格林帕克™ with Asynchronous State Machine (ASM)
格林帕克™ family devices that include the Asynchronous State Machine (ASM) macro-cell allow the user to develop their own custom state machine designs. The user has the option to set the definition of the states, the definition of allowed state transitions, and the definition of the signals that will trigger each state transition. This macro-cell can also be flexibly connected to I/O pins and other GPAK resources for state transition inputs, and outputs from the macro-cell can be routed to other resources or I/O pins. Two important performance parameters for this macro-cell are transition times of less than 1 µS from state to state, and a standby current of less than 1µA when not in active state transition.
GPAK设计器SW中的新ASM编辑器窗口中支持此ASM宏单元。这里显示的是ASM编辑器内的视图。此编辑器支持灵活性:
- Check boxes to select states in project, up to the allowable maximum number of states based on silicon architecture
- 编辑要匹配应用程序的状态名称
- 轻松“点并单击”操作以添加状态转换
- 安排最佳理解的状态图
- Set value of output signals in Output RAM Array
在主要GPAK设计师GUI, ASM macro-cell shows up with inputs that drive state transitions, and outputs that can be routed to other internal resources, or out to pins. Inside each state, the allowed “next states” show up here, with an input that when asserted will cause that state transition to happen. The connection between resources used to make state transitions, and the state transition links is also shown back in the original ASM Editor window with labels on each of the state transition signals showing the source of the signal.
As this macro-cell does not require a clock input, it will consume less than 1 µA when not in active state transition. This gives the designer tremendous flexibility to create low power designs in minutes. This is especially valuable when designing event driven systems that are waiting long periods of time with little activity, as the ASM macro-cell can remain in a low power state waiting for input, and and react in less than a µS to change state.
PN | Special Feature | GPIO. | Nominal VDD (V) |
ACMP | DCMP/PWM | 最大限度。CNT/DLY | 最大限度。LUTs | 最大限度。达夫 | Pipe 延迟 |
Progr. DLY | osc. | Com. Interface | 包装尺寸(mm) | Socket | Documents |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
SLG46127 | 2x p-fet | 6 | 1.8 - 5.0 | 2 | - | 4 | 10 | 4 | 8-stage | 1 | RC OSC. | - | 1.6 x 2.0 mm | MSTQFN-16 (#1) | Documentation |
SLG46580 | ASMLDO | 9 | 2.5 - 5.0 | 4 | - | 5 | 16 | 9 | 16-stage | 1 | Conf。osc.LP OSC | I²C. | 2.0 x 3.0 mm | STQFN-20.(#3) | Documentation |
SLG46582 | ASMLDO | 9 | 2.5 - 5.0 | 4 | - | 5 | 16 | 9 | 16-stage | 1 | Conf。osc.LP OSC | I²C. | 2.0 x 3.0 mm | STQFN-20.(#3) | Documentation |
SLG46583 | ASMLDO | 9 | 2.5 - 5.0 | 4 | - | 5 | 16 | 9 | 16-stage | 1 | Conf。osc.LP OSC | I²C. | 2.0 x 3.0 mm | STQFN-20.(#3) | Documentation |
SLG46585 | ASMLDODCDC | 9 | 2.5 - 5.0 | 4 | - | 5 | 16 | 9 | 16-stage | 1 | Conf。osc.LP OSC | I²C. | 3.0 x 3.0 mm | MSTQFN-29(#1) | Documentation |
SLG46533 | - | 18 | 1.8 - 5.0 | 4 | - | 7 | 25 | 15 | 16-stage | 1 | Conf。osc.Ring OSCCrystal OSC | I²C. | 2.0 x 2.2 mm 2.0 x 3.0 mm |
MSTQFN-22(#1)STQFN-20.(#1) | Documentation |
