Solid-state image device, image data transmission method, and camera system with a single-end driver and differential driver
A solid-state imaging device includes a pixel array, an AD converting unit converting each of a plurality of analog signals read from the pixel array to a plurality of digital signals and outputting the digital signals, a transmission mode selection register, first and second output terminals, a single-end driver which has first and second input terminals coupled to the digital signals and which has third and fourth terminals, and a differential driver which has third and fourth input terminals coupled to the digital signals and which has fifth and sixth terminals.
1. A solid-state imaging device comprising:
a pixel array;
an AD converting unit converting each of a plurality of analog signals read from the pixel array to a plurality of digital signals and outputting the digital signals;
a transmission mode selection register;
first and second output terminals;
a single-end driver which has first and second input terminals coupled to the digital signals and which has third and fourth terminals and, on the basis of a value of the transmission mode selection register, outputs first and second single-end signals from the third and fourth terminals to the first and second output terminals, respectively; and
a differential driver which has third and fourth input terminals coupled to the digital signals and which has fifth and sixth terminals and, on the basis of a value of the transmission mode selection register, outputs a positive signal and a negative signal constructing differential signals from the fifth and sixth terminals to the first and second output terminals, respectively;
wherein:
the differential driver includes first to fourth P-channel MOS transistors,
sources of the first and second P-channel MOS transistors are coupled to first and second current sources, respectively,
gates of the first and second P-channel MOS transistors are coupled to the third and fourth input terminals, respectively,
drains of the first and second P-channel MOS transistors are coupled to the fifth and sixth terminals, respectively,
sources of the third and fourth P-channel MOS transistors are coupled to the fifth and sixth terminals,
gates of the third and fourth P-channel MOS transistors are coupled to the third and fourth input terminals, respectively, and
drains of the third and fourth P-channel MOS transistors are coupled to third and fourth current sources, respectively,
wherein the single-end driver sets the third and fourth terminals in high-impedance states, on the basis of a value of the transmission mode selection register, when the differential driver outputs the positive signal and the negative signal constructing differential signals from the fifth and sixth terminals to the first and second output terminals, respectively, and
wherein the differential driver disables the first, second, third and fourth current sources, on the basis of a value of the transmission mode selection register, when the single-end driver outputs first and second single-end signals from the third and fourth terminals to the first and second output terminals, respectively.