MAX9768 Evaluation Kit/Evaluation System
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1 9-; Rev 0; /07 MAX9768 Evaluation Kit/Evaluation System General Description The MAX9768 evaluation kit (EV kit) is a fully assembled and tested printed-circuit board (PCB) that demonstrates the capabilities of the MAX9768 mono 0W Class D speaker amplifier with volume control. The MAX9768 EV kit also includes Windows 98SE/000/XPcompatible software that provides a simple graphical user interface (GUI) for exercising the features of the MAX9768. The MAX9768 evaluation system (EV system) consists of the MAX9768 EV kit and a companion CMAXQUSB serialinterface board. The CMAXQUSB interface board allows a PC to control an I C interface using its USB port. Order the MAX9768 EV system (MAX9768EVCMAXQU+) for a complete PC-based evaluation of the MAX9768. Order the MAX9768 EV kit (MAX9768EVKIT+) if you already have a MAX9768-compatible serial interface. Windows is a registered trademark of Microsoft Corp. Dual Mode is a trademark of Maxim Integrated Products, Inc. Component Lists MAX9768 EV System PART QTY DESCRIPTION MAX9768EVKIT+ MAX9768 EV kit CMAXQUSB+ Serial-interface board MAX9768 EV Kit DESIGNATION QTY DESCRIPTION MINIMAL COMPONENTS FOR CUSTOMER DESIGN C, C 0.µF ±0%, 6V X7R ceramic capacitors (060) Murata GRM88R7C04K C, C5 µf ±0%, 0V X7R ceramic capacitors (060) Murata GRM88R6A05K C4 0.47µF ±0%, 6V X7R ceramic capacitor (0805) Murata GRMBR7C474K C6, C8 µf ±0%, 6V X7R ceramic capacitors (0805) Murata GRMBR7C05K C7, C µf ±0%, 6V aluminum electrolytic capacitor (C case) Panasonic EEEFCC0R R, R 0kΩ ±% resistors (060) U Maxim 0W mono speaker amplifier with volume control MAX9768ETG+ (4-pin, 4mm x 4mm x 0.8mm, TQFN-EP*) *EP = Exposed paddle. Features Fully Tested PCB 0W Output into 8Ω Load at V Power Supply Bridge-Tied Load (BTL) Output and Click-and-Pop Suppression Dual Mode Volume Control: Analog or I C Dual Modulation Schemes: Fixed Frequency and Spread Spectrum Shut-Down Mode and Speaker Mute Mode On-Board LDO for Low-Voltage Analog Power Supply Windows 98SE/000/XP-Compatible Evaluation Software EV System Includes USB Connectivity Ordering Information PART TYPE MAX9768EVKIT+ EV Kit MAX9768EVCMAXQU+ EV System +Denotes lead-free and RoHS-compliant. Note: The MAX9768 EV kit software is designed for use with the complete EV system. The EV system includes both the Maxim CMAXQUSB interface board and the EV kit. If the Windows software will not be used, the EV kit board can be purchased without the Maxim CMAXQUSB board. DESIGNATION QTY DESCRIPTION OPTIONAL COMPONENTS FOR CUSTOMER EVALUATION C9, C0 0 C, C C, C5 C4, C6, C0 C7 C8 MAX9768 EV Kit (continued) Not installed, ceramic capacitors (060) 0.0µF ±0%, 50V X7R ceramic capacitors (0805) Murata GRM6R7H0K 0.µF ±0%, 5V X7R ceramic capacitors (06) Panasonic ECJ-VBE4K 0.0µF ±0%, 6V X7R ceramic capacitors (060) Murata GRM88R7C0K µf ±0%, 6V X7R ceramic capacitor (0805) Murata GRMBR7C05K µf ±0%, 0V X7R ceramic capacitor (060) Murata GRM88R6A05K Maxim Integrated Products For pricing, delivery, and ordering information, please contact Maxim Direct at , or visit Maxim s website at
2 DESIGNATION QTY DESCRIPTION C9 00pF ±5%, 50V C0G ceramic capacitor (060) Murata GRM885CH0J J x 0 right-angle female receptacle J White RCA mono jack J J6 4 Binding posts, uninsulated JU JU5 5 Single-row -pin headers JU6 -way-pin header JU7, JU8 -pin headers L, L 60Ω, A ferrite beads (0805) Murata BLMPG600SN L, L4 Shorted with 0Ω resistors (060) L5, L6 µh,.9a inductors TDK SLF045T-0MR9PF R, R5 0kΩ ±5% resistors (060) R4 0Ω ±5% resistor (06) R6 0kΩ ±0% thumbwheel potentiometer Panasonic EVL-HFAA05B4 Quick Start Recommended Equipment Before proceeding, the following equipment is needed: 4.5V to 4V DC, A power supply Audio source (i.e., CD player, V RMS maximum output) 8Ω speaker MAX9768 EV system MAX9768 EV kit Maxim CMAXQUSB interface board (USB cable included) A user-supplied Windows 98SE/000/XP PC with a spare USB port Note: In the following sections, software-related items are identified by bolding. Text in bold refers to items Component Lists (continued) DESIGNATION QTY DESCRIPTION U 8 Shunts MAX9768 EV Kit (continued) M axi m V l ow - d r op out l i near r eg ul ator MAX76EUK+ (5-pin SOT) in x 0.500in 4 40 round nylon spacers x 0.75in nylon machine screws PCB: MAX9768 Evaluation Kit+ MAX9768 EV Kit Files FILE DESCRIPTION INSTALL.EXE Installs the EV kit files on your computer MAX9768.EXE Application program FTDXX.INF USB device driver file UNINST.INI Uninstalls the EV kit software TROUBLESHOOTING_USB.PDF USB driver installation help file directly from the EV kit software. Text in bold and underlined refers to items from the Windows 98SE/ 000/XP operating system. Procedure for Stand-Alone Operation The MAX9768 EV kit is fully assembled and tested. Follow the steps below to verify board operation for analog volume control. Do not turn on the power supply until all connections are completed. ) On the MAX9768 EV kit, make sure the shunts are in the default positions (see Table ). ) Connect the positive terminal of the 4.5V to 4V DC power supply to the P binding post, and the powersupply ground terminal to the PGND binding post. ) Connect the 8Ω speaker across the FOUT+ and FOUT- binding posts. Component Suppliers SUPPLIER PHONE WEBSITE Murata Mfg. Co., Ltd Panasonic Corp TDK Corp Note: Indicate that you are using the MAX9768 when contacting these component suppliers.
3 4) Plug the audio source to the RCA jack. 5) Turn on the audio source. 6) Turn on the 4.5V to 4V DC power supply. 7) Adjust the potentiometer R6 to change the speaker volume. Procedure for I C Interface Volume Control The MAX9768 EV kit is fully assembled and tested. Follow the steps below to verify board operation for I C volume control. Caution: Do not turn on the power supply until all connections are completed. ) Visit to download the latest version of the EV kit software, 9768Rxx.ZIP. ) Install the MAX9768 evaluation software on your computer by running the INSTALL.EXE program. The program files are copied and icons are created in the Windows Start menu. ) On the CMAXQUSB board, ensure that the shunt of JU is in the.v position. 4) Carefully connect the boards by aligning the MAX9768 EV kit s 0-pin connector with the 0-pin connector of the CMAXQUSB board. 5) Ensure shunts on JU, JU, JU4, JU6, and JU7 are in their default positions (see Table ). 6) Place the shunt on JU across pins -. 7) Place the shunt on JU5 across pins -. 8) Remove the shunt on JU8. 9) Connect the positive terminal of the 4.5V to 4V DC power supply to the PV DD binding post, and the power-supply ground terminal to the PGND binding post. 0) Connect the 8Ω speaker across the FOUT+ and FOUT- binding posts. ) Plug the audio source to the RCA jack. ) Turn on the audio source. ) Turn on the 4.5V to 4V DC power supply. 4) Connect the USB cable from the PC to the CMAXQUSB board. A Building Driver Database window pops up in addition to a New Hardware Found message. If you do not see a window that is similar to the one described above after 0s, remove the USB cable from the CMAXQUSB and reconnect it. Administrator privileges are required to install the USB device driver on Windows 000/XP. Refer to Table. MAX9768 EV Kit Jumper Settings JU JU JU, JU4 JU5 JU6 JU7 JU8 -* Normal operation - Speaker mute -* Normal operation - Amplifier shutdown -* I C Address: disabled, standalone operation - I C Address: 00 0x -, - I C Address: 00 00x -, - I C Address: 00 00x -* Stand-alone operation - I C volume control mode -4* SYNC connected to GND - SYNC connected to V DD - SYNC unconnected -* -* SYNC connected to external clock V DD supplied by on-board LDO regulator V DD supplied by an external power supply In stand-alone operation: classic PWM modulation In stand-alone operation: filterless modulation I C interface control mode the TROUBLESHOOTING_USB.PDF document included with the software if you have any problems during this step. 5) Follow the directions of the Add New Hardware Wizard to install the USB device driver. Choose the Search for the Best Driver for your Device option. Specify the location of the device driver to be C:\Program Files\MAX9768 (or the directory chosen during installation) using the Browse button. 6) Start the MAX9768 EV kit software by opening its icon in the Start menu. The GUI main window appears, as shown in Figure. 7) Move the volume-control slider on the software window and verify that the speaker volume changes.
