, Inc. 1250 Feehanville Drive Mount Prospect, IL 60056 Tel: (847) 297-0070 Fax: (847) 699-7864 Western Regional Office Toko America, Inc. 2480 North First Street , Suite 260 San Jose, CA 95131 Tel: (408) 432-8281 Fax: (408) 943-9790 Eastern Regional Office Toko America, Inc. 107 Mill Plain Road Danbury, CT 06811 Tel: (203) 748-6871 Fax: (203) 797-1223 Semiconductor Technical Support Toko Design Center 4755 Forge Road Colorado Springs, CO 80907 Tel: (719) 528-2200 Fax: (719) 528-2375
Visit our Internet site at http://www.tokoam.com
The information furnished by TOKO, Inc. is believed to be accurate and reliable. However, TOKO reserves the right to make changes or improvements in the design, specification or manufacture of its products without further notice. TOKO does not assume any liability arising from the application or use of any product or circuit described herein, nor for any infringements of patents or other rights of third parties which may result from the use of its products. No license is granted by implication or otherwise under any patent or patent rights of TOKO, Inc.
Page 8
(c) 2000 Toko, Inc. All Rights Reserved IC-xxx-TK15404 0100O0.0K
15 max
January 2000 TOKO, Inc.
Printed in the USA


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