SLG46538 | ASMDual Supply | 17 | 1.8 - 5.01.8 - VDD1. | 4 | - | 7 | 17 | 8 | 16-stage | 1 | Conf。osc.RC OSC.Crystal OSC | I²C. | 2.0 x 3.0 mm 2.0 x 2.2 mm |
STQFN-20.(#2)MSTQFN-22(#2) | Documentation |
SLG46538-A. | ASMDual Supply | 17 | 1.8 - 5.01.8 - VDD1. | 4 | - | 7 | 17 | 8 | 16-stage | 1 | Conf。osc.RC OSC.Crystal OSC | I²C. | 3.5 x 3.5 mm | TQFN-20 | Documentation |
SLG46537 | ASM | 18 | 1.8 - 5.0 | 4 | - | 7 | 17 | 8 | 16-stage | 1 | Conf。osc.RC OSC.Crystal OSC | I²C. | 2.0 x 3.0 mm 2.0 x 2.2 mm |
STQFN-20.(#1)MSTQFN-22(#1) | Documentation |
SLG46536 | - | 12 | 1.8 - 5.0 | 3 | - | 7 | 25 | 15 | 16-stage | 1 | Conf。osc.Ring OSCCrystal OSC | I²C. | 2.0 x 2.2 mm | STQFN-14(#2) | Documentation |
SLG46535 | ASMDual Supply | 11 | 1.8 - 5.01.8 - VDD1. | 3 | - | 7 | 17 | 8 | 16-stage | 1 | Conf。osc.Ring OSCCrystal OSC | I²C. | 2.0 x 2.2 mm | STQFN-14(#3) | Documentation |
SLG46534 | ASM | 12 | 1.8 - 5.0 | 3 | - | 7 | 17 | 8 | 16-stage | 1 | Conf。osc.RC OSC.Crystal OSC | I²C. | 2.0 x 2.2 mm | STQFN-14(#2) | Documentation |
SLG46170. | - | 12 | 1.8 - 5.0 | - | - | 8 | 17 | 6 | 16-stage | 1 | RC OSC. | - | 2.0 x 2.2 mm | STQFN-14(#2) | Documentation |
SLG46169 | - | 12 | 1.8 - 5.0 | 2 | - | 7 | 18 | 6 | 16-stage | 1 | RC OSC. | - | 2.0 x 2.2 mm | STQFN-14(#2) | Documentation |
SLG46108 | - | 6 | 1.8 - 5.0 | - | - | 4 | 10 | 4 | 8-stage | 1 | RC OSC. | - | 1.0 x 1.2 mm | STQFN-8(#1) | Documentation |
SLG46121 | Dual Supply | 9 | 1.8 - 5.01.8 - VDD1. | 2 | - | 4 | 16 | 8 | 8-stage | 1 | RC OSC. | - | 1.6 x 1.6 mm | STQFN-12 (#2) | Documentation |
SLG46621 | Dual Supply8-bit ADC | 17 | 1.8 - 5.01.8 - VDD1. | 6 | 3/3 | 10 | 26 | 12 | 16-stage 2 | 2 | lf osc.Ring OSCRC OSC. | SPI | 2.0 x 3.0 mm | STQFN-20.(#2) | Documentation |
SLG46620 | 8-bit ADC | 18 | 1.8 - 5.0 | 6 | 3/3 | 10 | 26 | 12 | 16-stage 2 | 2 | lf osc.Ring OSCRC OSC. | SPI | 2.0 x 3.0 mm 6.5 x 6.4 mm |
STQFN-20.(#1)TSSOP-20(#1) | Documentation |
SLG46620-A | 8-bit ADC | 18 | 1.8 - 3.3 | 6 | 3/3 | 10 | 26 | 12 | 16-stage 2 | 2 | lf osc.Ring OSCRC OSC. | SPI | 6.5 x 6.4 mm | TSSOP-20(#1) | Documentation |
SLG46117 | 1x P-FET | 7 | 1.8 - 5.0 | 2 | - | 4 | 10 | 4 | 8-stage | 1 | RC OSC. | - | 1.6 x 2.5 mm | STQFN-14(#1) | Documentation |
SLG46116 | 1x P-FET | 7 | 1.8 - 5.0 | 2 | - | 4 | 10 | 4 | 8-stage | 1 | RC OSC. | - | 1.6 x 2.5 mm | STQFN-14(#1) | Documentation |
SLG46140 | 8-bit ADC | 12 | 1.8 - 5.0 | 2 | 3/3 | 4 | 16 | 6 | 16-stage | 1 | lf osc.Ring OSCRC OSC. | SPI | 1.6 x 2.0 mm | STQFN-14(#1) | Documentation |
SLG46120 | - | 10 | 1.8 - 5.0 | 2 | - | 4 | 16 | 8 | 8-stage | 1 | RC OSC. | - | 1.6 x 1.6 mm 2.0 x 2.0 mm |
STQFN-12 (#1) | Documentation |
SLG46110 | - | 8 | 1.8 - 5.0 | 2 | - | 4 | 10 | 4 | 8-stage | 1 | RC OSC. | - | 1.6 x 1.6 mm | STQFN-12 (#1) | Documentation |
SLG46722 | - | 18 | 1.8 - 5.0 | - | - | 8 | 17 | 6 | 16-stage | 1 | RC OSC. | - | 2.0 x 3.0 mm | STQFN-20.(#1) | Documentation |
SLG46721 | - | 18 | 1.8 - 5.0 | 4 | - | 7 | 18 | 6 | 16-stage | 1 | RC OSC. | - | 2.0 x 3.0 mm | STQFN-20.(#1) | Documentation |
SLG46824 | In-System ProgrammabilityDual Supply | 17 | 2.5 - 5.01.8 - VDD1. | 2 | - | 8 | 19 | 17 | 16-stage | 1 | RC OSC.LP OSCRing OSC | I²C. | 2.0 x 3.0 mm 6.5 x 6.4 mm |
STQFN-20 (# 4)TSSOP-20(#2) | Documentation |