4 Detailed Description of Hardware The MAX9768 is a mono, switch-mode (Class D) audio power amplifier. The EV kit is designed to be driven by the lineout or headphone jack of a CD player, or directly connected to any audio source. A thumbwheel potentiometer mounted on-board is provided to control the volume. The volume can also be controlled by the I C interface. The EV kit has an on-board LDO (MAX76) to power the input buffers and the volume-control circuitry. Preamplifier Gain Configuration The preamplifier gain stage of the MAX9768 EV kit is configured to 0dB. To avoid clipping at the amplifier input stage, ensure input signals are V RMS. If input signals are V RMS, attenuate the input signal at the preamplifier gain stage to avoid clipping at the preamplifier output. The preamplifier gain stage is defined as: A V (preamplifier) = -R / R where R is in the 0kΩ to 40kΩ range. Define the preamplifier gain such that the output of the preamplifier is V RMS (i.e., V IN x A V (preamplifier) V RMS ). Once the preamplifier gain is fixed, use the amplifier s volume-control block to set the clipping levels at the output of the Class D amplifier. Power Supplies The power supply is applied on PV DD and PGND binding posts. V DD is generated either by the on-board MAX76 or by an external.v power supply applied between the pad and PGND. See Table for JU7 setting. Table. JU7 Jumper Setting JU7 -* On-board V DD generated by MAX76 User-provided.V V DD power supply Volume Control Jumpers JU, JU4, JU5, and JU8 select which volumecontrol mode is used. See Table for details. Table. Control-Mode Setting JU, JU4 JU5 JU8 Shutdown Mode Jumper JU sets the amplifier in normal operation or shutdown mode. See Table 4 for details. Table 4. JU Setting JU -* I C Address: disabled, standalone operation - I C Address: 00 0x -, - I C Address: 00 00x -, - I C Address: 00 00x -* Stand-alone operation - I C volume control mode -* In stand-alone operation: classic PWM modulation In stand-alone operation: filterless modulation I C interface control mode -* Normal operation - Shutdown mode Mute Control Jumper JU controls the MUTE pin state. See Table 5 for details. Table 5. JU Setting JU -* Normal operation - Speaker muted 4
5 Modulation Schemes Jumper JU6 sets the output modulation scheme. See Table 6 for details. Table 6. JU6 Setting JU6-4* - - Fixed-frequency mode with f SW = 00kHz Spread-spectrum mode with f S = 00kHz ±7.5kHz Fixed-frequency mode with f S = 60kHz Fixed-frequency mode with f S = /4 external clock frequency Detailed Description of Software To start the MAX9768 EV kit software, double-click the MAX9768 EV kit icon created during installation. The GUI main window appears, as shown in Figure. Wait approximately s while the MAX9768 EV kit software connects to the CMAXQUSB board and automatically detects the I C address of the device. On the left side of the window, the scrollbar is used to increment/decrement the speaker volume by one step. On the right side of the window, a user can manually change the device I C address, set volume directly by programming the volume register, and set the modulation mode. Figure. MAX9768 Evaluation Software Main Window 5
6 R5 0kΩ SDA/VOL SDA JU5 R6 0kΩ 0% C6 0.0μF IN SGND J SYNC C9 00pF JU6 4 SYNCOUT J SDA SCLK C4 0.47μF SCLK SCLK 7 8 R 0kΩ % P J4 0 9 PGND C μf R 0kΩ % J R 0kΩ JU8 P C7 μf C8 μf C 0.μF L4 OUT+ L5 μh FOUT+ J5 FB IN SYNC BIAS GND GND SDA/VOL SCLK P BOOT+ OUT+ OUT+ SYNCOUT 4 U MAX9768 MUTE SHDN ADDR ADDR PGND PGND L JU C9 OPEN JU JU L6 μh JU4 C 0.μF R4 0Ω C5 0.μF C 0.0μF P BOOT- OUT- OUT- 6 P OUT- FOUT- J6 C5 μf C μf C6 μf C 0.μF C0 OPEN C 0.0μF L P C4 0.0μF C7 μf 5 IN OUT SHDN GND GND U 4 C8 μf JU7 C0 0.0μF L MAX76EUK Figure. MAX9768 EV Kit Schematic 6
7 Figure. MAX9768 EV Kit Component Placement Guide Component Side 7
8 Figure 4. MAX9768 EV Kit PCB Layout Component Side 8
9 Figure 5. MAX9768 EV Kit PCB Layout Solder Side Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products, 0 San Gabriel Drive, Sunnyvale, CA Maxim Integrated Products is a registered trademark of Maxim Integrated Products, Inc.
