User's Guide SBOU004A - June 1997 - Revised May 2006 DEM-OPA-MSOP-2A Demonstration Fixture 1 Description The DEM-OPA-MSOP-2A demonstration fixture is a generic, unpopulated printed circuit board (PCB) for dual high-speed operational amplifiers in MSOP-8 packages. Figure 1 shows the package pinout for this PCB. For more information on these op amps, as well as good PCB layout techniques, see the individual amplifier data sheets. Output1 1 8 +VS -Input1 2 7 Output2 +Input1 3 6 -Input2 -VS 4 5 +Input2 Figure 1. MSOP-8 Package Pinout, Top View All trademarks are the property of their respective owners. SBOU004A - June 1997 - Revised May 2006 Submit Documentation Feedback DEM-OPA-MSOP-2A Demonstration Fixture 1 www.ti.com Circuit 2 Circuit The circuit schematic in Figure 2 shows the connections for all possible components. Each configuration uses only some of the components. R2 J1 3 +INA R1 2 R3 1/2 OPA26xxE R8 1 J3 OUTA 4 R7 R5 J2 -INA C2 R4 R6 P1 P2 +VS + -VS GND + C3 C4 GND C1 R10 J4 R9 8 5 +INB R11 6 1/2 OPA26xxE 4 R16 7 J6 OUTB R15 R13 J5 -INB R12 R14 Figure 2. Schematic for DEM-OPA-MSOP-2A 3 Components Components that have RF performance similar to the ones listed in Table 1 may be substituted. Table 1. Component Descriptions PART DESCRIPTION C1, C2 Multilayer Ceramic Chip Capacitor, Size 1206, 20V C3, C4 Tantalum Chip Capacitor, Size 3528, 16V R1 - R16 Metal Film Chip Resistor, Size 1206, 1/8W J1 - J6 SMA or SMB Board Jack (Amphenol 901-144-8) P1, P2 Power Connectors (On-Shore Technology ED555/2DS) Resistors R1, R4, R9 and R12 are used to set the input impedance. Resistors R8 and R16 set the output impedance. The values in Table 2 support test equipment with 50 input and output impedances; other source and load impedances are easily accommodated. Table 2 lists suggested component values for the a dual voltage feedback operational amplifier in three different configurations: as a Noninverting Amplifier (NIA), an Inverting Amplifier (IA) and a Difference Amplifier (DA). The gain for the DA is the differential mode gain. Other dual op amps can also be easily configured; consult the respective data sheet for a specific op amp to select component values. 2 DEM-OPA-MSOP-2A Demonstration Fixture SBOU004A - June 1997 - Revised May 2006 Submit Documentation Feedback www.ti.com Board Layout Table 2. Example Component Selection Guide (1) (2) (1) (2) 4 CONFIGURATION NONINVERTING INVERTING Gain +2 -1 DIFFERENCE +1 C1, C2 0.1F 0.1F 0.1F C3, C4 4.7F 4.7F 4.7F R1, R9 49.9 Not used 53.6 R2, R10 20.0 Not used 402 R3, R11 Not used 20.0 402 R4, R12 Not used 56.2 61.9 R5, R13 Not used RG = 402 RG = 402 R6, R14 RG = 402 Not used Not used R7, R15 RF = 402 RF = 402 RF = 402 R8, R16 49.9 49.9 49.9 The values listed here are for illustration purposes only. See the individual op amp data sheet for information on selecting these values. See the specific data sheet to select proper values. The I/O impedances are 50. RF and RG refer to the feedback and gain-setting resistors for current-feedback op amps. Board Layout This demonstration fixture is a two-layer PCB. (See Figure 3.) It uses a ground plane on the bottom layer, and signal and power traces on the top layer. The ground plane has been opened up around op amp pins that are sensitive to capacitive loading. Power-supply traces are laid out to keep current loop areas to a minimum. The SMA (or SMB) connectors may be mounted either vertically or horizontally onto the board edge. +VS GND J6 R8 R6 R16 R14 C3 R2 R5 R7 C2 -INA -INB Pin 1 R4 OUTA OUTB C1 R3 J3 P1 U1 R15 R13 R12 R11 C4 BURR-BROWN (5/97) REV. B R10 R1 J2 DEM-OPA26xxE J5 R9 +INA +INB J4 P2 J1 GND -VS (a) Component Side Silkscreen (1) (b) Bottom Side Silkscreen The board name shown in the silkscreen is DEM-OPA26xxE with the Burr-Brown Revision B design finalized in May 1997. Figure 3. DEM-OPA-MSOP-2A Demonstration Board Layout SBOU004A - June 1997 - Revised May 2006 Submit Documentation Feedback DEM-OPA-MSOP-2A Demonstration Fixture 3 www.ti.com Measurement Tips The location and type of capacitors used for power-supply bypassing are crucial for high-frequency amplifiers. The tantalum capacitors, C3 and C4, do not need to be close to pins 8 and 4 on the PCB and may be shared with other amplifiers. See the individual op amp data sheet for more information on proper board layout techniques and component selection. 5 Measurement Tips This demonstration fixture, with the component values shown, is designed to operate in a 50 environment; most data sheet plots are obtained under these conditions. It is easy to change the component values for different input and output impedance levels. However, do not use high-impedance probes; they represent a heavy capacitive load to the op amp, and will alter the amplifier response. Instead, use low-impedance ( 500) probes with adequate bandwidth. The probe input capacitance and resistance set an upper limit on the measurement bandwidth. If a high-impedance probe must be used, place a 100 resistor on the probe tip to isolate its capacitance from the circuit. 4 DEM-OPA-MSOP-2A Demonstration Fixture SBOU004A - June 1997 - Revised May 2006 Submit Documentation Feedback FCC Warning This evaluation board/kit is intended for use for ENGINEERING DEVELOPMENT, DEMONSTRATION, OR EVALUATION PURPOSES ONLY and is not considered by TI to be a finished end-product fit for general consumer use. It generates, uses, and can radiate radio frequency energy and has not been tested for compliance with the limits of computing devices pursuant to part 15 of FCC rules, which are designed to provide reasonable protection against radio frequency interference. Operation of this equipment in other environments may cause interference with radio communications, in which case the user at his own expense will be required to take whatever measures may be required to correct this interference. 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