Features: ·LOW VOLTAGE POWER SUPPLY DOWN TO 3V·16 CONSTANT CURRENT OUTPUT CHANNELS· ADJUSTABLE OUTPUT CURRENTTHROUGH EXTERNAL RESISTOR·SERIAL DATA IN/PARALLEL DATA OUT·SERIAL OUT CHANGES STATE ON THE FALLING EDGES OF CLOCK·3.3V MICRO DRIVER-ABLE·OUTPUT CURRENT: 3-50 mA·25 MHz CLOCK FREQ.·AVAILABLE...
STP16CP596: Features: ·LOW VOLTAGE POWER SUPPLY DOWN TO 3V·16 CONSTANT CURRENT OUTPUT CHANNELS· ADJUSTABLE OUTPUT CURRENTTHROUGH EXTERNAL RESISTOR·SERIAL DATA IN/PARALLEL DATA OUT·SERIAL OUT CHANGES STATE ON TH...
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ApplicationHIGH CURRENT, HIGH SWITCHING SPEED MOTOR CONTROL, AUDIO AMPLIFIERS DC-DC & DC-AC CO...

| Symbol | Parameter | Value | Unit |
| VDD | Supply Voltage | 0 to 7 | V |
| VO | Output Voltage | -0.5 to 16 | V |
| IO | Output Current | 50 | mA |
| VI | Input Voltage | -0.4 to VDD+0.4 | V |
| IGND | GND Terminal Current | 800 | V |
| fCLK | Clock Frequency | 25 | mA |
| TOPR | Operating Temperature Range | -40 to +125 | °C |
| TSTG | Storage Temperature Range | -65 to +150 | °C |
Absolute Maximum Ratings are those values beyond which damage to the device may occur. Under these conditions, functional operation is not implied.
The STP16CP596 is a monolithic, low voltage, low current power 16-bit shift register designed for LED panel displays. The STP16CP596 contains a 16-bit serial-in, parallel-out shift register that feeds a 16-bitD-type storage register. In the output stage, sixteen regulated current sources were designed to provide 3-50mA constant current to drive the LEDs.
Compared with the STP16CP596, the device provides great flexibility and improved performance in LED panel system design.
Trough an external resistor, users can adjust the STP16CP596 output current, controlling in this way the light intensity of LEDs.
The STP16CP596 guarantees a 16V output driving capability, allowing users to connect more LEDs in series. The high clock frequency, 25 MHz, also satisfies the system requirement of high volume data transmission. The 3.3V of voltage supply is well useful for applications that interface any micro from 3.3V. Compared with a standard TSSOP package, the TSSOP exposed pad increases heat dissipation capability by a 2.5 factor.