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19-6189; Rev 1; 2/12 General Description The MAX17058 and MAX17059 evaluation kits (EV kits) consist of the MAX17058 and MAX17059 evaluation kit (EV kit) and the Maxim DS91230+ command module. Windows
More informationMAX5391L/MAX5391N Evaluation Systems
19-5104; Rev 0; 12/09 MAX5391L/MAX5391N Evaluation Systems General Description The MAX5391L and MAX5391N evaluation kits (EV kits) are fully assembled and tested PCBs that feature the MAX5391L (10kI) and
More informationS On-Board Clock Generator Capable of 33MHz and 16.5MHz. S Accessible Headers to All 8 Input/Output (I/O) Channels
19-5067; Rev 0; 11/09 MAX13055E Evaluation Kit General Description The MAX13055E evaluation kit (EV kit) provides a proven design to evaluate the MAX13055E 8-channel, bidirectional level translator. The
More informationS USB-PC Connection (Cable Included) S USB Powered (External Power Supply Not Required)
19-5085; Rev 0; 12/09 MAX9867 Evaluation Kit General Description The MAX9867 evaluation kit (EV kit) consists of a MAX9867 evaluation board and software. The EV kit is a fully assembled and tested circuit
More informationMAX5318 Evaluation System Evaluates: MAX5318
General Description The MAX5318 evaluation kit (EV kit) provides a proven design to evaluate the MAX5318 18-bit high-accuracy voltage output DAC with digital gain and offset control. The EV kit also includes
More informationMAX5591 Evaluation Kit/Evaluation System
19-3366; Rev 2; 4/06 MAX5591 Evaluation Kit/Evaluation System General Description The MAX5591 evaluation system (EV system) (MAX5591EVCMOD2) is a complete 8-channel, 12-bit data-generation system consisting
More informationMAX17048/MAX17049 Evaluation Kits Evaluate: MAX17048/ MAX17049
19-6239; Rev 0; 3/12 General Description The MAX17048/MAX17049 evaluation kits (EV kits) consist of the MAX17048/MAX17049 evaluation kit (EV kit) and the Maxim DS91230+ command module. A Windows XP M -,
More informationEvaluate: MAX14589E/MAX14594E/ MAX MAX14589E/MAX14594E/ MAX14689 Evaluation Kits. Features and Benefits. General Description.
Evaluation Kits General Description The MAX14589E/MAX14594E/ evaluation kits (EV kits) are fully assembled and tested circuit boards that demonstrate the functionality of the MAX14589E, MAX14594E, and
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9-904; Rev 0; 7/0 MAX406 Evaluation Kit General Description The MAX406 evaluation kit (EV kit) is a fully assembled and tested circuit board that uses the MAX406 lownoise microphone amplifier IC designed
More informationMaxim Integrated Products 1
9-97; Rev 0; 8/04 MAX406 Evaluation Kit General Description The MAX406 evaluation kit (EV kit) is a fully assembled and tested surface-mount circuit board that demonstrates the MAX406 logarithmic amplifier.