SLG46826 | In-System ProgrammabilityDual Supply | 17 | 2.5 - 5.01.8 - VDD1. | 4 | - | 8 | 19 | 17 | 16-stage | 1 | RC OSC.LP OSCRing OSC | I²C. | 2.0 x 3.0 mm 6.5 x 6.4 mm |
STQFN-20 (# 4)TSSOP-20(#2) | Documentation |
SLG46827-A | In-System DebugDual Supply | 17 | 2.5 - 5.01.8 - VDD1. | 4 | - | 8 | 19 | 17 | 16-stage | 1 | RC OSC.LP OSCRing OSC | I²C. | 6.5 x 6.4 mm | TSSOP-20(#2) | Documentation |
SLG46880 | ASMDual Supply | 28 | 2.5 - 5.02.5 - VDD1. | 4 | - | 5 | 12 | 5 | 16-stage | 1 | RC OSC.LP OSCRing OSCCrystal OSC | I²C. | 4.0 x 4.0 mm | STQFN-32 (#1) | Documentation |
SLG46881 | ASMDual Supply | 28 | 2.5 - 5.01.0 - 1.8 | 4 | - | 5 | 12 | 5 | 16-stage | 1 | RC OSC.LP OSCRing OSCCrystal OSC | I²C. | 4.0 x 4.0 mm | STQFN-32 (#1) | Documentation |
SLG46517 | ASM2x p-fet | 16 | 1.8 - 5.0 | 4 | - | 7 | 17 | 8 | 16-stage | 1 | RC OSC.Ring OSCCrystal OSC | I²C. | 2.0 x 3.0 mm | MSTQFN-28 (#1) | Documentation |
SLG46855 | - | 12 | 2.5 - 5.0 | 4 | - | 8 | 23 | 21 | 16-stage | 1 | RC OSC.LP OSCRing OSC | I²C. | 1.6 x 2.0 mm | STQFN-14(#1) | Documentation |
SLG46855-A. | - | 12 | 2.5 - 5.0 | 4 | - | 8 | 23 | 21 | 16-stage | 1 | RC OSC.LP OSCRing OSC | I²C. | 3.0 x 3.0 mm | FCQFN-14(#1) | Documentation |
SLG46867 | 2x p-fet | 10 | 2.5 - 5.0 | 4 | - | 8 | 23 | 21 | 16-stage | 1 | RC OSC.LP OSCRing OSC | I²C. | 1.6 x 3.0 mm | MSTQFN-20 (#1) | Documentation |
SLG47105 | Dual Supply4半/ 2个全套I/V Regulation | 84 x HV | 2.5 - 5.03.3 - 12.0 | 2 | 0/2 | 5 | 17 | 15 | 16-stage | 1 | LP OSCRing OSC | I²C. | 2.0 x 3.0 mm | STQFN-20.(#5) | Documentation |
SLG47004 | Op AmpDigital RheostatAnalog SwitchAuto TrimIn-System Programmability | 8 | 2.5 - 5.0 | 3 | 0/0 | 7 | 20 | 18 | 16-stage | 1 | RC OSC.LP OSCRing OSC | I²C. | 3.0 x 3.0 mm | STQFN-24(#1) | Documentation |
SLG88103 | Op Amp | 0 | 1.8 - 5.0 | 0 | 0/0 | 0 | 0 | 0 | - | 0 | - | - | 2.0 x 2.0 mm | STDFN-10 | Documentation |
SLG88104 | Op Amp | 0 | 1.8 - 5.0 | 0 | 0/0 | 0 | 0 | 0 | - | 0 | - | - | 2.0 x 3.5毫米 | STQFN-20. | Documentation |
SLG46811 | 92 x 8 bit pattern generator | 10 | 2.5 - 5.0 | 1(4) | 0/0 | 6 | 18 | 17 | 4 x 8-bit Sh Reg | 1 | Ring OSC LP OSC |
I²C. | 1.6 x 1.6 mm | STQFN-12 (#1) | Documentation |
Part Number | 描述 | 包裹 | Documentation |
---|---|---|---|
SLG4B41337V. | Battery Saver for SteamVR Tracking Solution | STQFN-14(1.6 x 2.5毫米) | Documentation |
SLG55021-200010V | High Voltage Gate Driver | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG5NT021-200000V | High Voltage Gate Driver | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG5NT026-200300V. | 双电源门驱动器 | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG5NT1432V | Single N-Channel power switch | TDFN-8 (1.5 x 2.0 mm) | Documentation |
SLG5NT1437V | Single N-Channel power switch | TDFN-8 (1.5 x 2.0 mm) | Documentation |
SLG5NT1458V | Single N-Channel power switch | STDFN-8 (1.0 x 1.6 mm) | Documentation |
SLG5nt1461v. | 超小型7.8MΩ6带有放电的负载开关 | TDFN 8 (1.5 x 2.0 mm) | Documentation |
SLG5nt1462v. | Ultra-small Dual 40 mΩ 1.0 A Integrated Power Switch with Discharge | STDFN 8 (1.0 x 1.6 mm) | Documentation |
SLG5nt1464v. | Ultra-small 40 mΩ 1.0 A GreenFET 3 Load Switch with Discharge | STDFN 4(1.0 x 1.0 mm) | Documentation |
