Features
Battery Cell Controller, Advanced, 6 Channels, TPL, LQFP48.
Package
HLQFP48 LQFP64, plastic, low profile quad flat package; 64 terminals; 0.5 mm pitch; 10 mm x 10 mm x 1.4 mm body.
Battery Cell Controller, Advanced, 6 Channels, TPL, LQFP48.
HLQFP48 LQFP64, plastic, low profile quad flat package; 64 terminals; 0.5 mm pitch; 10 mm x 10 mm x 1.4 mm body.
12NC: 935285129118
详细信息
订购
12NC: 935289802118
详细信息
数量
单价
1 - 24 | $1.62 |
25 - 99 | $1.62 |
100+ | $1.62 |
订购
Normally ships in 1-2 business days.
从分销商处购买12NC: 935285129112
详细信息
订购
参数 | 值 |
---|---|
Number of Channels | 16 |
Output Current on pin LEDn (Max) (mA) | 25 |
Supply Voltage [Min to Max] (V) | 2.3 to 5.5 |
Serial Communication | 1 x I²C |
Topology | Voltage switch |
参数 | 值 |
---|---|
Blinking Rate (Min to Max) (Hz) | 24 to 1526 |
# of Addresses | 64 |
Operating Temperature (Min-Max) (℃) | -40 to 85 |
AEC-Q100 compliant | N |
部件/12NC | 无铅 | 欧盟 RoHS | 无卤素 | RHF指标 | REACH SVHC | 重量(mg) |
---|---|---|---|---|---|---|
PCA9685PW,112(935285129112) | Yes | Yes Certificate Of Analysis (CoA) | Yes | REACH SVHC | 100.0 | |
PCA9685PW,118(935285129118) | Yes | Yes Certificate Of Analysis (CoA) | Yes | REACH SVHC | 100.0 | |
PCA9685PW/Q900,118(935289802118) | Yes | Yes Certificate Of Analysis (CoA) | Yes | REACH SVHC | 104.35384831 |
部件/12NC | 安全保障功能安全 | 湿度灵敏度等级(MSL) | 封装体峰值温度(PPT)(C°) | 适合 | MTBF | IR | ||
---|---|---|---|---|---|---|---|---|
铅焊接 | 无铅焊接 | 铅焊接 | 无铅焊接 | |||||
PCA9685PW,112 (935285129112) | No | 1 | 1 | 240 | 260 | 2.0 | 5.0E8 | 0.0 |
PCA9685PW,118 (935285129118) | No | 1 | 1 | 240 | 260 | 2.0 | 5.0E8 | 0.0 |
PCA9685PW/Q900,118 (935289802118) | No | 1 | 1 | 240 | 260 | 2.0 | 5.0E8 | 0.0 |
部件/12NC | 协调关税 (美国)免责声明 |
---|---|
PCA9685PW,112 (935285129112) | 854239 |
PCA9685PW,118 (935285129118) | 854239 |
PCA9685PW/Q900,118 (935289802118) | 854239 |
The PCA9685 is an I²C-bus controlled 16-channel LED controller optimized for Red/Green/Blue/Amber (RGBA) color backlighting applications. Each LED output has its own 12-bit resolution (4096 steps) fixed frequency individual PWM controller that operates at a programmable frequency from a typical of 24 Hz to 1526 Hz with a duty cycle that is adjustable from 0 % to 100 % to allow the LED to be set to a specific brightness value. All outputs are set to the same PWM frequency.
Each LED output can be off or on (no PWM control) or set at its individual PWM controller value. The LED output driver is programmed to be either open-drain with a 25 mA current sink capability at 5 V or totem pole with a 25 mA sink, 10 mA source capability at 5 V. The PCA9685 operates with a supply voltage range of 2.3 V to 5.5 V and the inputs and outputs are 5.5 V tolerant. LEDs can be directly connected to the LED output (up to 25 mA, 5.5 V) or controlled with external drivers and a minimum amount of discrete components for larger current or higher voltage LEDs.
The PCA9685 is in the new Fast-mode Plus (Fm+) family. Fm+ devices offer higher frequency (up to 1 MHz) and more densely populated bus operation (up to 4000 pF).
Although the PCA9635 and PCA9685 have many similar features, the PCA9685 has features that make it more suitable for applications such as LCD or LED backlighting and Ambilight:
The active LOW Output Enable input pin (OE) allows asynchronous control of the LED outputs and can be used to set all the outputs to a defined I²C-bus programmable logic state. The OE can also be used to externally ‘pulse width modulate’ the outputs, which is useful when multiple devices need to be dimmed or blinked together using software control.
Software programmable LED All Call and three Sub Call I²C-bus addresses allow all or defined groups of PCA9685 devices to respond to a common I²C-bus address, allowing, for example, all red LEDs to be turned on or off at the same time or marquee chasing effect, thus minimizing I²C-bus commands. Six hardware address pins allow up to 62 devices on the same bus.
The Software Reset (SWRST) General Call allows the controller to perform a reset of the PCA9685 through the I²C-bus, identical to the Power-On Reset (POR) that initializes the registers to their default state causing the outputs to be set LOW. This allows an easy and quick way to reconfigure all device registers to the same condition via software.