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9-2479; Rev 0; 6/02 MAX28 Evaluation Kit General Description The MAX28 evaluation kit (EV kit) is designed to evaluate the MAX28. The MAX28 is a 2-bit, 2-channel (six differential-channel) ADC with a 2-wire
More informationMAX9776 Evaluation Kit. Evaluates: MAX9776
9-0776; Rev 0; /07 MAX9776 Evaluation Kit General Description The MAX9776 evaluation kit (EV kit) is a fully assembled and tested printed circuit board (PCB) that evaluates the MAX9776 ultra-low EMI,.W
More informationMAX3160E Evaluation Kit. Evaluates: MAX3160E. Features
9-076; Rev 0; 4/07 MAX60E Evaluation Kit General Description The MAX60E evaluation kit (EV kit) circuit demonstrates the RS-/RS-485/RS-4 multiprotocol transceivers using the MAX60E IC. The circuit can
More informationMAX1168 Evaluation Kit/Evaluation System
9-299; Rev ; /07 MAX68 Evaluation Kit/Evaluation System General Description The MAX68 evaluation system (EV system) is a complete 8-channel, 6-bit data-acquisition system that is comprised of a MAX68 evaluation
More informationR1, R2, R3 3 R4, R5, R6 3. Maxim Integrated Products 1
19-2163; Rev 0; 9/01 MAX7428 Evaluation Kit General Description The MAX7428 evaluation kit (EV kit) is an assembled and tested circuit board that demonstrates the MAX7428 standard-definition video reconstruction
More informationMaxim Integrated Products 1
19-2467; Rev 0; 4/02 MAX1236 Evaluation Kit General Description The MAX1236 evaluation kit (EV kit) is designed to evaluate the MAX1236. The MAX1236 is a 12-bit, four-channel (two differential-channel)
More informationINSTALL.EXE. Maxim Integrated Products 1
9-258; Rev 0; 9/02 MAX06 Evaluation Kit General Description The MAX06 evaluation kit (EV kit) is designed to evaluate the MAX06. The MAX06 is an 8-bit four-channel (two-differential-channel) ADC with a
More informationMaxim Integrated Products 1
19-3093; Rev 0; 12/03 MAX3942 Evaluation Kit General Description The MAX3942 evaluation kit (EV kit) is an assembled demonstration board that provides electrical evaluation of the MAX3942 10.7Gbps modulator
More informationMAX3161E Evaluation Kit. Evaluates: MAX3161E. Features
19-0803; Rev 0; 4/07 MX3161E Evaluation Kit General Description The MX3161E evaluation kit (EV kit) circuit demonstrates the RS-232/RS-485/RS-422 multiprotocol transceivers using the MX3161E IC. The circuit
More informationMaxim Integrated Products 1
9-99; Rev 0; /06 MAX96 Evaluation Kit General Description The MAX96 evaluation kit (EV kit) is a fully assembled and tested PC board that evaluates the MAX96 - channel, single-ended, -bit, SAR ADC. The
More informationMAX6635 Evaluation Kit Evaluates: MAX6633/MAX6634/MAX6635
General Description The MAX6635 evaluation kit (EV kit) is a fully assembled and tested surface-mount PCB that evaluates the MAX6635 12-bit plus sign temperature sensor IC. The MAX6635 accurately measures
More informationS USB-PC Connection (Cable Not Included) S USB Powered (No External Power Supply Required) S Real-Time Data Acquisition Through the USB
19-5610; Rev 1; 8/11 MAXADClite Evaluation Kit General Description The MAXADClite evaluation kit (EV kit) evaluates the MAX11645, Maxim's smallest, very-low-power, 12-bit, 2-channel analog-to-digital converter
More informationPART. Maxim Integrated Products 1
9-05; Rev 0; 5/0 General Description The MAX6654 evaluation system (EV system) consists of a MAX6654 evaluation kit (EV kit) and a companion system management bus (SMBus ) interface board. The MAX6654
More informationS One SATA Host Connector S Two SATA Device Connectors
19-5166; Rev 0; 2/10 MAX4986 Evaluation Kit General Description The MAX4986 evaluation kit (EV kit) provides a proven design to evaluate the MAX4986 SAS/SATA 2:1/1:2 multiplexer/demultiplexer. The EV kit
More informationMaxim Integrated Products 1
19-2881; Rev 0; 6/03 General Description The MAX1543 evaluation kit (EV kit) is a fully assembled and tested surface-mount circuit board that provides the voltages and features required for active-matrix,
More informationMAX17048X/ MAX17049X Evaluation Kits (WLP)
19-6238; Rev 0; 3/12 General Description Features The MAX17048X/MAX17049X evaluation kits (EV kits) include the MAX17048X/MAX17049X EV kit and the Maxim DS91230+ command module. Windows XPM-, Windows VistaM-,
More informationS +10.8V to +13.2V Supply Voltage S Output Voltages
19-5088; Rev 0; 12/09 General Description The MAX17113 evaluation kit (EV kit) is a fully assembled and tested surface-mount PCB that provides the voltages and features required for thin-film transistor
More informationMAX7360 Evaluation Kit Evaluates: MAX7360
General Description The MAX7360 evaluation kit (EV kit) provides a proven design to evaluate the MAX7360 I 2 C-interfaced low- EMI key-switch controller and 8 LED drivers/gpio with integrated ESD protection.
