27 real Hardware & PCB Design questions from the Embedded Systems bank, as asked in Indian campus drives and tech interviews. Every question has a verified answer and an AI-tutor explanation on placd — free to start.
1. What is Schematic capture?
Junior
A.rules such as minimum trace and space, annular ring, solder-mask sliver and component courtyard that keep yield high at the chosen fabricator and assembly house
B.unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
C.drawing the circuit with symbols, net labels and hierarchical sheets, then running electrical rule check before annotating parts and passing the netlist to layout
D.minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
2. Which term means: "drawing the circuit with symbols, net labels and hierarchical sheets, then running electrical rule check before annotating parts and passing the netlist to layout"?
A.Schematic capture — arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
B.Schematic capture — choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
C.Schematic capture — spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
D.Schematic capture — drawing the circuit with symbols, net labels and hierarchical sheets, then running electrical rule check before annotating parts and passing the netlist to layout
A.parts list with manufacturer part numbers, quantities, reference designators and approved alternates, checked for lifecycle status and lead time before release
B.generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
C.spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
D.arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
5. Which term means: "arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths"?
A.PCB stack-up — drawing the circuit with symbols, net labels and hierarchical sheets, then running electrical rule check before annotating parts and passing the netlist to layout
B.PCB stack-up — arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
C.PCB stack-up — unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
D.PCB stack-up — rules such as minimum trace and space, annular ring, solder-mask sliver and component courtyard that keep yield high at the chosen fabricator and assembly house
A.spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
B.unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
C.parts list with manufacturer part numbers, quantities, reference designators and approved alternates, checked for lifecycle status and lead time before release
D.generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
8. Which term means: "parts list with manufacturer part numbers, quantities, reference designators and approved alternates, checked for lifecycle status and lead time before release"?
A.Bill of materials — arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
B.Bill of materials — parts list with manufacturer part numbers, quantities, reference designators and approved alternates, checked for lifecycle status and lead time before release
C.Bill of materials — choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
D.Bill of materials — generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
A.arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
B.spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
C.rules such as minimum trace and space, annular ring, solder-mask sliver and component courtyard that keep yield high at the chosen fabricator and assembly house
D.unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
11. Which term means: "rules such as minimum trace and space, annular ring, solder-mask sliver and component courtyard that keep yield high at the chosen fabricator and assembly house"?
A.Design for manufacturability — choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
B.Design for manufacturability — unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
C.Design for manufacturability — rules such as minimum trace and space, annular ring, solder-mask sliver and component courtyard that keep yield high at the chosen fabricator and assembly house
D.Design for manufacturability — spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
A.arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
B.spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
C.generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
D.unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
14. Which term means: "generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements"?
A.IPC-2221 — spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
B.IPC-2221 — minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
C.IPC-2221 — arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
D.IPC-2221 — generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
A.parts list with manufacturer part numbers, quantities, reference designators and approved alternates, checked for lifecycle status and lead time before release
B.spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
C.choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
D.minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
17. Which term means: "spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power"?
A.Thermal management on PCB — arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
B.Thermal management on PCB — rules such as minimum trace and space, annular ring, solder-mask sliver and component courtyard that keep yield high at the chosen fabricator and assembly house
C.Thermal management on PCB — spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
D.Thermal management on PCB — minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
A.drawing the circuit with symbols, net labels and hierarchical sheets, then running electrical rule check before annotating parts and passing the netlist to layout
B.arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
C.choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
D.unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
20. Which term means: "unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data"?
A.Altium Designer — minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
B.Altium Designer — arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
C.Altium Designer — generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
D.Altium Designer — unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
A.unified schematic and layout tool with ActiveBOM, interactive routing, rigid-flex support and Draftsman drawings, exporting Gerber, ODB++ and IPC-2581 fabrication data
B.spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
C.choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
D.drawing the circuit with symbols, net labels and hierarchical sheets, then running electrical rule check before annotating parts and passing the netlist to layout
23. Which term means: "choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status"?
A.Component selection — minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
B.Component selection — parts list with manufacturer part numbers, quantities, reference designators and approved alternates, checked for lifecycle status and lead time before release
C.Component selection — generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
D.Component selection — choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
A.spreading heat with thermal vias under exposed pads, copper pours and heatsinks, keeping junction temperature within limits computed from θJA and dissipated power
B.choosing parts by derating (capacitor voltage at least 2× the rail), temperature grade, tolerance, package, multi-source availability and NRND or end-of-life status
C.minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
D.parts list with manufacturer part numbers, quantities, reference designators and approved alternates, checked for lifecycle status and lead time before release
26. Which term means: "minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests"?
A.EMI/EMC layout practice — generic printed board design standard giving conductor spacing versus voltage, current-carrying capacity of traces and via and annular-ring requirements
B.EMI/EMC layout practice — drawing the circuit with symbols, net labels and hierarchical sheets, then running electrical rule check before annotating parts and passing the netlist to layout
C.EMI/EMC layout practice — arrangement of copper and dielectric layers; a 4-layer signal-ground-power-signal stack gives every signal an adjacent reference plane for controlled impedance and clean return paths
D.EMI/EMC layout practice — minimising loop area, keeping fast signals over continuous ground, filtering at connectors and avoiding split-plane crossings so the board passes CISPR emission and immunity tests
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