SLG5nt1477v. | NanopowerFET™: A 3 mm² fast turn on, 0.85 VD nano-power consumption power switch | TDFN-9 (1.5 x 2.0 mm) | Documentation |
SLG5NT1487V. | Ultra-small 7.8 mΩ 5 A Load Switch with Discharge | TDFN 8 (1.5 x 2.0 mm) | Documentation |
SLG5NT1533V | 1.6mm²快速开启电源开关,带电荷泵,0.85 VD,斜坡控制和输出放电1 V处理器电源控制 | STDFN-8 (1.0 x 1.6 mm) | Documentation |
SLG5NT1546V | 超小型Dual 80MΩ1.0带有放电的集成电源开关 | STDFN-8 (1.0 x 1.6 mm) | Documentation |
SLG5NT1547V | Ultra-small 80 mΩ, 1.0 A Integrated Power Switch with Discharge | STDFN 4(1.0 x 1.0 mm) | Documentation |
SLG5nt1581v. | 7.3MΩ,9个带有放电的Greenfet 3负载开关 | STDFN 14 (1.0 x 3.0 mm) | Documentation |
SLG5NT1586V. | Ultra-small 22.5 mΩ 2.5 A Integrated Power Switch with Reverse Blocking | STDFN 8 (1.0 x 1.6 mm) | Documentation |
SLG5nt1593v. | Ultra-small 28.5 mΩ 1.0 A Integrated Power Switch with Discharge. Intel application notes on how to resolve a power sequencing failure:Intel® Curie™ Power Sequencing;英特尔®Quark™SE微控制器C1000电源排序注意事项 | STDFN-4 (1.0 x 1.0 mm) | Documentation |
SLG5nt1594v. | 超小型28.5MΩ,1.0个集成电源开关 | STDFN 4(1.0 x 1.0 mm) | Documentation |
SLG5NT1602V | 7.8Ω,9与放电集成电源开关and Reverse Current Blocking | STDFN 14 (1.0 x 3.0 mm) | Documentation |
SLG5NT1611V | An Ultra-small 7.8 mΩ, 9 A, Single-channel Integrated Power Switch with Reverse-current Blocking | STDFN 14 (1.0 x 3.0 mm) | Documentation |
SLG5NT1734V | 超小型28.5MΩ,1.0带有放电的集成电源开关 | STDFN 4(1.0 x 1.0 mm) | Documentation |
SLG5nth1011v. | A 22 V, 50 mΩ, 3 A Reverse Blocking Integrated Power Switch with VIN Lockout Select and MOSFET Current Monitor Output | STQFN-18 (1.6 x 3.0 mm) | Documentation |
SLG7nt128v. | 1 Hz中断发生器 | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG7NT402V | Single N-Channel power switch | TDFN-8 (1.5 x 2.0 mm) | Documentation |
SLG7NT4081V | PWROK Generator and Start Up Latching Circuit | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT4082V | LED驱动器 | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT4083V | 电源良好的探测器 | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT4084V | LED Control | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG7NT408V | Ultra-small 7.8 mΩ, 4 A Integrated Power Switch | TDFN 8 (1.5 x 2.0 mm) | Documentation |
SLG7NT4100V. | VR Enable and Discharge | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT41021V. | DDR序列仪和FET驱动器 | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT41204V | 双子座湖RVP. | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4129V | PCIERTD3. | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7nt4131v. | PCIERTD3. | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG7nt41382v. | Processor Power Validation | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT41502V | CURIE BASED WEARABLE. Intel application notes on how to resolve a power sequencing failure:Intel® Curie™ Power Sequencing;英特尔®Quark™SE微控制器C1000电源排序注意事项 | STQFN-14 (1.6 x 2.0 mm) | Documentation |
SLG7NT41563V | 雾项目 | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4180V | 逻辑门 | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT4192V | Power Good Generator Logic | TQFN-20(2.0 x 3.0 mm) | Documentation |
