ZXFBF08W20
ZXFBF08W20 is 8 Channel Buffer Device manufactured by Zetex Semiconductors.
DESCRIPTION
The ZXFBF08 is a low cost, high slew rate, octal buffer amplifier. Built using the Zetex CA700 technology, this buffer has a small signal bandwidth of greater than 100MHz and a 1 volt pk-pk bandwidth of greater than 20 MHz. Each channel draws only 1.9m A. The device operates from a ±5 volt supply, which makes it ideal in a majority of applications. This space saving buffer may be used in a wide variety of applications such as, video switching matrix, multi-channel instrumentation equipment, and A/D input buffer, etc. FEATURES
AND BENEFITS
- -
- -
- - 8 Buffers per package 100MHz bandwidth Low cost Low supply current (1.9m A per buffer) No thermal runaway 20 pin SOIC package APPLICATIONS
- -
- - Video Switching Matrix input buffer Instrumentation Multi-channel A/D input buffer Multi-isolation buffer
PART NUMBER ZXFBF08W20
PACKAGE SOIC20W
PART MARK ZXFBF08
ORDERING INFORMATION
PART NUMBER ZXFBF08W20TC CONTAINER Reel 13” INCREMENT 1000
RELATED PRODUCTS ZXFBF04 4 Channel Buffer ZXFBF05 4 Channel Buffer with high capacitance drive
CONNECTION DIAGRAM
ZXFBF25 4 Channel Buffer with output enable
OUT1
1 2 3 4 5 6 7 8 9 10
20 19 18 17 16 15 14 13 12 11
OUT8
IN1 VOUT2 IN2 OUT3 IN3 VOUT4
IN4
IN8 V+ OUT7 IN7 OUT6 IN6 V+ OUT5
IN5
ISSUE 2
- OCTOBER 2000 1
ZXFBF08
ABSOLUTE MAXIMUM RATINGS
Voltage on any pin Operating temperature range Storage Temperature 20V (relative to V-) 0 to 70°C (de-rated for -40 to 85°C) -55 to 125°C
ELECTRICAL CHARACTERISTICS
Test Conditions: Temperature =25°C, V+ = 5.00, V- = -5.00V, RL = 1kΩ, CL = 10p F
Parameter Offset Voltage Offset Voltage Drift Supply Current Input Bias Current Output Voltage DC Gain DC Gain Sink Current Source Current Input Resistance Output Resistance Bandwidth Slew Rate Voltage Noise Differential Gain NTSC Differential Phase NTSC Differential Gain PAL Differential Phase PAL Channel Isolation 10
- 100 k Hz F = 3.58MHz, V in = 0.286Vp-p, DC ∆ V in = 0 to 0.714V 20m Vp-p, 1.0Vp-p Conditions V in = 0V V in = 0V...