More informationS 8V to 24V Input Operation S Software Controlled. S Monitor Outputs for
19-5201; Rev 0; 3/10 MAX17435 Evaluation Kit General Description The MAX17435 evaluation kit (EV kit) is an assembled and tested PCB that evaluates the MAX17435 IC. The MAX17435 is a multichemistry battery
More informationR23 R34 0. Maxim Integrated Products 1
19-2360; Rev 0; 3/02 MAX7432 Evaluation Kit General Description The MAX7432 evaluation kit (EV kit) is an assembled and tested circuit board that demonstrates the MAX7428, MAX7430, and MAX7432 standard
More informationMAX14808 Evaluation System Evaluates: MAX14808
General Description The MAX14808 evaluation kit (EV kit) provides a proven design to evaluate the MAX14808 high-voltage, highfrequency pulse driver IC. The MAX14808 evaluation system (EV system) consists
More informationMAX3804 Evaluation Kit. Evaluates: MAX3804. Features DC-Coupled EV Kit SMA Connectors for All High-Speed Inputs and Outputs Fully Assembled and Tested
19-2821; Rev 1; 2/09 General Description The MAX3804 DC-coupled evaluation kit (EV kit) simplifies evaluation of the MAX3804 12.5Gbps settable equalizer. The EV kit enables full testing of the device functions
More informationMAX1231B/MAX11633/MAX11635 Evaluation Systems Evaluate: MAX1030/MAX1031/MAX1230/ MAX1231/MAX11624/MAX11625/ MAX11632 MAX11635/MAX11642/MAX11643
19-6014; Rev 1; 4/12 MAX1231B/MAX11633/MAX11635 Evaluation Systems General Description Features The MAX1231B/MAX11633/MAX11635 evaluation systems (EV systems) include one master board and one of three
More informationMAX6692 Evaluation System/Evaluation Kit
19-2707; Rev 0; 10/02 MAX6692 Evaluation System/Evaluation Kit General Description The MAX6692 evaluation system (EV system) consists of a MAX6692 evaluation kit (EV kit) and a companion Maxim SMBus interface
More informationMaxim Integrated Products 1
9-005; Rev ; /06 General Description The MAX557 evaluation kit (EV kit) is a fully assembled and tested surface-mount circuit board that evaluates the MAX557 digital potentiometer. Included software generates
More informationS USB-PC Connection (Cable Included) S Proven PCB Layout S Fully Assembled and Tested C53, C55, C61 C68 JU1, JU2, JU3, JU15, JU16, JU18 JU23, JU24
19-5084; Rev 0; 12/09 General Description The MAX19000 evaluation kit (EV kit) is a fully assembled and tested PCB that evaluates the MAX19000 dual-channel, high-performance pin electronics driver/comparator/
More informationEvaluates: MAX2120. MAX2120 Evaluation Kit. General Description. Features. Ordering Information. Component List
General Description The MAX2120 evaluation kit (EV kit) simplifies the testing and evaluation of the IC direct-conversion tuner. The evaluation kit is fully assembled and tested at the factory. Standard
More informationFeatures. General Description. Ordering Information. Component List
General Description The MAX2117 evaluation kit (EV kit) simplifies the testing and evaluation of the device direct-conversion tuner. The evaluation kit is fully assembled and tested at the factory. Standard
More informationMAX6653 Evaluation System/Evaluation Kit
9-908; Rev 0; 7/0 MAX665 Evaluation System/Evaluation Kit General Description The MAX665 evaluation system (EV system) consists of a MAX665 evaluation kit (EV kit) and a companion Maxim system management
More informationS IEEE 802.3af/at-Compliant PSE Circuit. Maxim Integrated Products 1
19-5740; Rev 0; 1/11 MAX5971A Evaluation Kit General Description The MAX5971A evaluation kit (EV kit) is a fully assembled and tested surface-mount circuit board featuring an Ethernet single-port power-sourcing
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