SLG7NT4198V. | 1 Hz中断发生器 | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG7NT4204V | Glue Logic | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT4229V | PWROK Generator and Startup Latching Circuit | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT4249V | DISCHARGE, PGOOD MONITOR AND LEVEL SHIFTER | TQFN-20(2.0 x 3.0 mm) | Documentation |
SLG7NT4317V | Cherry Trail Essentials | TQFN-20(2.0 x 3.0 mm) | Documentation |
SLG7nt4375v. | SKLAIO | STQFN-12 (1.6 x 1.6 mm) | Documentation |
SLG7NT4445V | Reset IC with Latch and MUX | TDFN-12 (2.5 x 2.5 mm) | Documentation |
SLG7NT4503V | 序列序列 | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4505V | 1 Hz中断发生器 | TDFN-8 (2.0 x 2.0 mm) | Documentation |
SLG7NT4618V. | APL Power Sequencer | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4741V | Small Form Factor CRB | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4774V | ALL_SYS_PWRGD和PCH_PWROK和SYS_PWROK逻辑 | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4779V | 时钟分频器和芯片选择扩展器 | STQFN-12 (1.6 x 1.6 mm) | Documentation |
SLG7NT4805V | DPWROK和RSMRST_N逻辑 | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4850V | APL Power Sequencer | STQFN-20.(2.0 x 3.0 mm) | Documentation |
SLG7NT4953V | bat_power_good | STQFN-12 (1.6 x 1.6 mm) | Documentation |
SLG7NT4964V | DDR_RAIL测序 | STQFN-12 (1.6 x 1.6 mm) | Documentation |
SLG7NT614V | Single N-Channel power switch | TDFN-8 (1.5 x 2.0 mm) | Documentation |
Our Partner Network was created to provide consulting services and application support to our clients. Our partners have demonstrated competence in Configurable Mixed-signal products and may help to supplement your own engineering resources.
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5530 Sierra Springs Drive,Collock Pines,95726,加利福尼亚州 |
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Clifford Consulting, Inc. | 嵌入式设计和开发集团具有广泛的经验。我们可以帮助您提供软件和硬件,包括例如数字信号处理,通信,工业传感器和医疗器械。军队SBIR第II期质量奖;NBS优秀服务奖;PSOC模拟设计竞赛获奖者。 | USA |
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Frazier Technology | Consulting services in analog and digital systems. Design reviews, cost reductions, printed circuit layout and magnetics. Specializing in all aspects of switching power supplies. Commercial, Industrial and Military | USA |
1600孟加拉博士,圆岩,78664,德克萨斯州 |
Ouellette Consulting | Consulting services for analog and digital system design, simulation, fabrication and debugging including embedded, FPGA, mixed-signal PCB, and full-custom mixed-signal ICs. We deliver innovative, robust electronic designs from concept through prototype to production for industrial, commercial, and military applications. We rapidly develop innovative solutions with the highest performance and reliability while avoiding pitfalls. | USA |
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EDAXI UG (haftungsbeschraenkt) | 基于微控制器,SOC和其他可编程逻辑的嵌入式系统咨询与工程。 | Germany |
Maria-Merian-Str. 6, Monheim am Rhein, 40789 |
Microlab | Microlab可以在广泛的电子领域提供设计和咨询服务,包括硬件和软件。由于在超过30年的活动期间获得的经验和知识,主要优势和福利在快速和高质量的项目开发中取得了快速和高质量的项目开发。Microolab是各种电子设备制造商的设计合作伙伴,但我们甚至可以使用任何设备设计我们的客户愿意出于历史设备选择,库存可用性等任何原因。 | Italy |
Via Castiglione Dorcia,28,Roma,149 |
Francesco Not | Francesco Not is an Italian consultant in the Embedded Electronics Engineering field, actively helping customers to turn their Ideas into Products. | Italy |
Via Lobbia 3/B, Mena, 33010 |
PROTASET LIMITED. | 服务:混合信号硬件设计,PCB布局,固件和嵌入式软件开发,数据和通信安全咨询,项目管理。 | 英国 |
2 Bellevue Road Barnes, SW13 0BJ, London |
Nooteboom Elektronica | Noothboom Elektronica专注于定制和交钥匙电子工程解决方案。复杂的电子困难为我们带来了解决的挑战。Nooteboom Elektronica获得了20多年的经验和大量满意的客户。 | 荷兰 |
Hoevenstraat 1a, 8161, PP Epe |
Fuzhou Suntop Elec. co.,Ltd. | Suntop专业从事技术产品的开发和设计,包括消费电子,便携式数字产品,电动工具,通信产品等。以及相关领域的技术服务。雷电竞官网登录促进的产品和计划在各种领域雷电竞官网登录取得了巨大成就。我们公司中有一个强大的研发和服务团队的微控制器软件,硬件,电源控制和管理,因此我们可以为客户提供咨询和支持计划大规模生产。雷电竞下载app | 中国 |
2F,13# Building, E District Fuzhou software park, No. 89, Ruanjian main Rd., Fuzhou, Fujian Province |
Formilab Pty Ltd. | Formilab是一个硬件加速器,专注于消费电子和物联网设备的快速原型和短期生产。 | Australia |
5/10吉利斯街,埃塞森州北,3041,维多利亚州 |
VNPT技术 | VNPT技术is an electronic design and manufacture based in Hanoi. Company is pioneer in the research, development and manufacture of electronics, telecomunication and information technology. Our expertise includes circuit design, writing firmware in C/C++ and assembler, design software in Java, .NET, QT, design Android/iOS App communicating with IoT devices. | Vietnam |
124 Hoang Quoc Viet Street, Cau Giay District, Hanoi Capital City |
Audesine.com. | Audesine.com.is a boutique electronic design and prototyping firm based in Bangalore, India. We have experience with analog as well as digital designs. | India |
第473号,第19届主要,第35个十字架,Jayanagar 4th'T'块,560 041,班加罗尔 |
Digital Papaya Inc. | Digital Papaya (DP) is a technical services exporting startup based in Puerto Rico. Founded by a Silicon Valley veteran that knows speed and quality are key, DP offers a low friction click-buy-go model to quickly start your Silego design jobs, and scale your engineering team. | Puerto Rico |
Engine4,Complejo Onofre Carballeira ESQ。PR-2 Con Int。Pr-5,Bayamón,00959 |
Pensar开发 | Pensar提供全方位服务的产品设计和开发团队,包括工业设计+ UI / UX,机械工程,电气工程和软件/固件工程,用于通过新产品介绍的初始设计概念和概念验证原型的项目。合同制造商的大批量生产。我们涵盖了消费者,医疗,专业,工业和航空航天市场段,密切集成了设计和工程。Pensar技术专有电台专有,Wi-Fi和蓝牙技术,嵌入式显示器,FPGA,低功耗电池操作,电容式触摸感应,先进的光学传感器,复杂机制,热分析和计算流体动力学。 | USA |
1011 Western Avenue, Suite 1000 Seattle, WA 98104 |
Indesign,LLC. | Indesign,LLC.is a multi-discipline engineering design firm that provides full turnkey electronic product development to allow clients to get their new product ideas into the market quickly. Indesign offers complete product development capabilities, starting with a product concept and finishing with a ready-to-manufacture design. Indesign has an ISO certified product development process and a proven track record for on-time, on-budget, high quality product realization. Indesign provides specific design engineering services and expertise in electrical design, RF/wireless design, embedded software design, and mechanical design. Indesign also provides engineering services and expertise in a variety of other technical areas including systems engineering, human factors, project management and product validation testing. Indesign engineers can complement a client’s in-house design engineering staff, working in partnership with clients on joint development projects. | USA |
8225 E 56th Street, Indianapolis, IN 46216 |